Inducible direct plant defense against insect herbivores: A review
Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all plant traits that affect susceptibility of host plants by themselves. Overall categories of direct plant defenses against insect herbivores include limiti...
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Published in | Insect science Vol. 15; no. 2; pp. 101 - 114 |
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Main Author | |
Format | Journal Article |
Language | English |
Published |
Oxford, UK
Oxford, UK : Blackwell Publishing Ltd
01.04.2008
Blackwell Publishing Ltd |
Subjects | |
Online Access | Get full text |
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Abstract | Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all plant traits that affect susceptibility of host plants by themselves. Overall categories of direct plant defenses against insect herbivores include limiting food supply, reducing nutrient value, reducing preference, disrupting physical structures, and inhibiting chemical pathways of the attacking insect. Major known defense chemicals include plant secondary metabolites, protein inhibitors of insect digestive enzymes, proteases, lectins, amino acid deaminases and oxidases. Multiple factors with additive or even synergistic impact are usually involved in defense against a specific insect species, and factors of major importance to one insect species may only be of secondary importance or not effective at all against another insect species. Extensive qualitative and quantitative high throughput analyses of temporal and spatial variations in gene expression, protein level and activity, and metabolite concentration will accelerate not only the understanding of the overall mechanisms of direct defense, but also accelerate the identification of specific targets for enhancement of plant resistance for agriculture. |
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AbstractList | Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all plant traits that affect susceptibility of host plants by themselves. Overall categories of direct plant defenses against insect herbivores include limiting food supply, reducing nutrient value, reducing preference, disrupting physical structures, and inhibiting chemical pathways of the attacking insect. Major known defense chemicals include plant secondary metabolites, protein inhibitors of insect digestive enzymes, proteases, lectins, amino acid deaminases and oxidases. Multiple factors with additive or even synergistic impact are usually involved in defense against a specific insect species, and factors of major importance to one insect species may only be of secondary importance or not effective at all against another insect species. Extensive qualitative and quantitative high throughput analyses of temporal and spatial variations in gene expression, protein level and activity, and metabolite concentration will accelerate not only the understanding of the overall mechanisms of direct defense, but also accelerate the identification of specific targets for enhancement of plant resistance for agriculture. Abstract Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all plant traits that affect susceptibility of host plants by themselves. Overall categories of direct plant defenses against insect herbivores include limiting food supply, reducing nutrient value, reducing preference, disrupting physical structures, and inhibiting chemical pathways of the attacking insect. Major known defense chemicals include plant secondary metabolites, protein inhibitors of insect digestive enzymes, proteases, lectins, amino acid deaminases and oxidases. Multiple factors with additive or even synergistic impact are usually involved in defense against a specific insect species, and factors of major importance to one insect species may only be of secondary importance or not effective at all against another insect species. Extensive qualitative and quantitative high throughput analyses of temporal and spatial variations in gene expression, protein level and activity, and metabolite concentration will accelerate not only the understanding of the overall mechanisms of direct defense, but also accelerate the identification of specific targets for enhancement of plant resistance for agriculture. |
Author | Chen, Ming-Shun |
Author_xml | – sequence: 1 fullname: Chen, Ming-Shun |
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Cites_doi | 10.1007/978-94-009-1519-0_6 10.1042/BJ20031825 10.1111/j.1467-7652.2005.00151.x 10.1111/j.1570-7458.1995.tb01956.x 10.1111/j.1570-7458.1996.tb00838.x 10.1126/science.1265481 10.1016/0031-9422(90)89016-3 10.1126/science.200.4347.1296 10.1016/j.ibmb.2004.09.006 10.1111/j.0962-1075.2004.00523.x 10.1016/0022-1910(92)90128-Z 10.1126/science.1096931 10.1007/BF01248409 10.1016/0031-9422(88)80731-3 10.1023/A:1009600321838 10.1105/tpc.12.7.1031 10.1007/s10142-002-0080-4 10.1016/j.pbi.2007.06.004 10.1034/j.1600-0706.2002.990102.x 10.1046/j.1365-313X.1998.00226.x 10.1073/pnas.070054597 10.1073/pnas.92.2.407 10.1016/S0169-5347(03)00247-7 10.1111/j.1570-7458.1993.tb00699.x 10.1073/pnas.86.24.9871 10.1007/s10886-007-9382-2 10.1007/s00425-004-1330-6 10.1023/A:1016200619766 10.1007/s10886-004-7943-1 10.1104/pp.103.035634 10.1111/j.1365-2311.2004.0590.x 10.1146/annurev.phyto.39.1.27 10.1016/S0261-2194(01)00127-2 10.1007/s002990050497 10.1023/A:1010654711619 10.1046/j.1570-7458.1999.00576.x 10.1023/A:1009640204314 10.1016/S0022-1910(98)00090-0 10.1039/b515446d 10.1094/MPMI-21-1-0070 10.1126/science.175.4023.776 10.1023/A:1009659911798 10.1007/BF01976027 10.1023/B:MOLB.0000037996.01494.12 10.1111/j.0013-8703.2004.00192.x 10.1080/03014223.1974.9517852 10.1093/jxb/eri318 10.1007/s003440000026 10.1074/jbc.M407151200 10.1007/BF00232917 10.1146/annurev.arplant.53.100301.135207 10.1073/pnas.0605921103 10.1007/s10681-006-9157-9 10.1007/BF02059605 10.1016/j.pbi.2004.04.003 10.1073/pnas.0831246100 10.1038/35069058 10.1046/j.1439-0418.2003.00806.x 10.1007/s00425-002-0750-4 10.1023/A:1026592509060 10.1007/BF00984896 10.1021/jf9805754 10.1111/j.1744-7348.1995.tb05371.x 10.1002/(SICI)1520-6327(1996)32:1<3::AID-ARCH2>3.0.CO;2-1 10.1093/ee/19.5.1278 10.1007/s000490050041 10.1073/pnas.90.21.9906 10.1046/j.1570-7458.1998.00390.x 10.1007/s001220051511 10.1016/S0022-1910(99)00143-2 10.1021/jf063030f 10.1111/j.1744-7909.2005.00096.x 10.1603/0013-8746(2006)099[0305:VHFDCL]2.0.CO;2 10.1146/annurev.py.28.090190.002233 10.1016/j.copbio.2004.01.008 10.1111/j.1365-2745.2006.01120.x 10.1111/j.1365-3040.2006.01618.x 10.1007/BF00398968 10.1603/0022-0493-96.3.950 10.1111/j.1570-7458.2006.00503.x 10.1603/0022-0493-94.4.958 10.1093/ee/12.3.787 10.1093/genetics/149.4.1997 10.1007/BF01976497 10.1046/j.1570-7458.2001.00803.x 10.1007/s00299-006-0281-8 10.1093/ee/35.6.1696 10.1126/science.291.5511.2141 10.1007/978-94-010-9132-9 10.1023/A:1009660712382 10.1104/pp.115.2.409 10.1126/science.1118446 10.1046/j.1570-7458.1998.00404.x 10.1002/arch.20078 10.1023/A:1022176207180 10.1023/A:1008957610872 10.1016/S0022-1910(97)00040-1 10.1038/nbt0297-137 10.1046/j.1365-313X.2003.01968.x 10.1111/j.1570-7458.1996.tb00836.x 10.1603/0022-0493-95.2.469 10.1038/nbt0894-793 10.1007/0-306-47596-0_6 10.1111/j.0013-8703.2004.00117.x 10.1073/pnas.0602328103 10.1038/nbt0496-494 10.1023/B:PHYT.0000047811.13837.fb 10.1073/pnas.92.17.8041 10.1111/j.1744-7909.2006.00258.x 10.17660/ActaHortic.1993.336.22 10.1111/j.1744-7348.1997.tb05401.x 10.1105/tpc.017723 10.1590/S1519-566X2005000500013 10.1016/S0022-1910(96)00065-0 10.1038/330160a0 10.3390/12081569 10.1111/j.1570-7458.1996.tb00766.x 10.1016/S0022-1910(97)00042-5 10.1111/j.1570-7458.1996.tb00837.x 10.1016/j.cropro.2005.01.013 10.1007/s002990050304 10.1073/pnas.202224899 10.1073/pnas.0509895102 10.1111/j.1570-7458.1994.tb01816.x 10.1016/S1360-1385(97)90052-2 10.1016/S1360-1385(00)01575-2 10.1023/A:1025810213869 10.1126/science.1062249 10.1007/BF00441431 10.1023/A:1009616413886 10.1007/0-387-23266-4_13 10.1086/374190 10.1002/arch.10145 10.1023/A:1009633710224 10.1104/pp.107.095588 10.1016/S0022-1910(98)00054-7 10.1093/oxfordjournals.pcp.a074695 10.1007/s00299-003-0591-z 10.1111/j.1469-8137.1994.tb02968.x 10.1105/tpc.106.041103 10.1111/j.1570-7458.1995.tb01909.x 10.1073/pnas.0603183103 10.1111/j.1570-7458.1995.tb01902.x |
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References | Ahn, J.-E., Salzman, R.A., Braunagel, S.C., Koiwa, H. and Zhu-Salzman, K. (2004) Functional roles of specific bruchid protease isoforms in adaptation to a soybean protease inhibitor. Insect Molecular Biology, 13, 649-657. Kost, C. and Heil, M. (2006) Herbivore-induced plant volatiles induce an indirect defense in neighbouring plants. Journal of Ecology, 94, 619-628. Chen, H., Gonzales-Vigil, E., Wilkerson, C.G. and Howe, G.A. (2007) Stability of plant defense proteins in the gut of insect herbivores. Plant Physiology, 143, 1954-1967. Liu, X.-M., Bai, J., Huang, L., Zhu, L., Liu, X., Weng, N., Reese, J.C., Harris, M., Stuart, J.J. and Chen, M.S. (2007) Gene expression of different wheat genotypes during attack by virulent and avirulent Hessian fly (Mayetiola destructor) larvae. Journal of Chemical Ecology, 33, 2171-2194. Marchetti, S., Delledonne, M., Fogher, C., Chiabà, C., Chiesa, F., Savazzini, F., Giordano, A. (2000) Soybean Kunitz, C-II and PI-IV inhibitor genes confer different levels of insect resistance to tobacco and potato transgenic plants. Theoretical and Applied Genetics, 101, 519-526. Giamoustaris, A. and Mithen, R. (1995) The effect of modifying the glucosinolate content of leaves on oilseed rape (Brassica napus ssp. oleifera) on its interaction with specialist and generalist pests. Annals of Applied Biology, 126, 347-363. Rahbé, Y., Sauvion, N., Febvay, G., Peumans, W.J. and Gatehouse, A.M.R. (1995) Toxicity of lectins and processing of ingested proteins in the pea aphid Acyrthosiphon pisum. Entomologia Experimentalis et Applicata, 76, 143-155. Goussain, M.M., Prado, E. and Moraes, J.C. (2005) Effect of silicon applied to wheat plants on the biology and probing behaviour of the greenbug Schizaphis graminum (Rond.) (Hemiptera: Aphididae). Neotropical Entomology, 34, 807-813. Nutt, K.A., Allsopp, P.G., McGhie, T.K., Shepherd, K.M., Joyce, P.A., Taylor, G.O., McQualter, R.B. and Smith, G.R. (1999) Transgenic sugarcane with increased resistance to canegrubs. Proceedings of Australian Society of Sugar Cane Technologists, 21, 171-176. Smith, C.M. and Boyka, E. (2006) The molecular bases of plant resistance and defense responses to aphid feeding: current status. Entomologia Experimentalis et Applicata, 122, 1-16. Borek, V., Elberson, L.R., McCaffrey, J.P. and Morra, J.M. (1998) Toxicity of isothiocyanates produced by glucosinolates in Brassicaceae species to black vine weevil eggs. Journal of Agriculture and Food Chemistry, 46, 5318-5323. Thipyapong, P., Stout, M.J. and Attajarusit, J. (2007) Functional analysis of polyphenol oxidases by antisense/sense technology. Molecules, 12, 1569-1595. Truitt, C.L., Wei, H.-X. and Pare, P.W. (2004) A plasma membrane protein from Zea mays binds with the herbivore elicitor volicitin. Plant Cell, 16, 523-532. Stone, G.N. and Schönrogge, K. (2003) The adaptive significance of insect gall morphology. Trends in Ecology and Evolution, 18, 512-522. Horiguchi, T. and Kitagishik, K. (1971) Studies on rice seed protease V. Protease inhibitor in rice seed. Plant Cell Physiology, 12, 907-915. Powell, K.S., Gatehouse, A.M.R., Hilder, V.A. and Gatehouse, J. A. (1993) Antimetabolic effects of plant lectins and plant and fungal enzymes on the nymphal stages of two important rice pests, Nilaparvata lugens and Nephotettix cinciteps. Entomologia Experimentalis et Applicata, 66, 119-126. Gatehouse, A.M.R., Davidson, G.M., Newell, C.A., Merryweather, A., Hamilton, W.D.O., Burgess, E.P.J., Gilbert, R.J.C. and Gatehouse, J.A. (1997) Transgenic potato plants with enhanced resistance to the tomato moth Lacanobia oleracea: growth room trials. Molecular Breeding, 3, 49-63. Goggin, F.L. (2007) Plant-aphid interactions: molecular and ecological perspectives. Current Opinion in Plant Biology, 10, 399-408. Goodman, R.N. and Novacky, A.J. (1994) The Hypersensitive Reaction in Plants to Pathogens. APS Press, St Paul . 256 pp. Sauge, M.H., Kervella, J. and Pascal, T. (1998) Settling behaviour and reproductive potential of the green peach aphid Myzus persicae on peach varieties and a related wild Prunus. Entomologia Experimentalis et Applicata, 89, 233-242. Vilaine, D.F., Thibivilliers, S., Kusiak, C., Sauge, M.H. and Dinant, S. (2007) Involvement of the xyloglucan endotransglycosylase/hydrolases encoded by celery XTH1 and Arabidopsis XTH33 in the phloem response to aphids. Plant Cell Environment, 30, 187-201. Stoger, E., Williams, S., Christou, P., Down, R.E. and Gatehouse, J.A. (1999) Expression of the insecticidal lectin from snowdrop (Galanthus nivalis agglutinin; GNA) in transgenic wheat plants: effects on predation by the grain aphid Sitobion avenae. Molecular Breeding, 5, 65-73. Mochizuki, A., Nishizawa, Y., Onodera, H., Tabei, Y., Toki, S., Habu, Y., Ugaki, M. and Ohashi, Y. (1999) Transgenic rice plants expressing a trypsin inhibitor are resistant against rice stem borers, Chilo suppressalis. Entomologia Experimentalis et Applicata, 93, 173-178. Zhu, Y.C., Liu, X., Maddur, M., Oppert, B., Chen, M.S. (2005) Cloning and characterization of chymotrypsin- and trypsin-like cDNAs from the gut of the Hessian fly [Mayetiola destructor (Say)]. Insect Biochemistry and Molecular Biology, 35, 23-32. Sauvion, N., Charles, H., Febvay, G. and Rahbé, Y. (2004) Effects of jackbean lectin (ConA) on the feeding behaviour and kinetics of intoxication of the pea aphid, Acyrthosiphon pisum. Entomologia Experimentalis et Applicata, 110, 31-44. Chen, H., McCaig, B.C., Melotto, M., He, S.Y. and Howe, G.A. (2004) Regulation of plant arginase by wounding, jasmonate, and the phytotoxin coronatine. Journal of Biological Chemistry, 279, 45998-46007. Dangl, J.L. and McDowell, J.M. (2006) Two modes of pathogen recognition by plants. Proceedings of the National Academy of Sciences of the United States of America, 103, 8575-8576. Bu, Q.-Y., Wu, L., Yang, S.-H. and Wan, J.-M. (2006) Cloning of a potato proteinase inhibitor gene PINII-2x from diploid potato (Solanum phurejia L.) and transgenic investigation of its potential to confer insect resistance in rice. Journal of Integrative Plant Biology, 48, 732-739. Powell, K.S. (2001) Antimetabolic effects of plant lectins towards nymphal stages of the planthoppers Tarophagous proserpina and Nilaparvata lugens. Entomologia Experimentalis et Applicata, 99, 71-77. Charity, J.A., Anderson, M.A., Bittisnich, D.J., Whitecross, M. and Higgins, T.J.V. (1999) Transgenic tobacco and peas expressing a proteinase inhibitor from Nicotiana alata have increased insect resistance. Molecular Breeding, 5, 357-365. Setamou, M., Bernal, J.S., Legaspi, J.C., Mirkov, T.E. and Legaspi, Jr. B.C. (2003) Effects of snowdrop lectin (GNA) on Mexican rice borer (Lepidoptera: Pyralidae) life history parameters. Journal of Economic Entomology, 96, 950-956. Jongsma, M.A., Bakker, P.L., Peters, J., Bosch, D. and Stiekema, W.J. (1995) Adaptation of Spodoptera exigua larvae to plant proteinase inhibitors by induction of gut proteinase activity insensitive to inhibition. Proceedings of the National Academy of Sciences of the United States of America, 92, 8041-8045. De Luca, V. and St Pierre, B. (2000) The cell and developmental biology of alkaloid biosynthesis. Trends in Plant Science, 5, 168-173. Kessler, A., Halitschke, R. and Baldwin, I.T. (2004) Silencing the jasmonate cascade: Induced plant defenses and insect populations. Science, 305, 665-668. Maheswaran, G., Pridmore, L., Franz, P. and Anderson, M.A. (2007) A proteinase inhibitor from Nicotiana alata inhibits the normal development of light-brown apple moth, Epiphyas postvittana in transgenic apple plants. Plant Cell Reports, 26, 773-782. Hertiani, T. (2007) Isolation and Structure Elucidation of Bioactive Secondary Metabolites from Indonesian Marine Sponges. Cuvillier Verlag, Düsseldorf . 344 pp. Bennett, R.N. and Wallsgrove, R.M. (1994) Secondary metabolites in plant defence mechanisms. New Physiologist, 127, 617-633. Hostettmann, K.A. and Marston, A. (1995) Saponins (Chemistry and Pharmacology of Natural Products). Cambridge University Press, Cambridge , UK . 560 pp. Blau, P.A., Feeney, P., Contardo, L. and Tobson, D.S. (1978) Allylglucosinolate and herbivorous caterpillars: a contrast in toxicity and tolerance. Science, 200, 1296-1298. Pechan, T., Cohen, A., Williams, W.P. and Luthe, D.S. (2002) Insect feeding mobilizes a unique plant defense protease that disrupts the peritrophic matrix of caterpillars. Proceedings of the National Academy of Sciences of the United States of America, 99, 13319-13323. Alfonso-Rub, J., Ortego, F., Castañera, P., Carbonero, P. and Diaz, I. (2003) Transgenic expression of trypsin inhibitor CMe from barley in indica and japonica rice, confers resistance to the rice weevil Sitophilus oryzae. Transgenic Research, 12, 23-31. Duffey, S.S. and Stout, M.J. (1996) Antinutritive and toxic components of plant defense against insects. Archives of Insect Biochemistry and Physiology, 32, 3-37. Confalonieri, M., Allegro, G., Balestrazzi, A., Fogher, C. and Delledonne, M. (1998) Regeneration of Populus nigra transgenic plants expressing a Kunitz proteinase inhibitor (KTi3) gene. Molecular Breeding, 4, 137-145. Ding, L.-C., Hu, C., Yeh, K.-W. and Wang, P.-J. (1998) Development of insect-resistant transgenic cauliflower plants expressing the trypsin inhibitor gene isolated from local sweet potato. Plant Cell Reports, 17, 854-860. Hilder, V.A., Gatehouse, A.M.R., Sheerman, S.E., Barker, R.F. and Boulter, D. (1987) A novel mechanism of insect resistance engineered in to tobacco. Nature, 330, 160-163. Li, L. and Steffens, J.C. (2002) Overexpression of polyphenol oxidase in transgenic tomato plants results in enhanced bacterial disease resistance. Planta, 215, 239-247. McManus, M.T., White, D.W.R. and McGregor, P.G. (1994) Accumulation of the chymotrypsin inhibitor in transgenic tobacco can affect the growth of insect pests. Transgenic Research, 3, 50-58. Rao, K.V., Rathore, K.S., Hodges, T.K., Fu, X., Stoger, E., Sudhakar, D., Williams, S., Christou, P., Bharathi, M., Bown, D.P., Powell, 2004; 29 2006; 35 1997; 43 2002; 95 2004; 7 2002; 99 2004; 3 1974; 1 1997; 49 1972; 175 1997; 2 2005; 60 1996; 79 1997; 3 2001; 46 1998; 89 1996; 78 1983; 12 2001; 43 1998; 15 2001; 410 2004; 30 1998; 17 2000; 19 1995; 27 2000; 12 2005; 102 1971; 12 2004; 37 2000; 97 1995; 126 2008; 21 1994; 72 1998; 10 1989 1992; 4 2003; 164 1997 2002; 2 1996 1995 1999; 21 2001; 26 1994 1992; 38 1996; 14 2007; 10 1995; 1 1995; 4 2004; 305 2007; 12 2004; 279 1987; 330 1991; 68 1990; 28 1990; 29 2004; 56 1988; 27 2006; 48 1994; 12 2005; 4 1978; 200 2005; 3 2001; 39 1998; 149 2000; 101 1998; 4 2003; 100 2003; 21 2006; 103 1995; 75 1995; 74 1997; 115 2001; 94 1989; 86 2000; 5 2002; 53 2000; 46 2007; 143 1990; 19 1993; 66 2005; 378 2000; 44 1995; 76 2003; 18 2007; 30 2007; 33 2004; 128 2003; 96 1996; 32 1998; 44 2005; 24 2003; 12 1998; 46 1994; 20 2004; 134 2001; 293 2001; 291 1997; 15 1997; 16 1999; 93 2001; 99 1993; 336 1996; 2 2005; 34 2006; 122 2007; 26 2005; 35 2004; 220 1995; 92 1997; 60 2006; 94 2006; 99 1995; 14 1997; 131 2006; 151 2007 2006; 18 2006 2002; 215 2005 2006; 4 1993; 90 1999; 3 2002 1999; 8 1976; 192 2007; 55 1999; 5 2006; 311 1999; 9 2005; 47 2004; 112 2001; 80 2002; 28 2004; 110 1994; 127 1993; 19 1997; 72 2004; 16 2004; 14 2004; 15 2002; 21 2004; 13 1994; 3 1996; 42 2005; 56 e_1_2_1_119_1 Setamou M. (e_1_2_1_135_1) 2003; 96 e_1_2_1_157_1 e_1_2_1_81_1 e_1_2_1_134_1 e_1_2_1_115_1 e_1_2_1_138_1 DeMoraes C.M. (e_1_2_1_29_1) 2001; 410 Kawano T. (e_1_2_1_84_1) 2003; 21 e_1_2_1_164_1 e_1_2_1_89_1 e_1_2_1_24_1 e_1_2_1_62_1 e_1_2_1_141_1 e_1_2_1_43_1 e_1_2_1_85_1 e_1_2_1_28_1 e_1_2_1_47_1 Hertiani T. (e_1_2_1_66_1) 2007 e_1_2_1_92_1 e_1_2_1_103_1 e_1_2_1_122_1 e_1_2_1_145_1 Goodman R.N. (e_1_2_1_56_1) 1994 e_1_2_1_107_1 e_1_2_1_126_1 e_1_2_1_149_1 e_1_2_1_31_1 e_1_2_1_54_1 e_1_2_1_77_1 e_1_2_1_8_1 e_1_2_1_12_1 e_1_2_1_35_1 e_1_2_1_50_1 e_1_2_1_96_1 e_1_2_1_4_1 e_1_2_1_110_1 e_1_2_1_152_1 Giamoustaris A. (e_1_2_1_52_1) 1995; 126 e_1_2_1_16_1 e_1_2_1_39_1 e_1_2_1_58_1 Rohfritsch O. (e_1_2_1_124_1) 2005 e_1_2_1_82_1 e_1_2_1_114_1 e_1_2_1_133_1 e_1_2_1_156_1 Sane V.A. (e_1_2_1_127_1) 1997; 72 e_1_2_1_137_1 e_1_2_1_163_1 e_1_2_1_67_1 e_1_2_1_121_1 e_1_2_1_21_1 e_1_2_1_44_1 e_1_2_1_63_1 e_1_2_1_86_1 e_1_2_1_140_1 e_1_2_1_25_1 e_1_2_1_48_1 Ussuf K.K. (e_1_2_1_150_1) 2001; 80 e_1_2_1_93_1 e_1_2_1_125_1 e_1_2_1_102_1 e_1_2_1_144_1 e_1_2_1_129_1 e_1_2_1_106_1 e_1_2_1_148_1 e_1_2_1_7_1 e_1_2_1_55_1 e_1_2_1_78_1 e_1_2_1_3_1 Hostettmann K.A. (e_1_2_1_73_1) 1995 e_1_2_1_13_1 e_1_2_1_132_1 e_1_2_1_32_1 e_1_2_1_74_1 e_1_2_1_151_1 Powell K.S. (e_1_2_1_118_1) 1995; 75 e_1_2_1_17_1 e_1_2_1_36_1 e_1_2_1_59_1 e_1_2_1_136_1 e_1_2_1_60_1 e_1_2_1_113_1 e_1_2_1_155_1 Li Y.E. (e_1_2_1_97_1) 1998; 10 Yuan Z. (e_1_2_1_160_1) 2001; 43 e_1_2_1_117_1 e_1_2_1_159_1 e_1_2_1_162_1 e_1_2_1_87_1 e_1_2_1_68_1 e_1_2_1_120_1 e_1_2_1_143_1 e_1_2_1_45_1 e_1_2_1_83_1 e_1_2_1_22_1 e_1_2_1_64_1 e_1_2_1_49_1 e_1_2_1_26_1 e_1_2_1_109_1 e_1_2_1_101_1 e_1_2_1_147_1 e_1_2_1_71_1 e_1_2_1_90_1 e_1_2_1_105_1 e_1_2_1_128_1 Gatehouse A.M.R. (e_1_2_1_51_1) 1995 Hildmann T. (e_1_2_1_70_1) 1992; 4 e_1_2_1_79_1 e_1_2_1_98_1 e_1_2_1_6_1 e_1_2_1_131_1 e_1_2_1_154_1 e_1_2_1_10_1 e_1_2_1_33_1 e_1_2_1_94_1 Irvine J.E. (e_1_2_1_75_1) 1997; 60 e_1_2_1_14_1 e_1_2_1_37_1 e_1_2_1_18_1 Chen H. (e_1_2_1_20_1) 2005; 102 Horiguchi T. (e_1_2_1_72_1) 1971; 12 Nutt K.A. (e_1_2_1_111_1) 1999; 21 e_1_2_1_80_1 e_1_2_1_112_1 e_1_2_1_116_1 e_1_2_1_139_1 Lu L. (e_1_2_1_100_1) 2005; 4 e_1_2_1_42_1 e_1_2_1_65_1 e_1_2_1_88_1 e_1_2_1_161_1 e_1_2_1_23_1 e_1_2_1_46_1 e_1_2_1_61_1 e_1_2_1_142_1 e_1_2_1_27_1 Feng G.H. (e_1_2_1_40_1) 1991; 68 e_1_2_1_69_1 e_1_2_1_108_1 Fernandes G.W. (e_1_2_1_41_1) 2001; 26 e_1_2_1_146_1 e_1_2_1_91_1 e_1_2_1_123_1 e_1_2_1_104_1 e_1_2_1_30_1 e_1_2_1_76_1 e_1_2_1_5_1 e_1_2_1_57_1 e_1_2_1_99_1 Legaspi J.C. (e_1_2_1_95_1) 1997; 49 e_1_2_1_34_1 e_1_2_1_153_1 e_1_2_1_11_1 e_1_2_1_53_1 e_1_2_1_130_1 e_1_2_1_38_1 e_1_2_1_15_1 Agrios G.N. (e_1_2_1_2_1) 1997 e_1_2_1_9_1 Wink M. (e_1_2_1_158_1) 1999 e_1_2_1_19_1 |
References_xml | – volume: 2 start-page: 379 year: 1997 end-page: 384 article-title: Regulation of protease inhibitors and plant defense publication-title: Trends in Plant Science – volume: 90 start-page: 9906 year: 1993 end-page: 9910 article-title: Leucine aminopeptidase: An inducible component of the defense response in (tomato) publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 20 start-page: 651 year: 1994 end-page: 666 article-title: Potential role of lipoxygenases in defense against insect herbivory publication-title: Journal of Chemical Ecology – volume: 4 start-page: 137 year: 1998 end-page: 145 article-title: Regeneration of transgenic plants expressing a Kunitz proteinase inhibitor ( ) gene publication-title: Molecular Breeding – volume: 79 start-page: 285 year: 1996 end-page: 293 article-title: Effects of GNA and other mannose binding lectins on development and fecundity of the peach‐potato aphid publication-title: Entomologia Experimentalis et Applicata – volume: 46 start-page: 573 year: 2000 end-page: 583 article-title: Resistance to green leafhopper ( ) and brown planthopper ( ) in transgenic rice expressing snowdrop lectin ( agglutinin; GNA) publication-title: Journal of Insect Physiology – volume: 34 start-page: 807 year: 2005 end-page: 813 article-title: Effect of silicon applied to wheat plants on the biology and probing behaviour of the greenbug (Rond.) (Hemiptera: Aphididae) publication-title: Neotropical Entomology – volume: 336 start-page: 179 year: 1993 end-page: 184 article-title: Transgenic apples and strawberries: advances in transformation, introduction of genes for insect resistance and field studies of tissue cultured plants publication-title: Acta Horticulturae – volume: 15 start-page: 155 year: 2004 end-page: 161 article-title: Plant‐insect interactions: Molecular approaches to insect resistance publication-title: Current Opinion in Biotechnology – volume: 21 start-page: 70 year: 2008 end-page: 78 article-title: Hessian fly ( ) attack causes dramatic shift in carbon/nitrogen metabolism in wheat publication-title: Molecular Plant-Microbe Interaction – volume: 75 start-page: 51 year: 1995 end-page: 59 article-title: Antifeedant effects of plant‐lectins and an enzyme on the adult stage of the rice brown planthopper, publication-title: Entomologia Experimentalis et Applicata – volume: 14 start-page: 758 year: 1995 end-page: 762 article-title: Protease inhibitors of expressed in transgenic cotton publication-title: Plant Cell Report – volume: 44 start-page: 1213 year: 1998 end-page: 1224 article-title: A comparison of the short and long term effects of insecticidal lectins on the activities of soluble and brush border enzymes of tomato moth larvae ( ) publication-title: Journal of Insect Physiology – volume: 5 start-page: 65 year: 1999 end-page: 73 article-title: Expression of the insecticidal lectin from snowdrop ( agglutinin; GNA) in transgenic wheat plants: effects on predation by the grain aphid publication-title: Molecular Breeding – volume: 19 start-page: 195 year: 2000 end-page: 216 article-title: The myriad plant responses to herbivores publication-title: Journal of Plant Growth Regulation – volume: 13 start-page: 649 year: 2004 end-page: 657 article-title: Functional roles of specific bruchid protease isoforms in adaptation to a soybean protease inhibitor publication-title: Insect Molecular Biology – volume: 79 start-page: 309 year: 1996 end-page: 315 article-title: Bruchid resistance of transgenic azuki bean expressing seed α‐amylase inhibitor of common bean publication-title: Entomologia Experimentalis et Applicata – volume: 97 start-page: 3820 year: 2000 end-page: 3825 article-title: Bean α‐amylase inhibitor 1 in transgenic peas ( ) provides complete protection from pea weevil under field conditions publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 19 start-page: 1278 year: 1990 end-page: 1282 article-title: Effect of glyceollin, asoybean phytoalexin, on feeding by three phytophagous beetles (Coleoptera: Coccinellidae): dose versus response publication-title: Environmental Entomology – volume: 18 start-page: 3303 year: 2006 end-page: 3320 article-title: Silencing threonine deaminase and JAR4 in impairs jasmonic acid‐isoleucine‐mediated defenses against publication-title: Plant Cell – volume: 215 start-page: 239 year: 2002 end-page: 247 article-title: Overexpression of polyphenol oxidase in transgenic tomato plants results in enhanced bacterial disease resistance publication-title: Planta – volume: 17 start-page: 854 year: 1998 end-page: 860 article-title: Development of insect‐resistant transgenic cauliflower plants expressing the trypsin inhibitor gene isolated from local sweet potato publication-title: Plant Cell Reports – volume: 378 start-page: 705 year: 2005 end-page: 716 article-title: Evolutionary families of peptidase inhibitors publication-title: Biochemical Journal – volume: 35 start-page: 23 year: 2005 end-page: 32 article-title: Cloning and characterization of chymotrypsin‐ and trypsin‐like cDNAs from the gut of the Hessian fly [ (Say)] publication-title: Insect Biochemistry and Molecular Biology – volume: 37 start-page: 370 year: 2004 end-page: 378 article-title: Papain protects papaya trees from herbivorous insects: role of cysteine proteases in latex publication-title: The Plant Journal – volume: 26 start-page: 773 year: 2007 end-page: 782 article-title: A proteinase inhibitor from inhibits the normal development of light‐brown apple moth, in transgenic apple plants publication-title: Plant Cell Reports – volume: 15 start-page: 469 year: 1998 end-page: 477 article-title: Expression of snowdrop lectin (GNA) in transgenic rice plants confers resistance to rice brown planthopper publication-title: Plant Journal – volume: 12 start-page: 23 year: 2003 end-page: 31 article-title: Transgenic expression of trypsin inhibitor CMe from barley in and rice, confers resistance to the rice weevil publication-title: Transgenic Research – volume: 7 start-page: 400 year: 2004 end-page: 407 article-title: The plant proteolytic machinery and its role in defence publication-title: Current Opinion in Plant Biology – volume: 72 start-page: 741 year: 1997 end-page: 747 article-title: Development of insect‐resistant transgenic plants using plant genes: Expression of cowpea trypsin inhibitor in transgenic tobacco plants publication-title: Current Science – volume: 10 start-page: 237 year: 1998 end-page: 243 article-title: Obtaining transgenic cotton plants with cow‐pea trypsin inhibitor gene publication-title: Acta Gossypii Sinica – volume: 12 start-page: 793 year: 1994 end-page: 796 article-title: Transgenic pea seeds expressing the α‐Amylase inhibitor of the common bean are resistant to bruchid beetles publication-title: Bio/Tech – volume: 78 start-page: 77 year: 1996 end-page: 81 article-title: Hypersensitive reaction and induced resistance in rice against the Asian rice gall midge publication-title: Entomologia Experimentalis et Applicata – start-page: 296 year: 2006 end-page: 313 – volume: 126 start-page: 347 year: 1995 end-page: 363 article-title: The effect of modifying the glucosinolate content of leaves on oilseed rape ( ssp. ) on its interaction with specialist and generalist pests publication-title: Annals of Applied Biology – volume: 29 start-page: 85 year: 1990 end-page: 89 article-title: Biological effects of plant lectins on the cowpea weevil publication-title: Phytochem – volume: 99 start-page: 13319 year: 2002 end-page: 13323 article-title: Insect feeding mobilizes a unique plant defense protease that disrupts the peritrophic matrix of caterpillars publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 44 start-page: 529 year: 1998 end-page: 539 article-title: Immunohistochemical and developmental studies to elucidate the mechanism of action of the snowdrop lectin on the rice brown planthopper, publication-title: Journal Insect Physiology – volume: 192 start-page: 795 year: 1976 end-page: 796 article-title: Insecticidal action of the phytohemagglutinin in black beans on Bruchid beetle publication-title: Science – volume: 330 start-page: 160 year: 1987 end-page: 163 article-title: A novel mechanism of insect resistance engineered in to tobacco publication-title: Nature – volume: 48 start-page: 732 year: 2006 end-page: 739 article-title: Cloning of a potato proteinase inhibitor gene from diploid potato ( .) and transgenic investigation of its potential to confer insect resistance in rice publication-title: Journal of Integrative Plant Biology – volume: 93 start-page: 173 year: 1999 end-page: 178 article-title: Transgenic rice plants expressing a trypsin inhibitor are resistant against rice stem borers, publication-title: Entomologia Experimentalis et Applicata – volume: 103 start-page: 15497 year: 2006 end-page: 15501 article-title: Pinoresinol: A lignol of plant origin serving for defense in a caterpillar publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 49 start-page: 53 year: 1997 end-page: 59 article-title: Mexican rice borer, (Lepidoptera: Pyralidae) in the lower Rio Grande valley of Texas: its history and control publication-title: Subtropical Plant Science – volume: 30 start-page: 187 year: 2007 end-page: 201 article-title: Involvement of the xyloglucan endotransglycosylase/hydrolases encoded by celery XTH1 and Arabidopsis XTH33 in the phloem response to aphids publication-title: Plant Cell Environment – volume: 102 start-page: 18771 year: 2005 end-page: 18772 article-title: Jasmonate‐inducible plant enzymes degrade essential amino acids in the herbivore midgut publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 12 start-page: 787 year: 1983 end-page: 791 article-title: Lipoxygenase, tryspsin inhibitor, and lectin from soybeans: effects on larval growth of (Lepidoptera: Sphingidae) publication-title: Environmental Entomology – volume: 56 start-page: 3215 year: 2005 end-page: 3222 article-title: Both hypersensitive and non‐hypersensitive responses are associated with resistance in against the gall midge publication-title: Journal of Experimental Botany – start-page: 137 year: 2002 end-page: 152 – volume: 293 start-page: 1826 year: 2001 end-page: 1828 article-title: Resistance to an herbivore through engineered cyanogenic glucoside synthesis publication-title: Science – volume: 3 start-page: 601 year: 2005 end-page: 911 article-title: The efficacy of a novel insecticidal protein, leaf lectin (ASAL), against homopteran insects monitored in transgenic tobacco publication-title: Plant Biotechnology Journal – volume: 18 start-page: 512 year: 2003 end-page: 522 article-title: The adaptive significance of insect gall morphology publication-title: Trends in Ecology and Evolution – volume: 38 start-page: 277 year: 1992 end-page: 285 article-title: Impact of oxidized plant phenolics on the nutritional quality of dietary protein to a noctuid herbivore, publication-title: Journal Insect Physiology – volume: 15 start-page: 137 year: 1997 end-page: 141 article-title: Transgenic plants: An emerging approach to pest control publication-title: Nature Biotechnology – volume: 305 start-page: 665 year: 2004 end-page: 668 article-title: Silencing the jasmonate cascade: Induced plant defenses and insect populations publication-title: Science – volume: 60 start-page: 20 year: 2005 end-page: 31 article-title: A haybrid, broad‐spectrum inhibitor of Colorado potato beetle aspartate and cysteine digestive proteinases publication-title: Archives of Insect Biochemistry and Physiology – volume: 128 start-page: 32 year: 2004 end-page: 38 article-title: Comparative growth inhibitory and antifeedant effects of plant extracts and pure allelochemicals on four phytophagous insect species publication-title: Journal of Applied Entomology – volume: 103 start-page: 8894 year: 2006 end-page: 8899 article-title: Fragments of ATP synthase mediate plant perception of insect attack publication-title: Proceedings of the National Academy of Sciences of the United States of America – start-page: 35 year: 1995 end-page: 58 – volume: 131 start-page: 133 year: 1997 end-page: 139 article-title: The effect of the CpTi gene in strawberry against attack by vine weevil ( F. Coleoptera: Curculionidae) publication-title: Annals of Applied Biology – volume: 3 start-page: 49 year: 1997 end-page: 63 article-title: Transgenic potato plants with enhanced resistance to the tomato moth : growth room trials publication-title: Molecular Breeding – volume: 8 start-page: 383 year: 1999 end-page: 395 article-title: Expression o the soybean (Kunitz) trypsin inhibitor in transgenic tobacco: effects on larval development of publication-title: Transgenic Research – volume: 95 start-page: 469 year: 2002 end-page: 477 article-title: Evaluation of lectin‐expressing transgenic sugarcane against stalkborers (Lepidoptera: Pyralidae): Effects on life history parameters publication-title: Journal of Economic Entomology – volume: 21 start-page: 171 year: 1999 end-page: 176 article-title: Transgenic sugarcane with increased resistance to canegrubs publication-title: Proceedings of Australian Society of Sugar Cane Technologists – start-page: 1021 year: 2005 end-page: 1022 – volume: 55 start-page: 2582 year: 2007 end-page: 2589 article-title: Diverted secondary metabolism and improved resistance to European corn borer ( ) in maize ( L.) transformed with wheat oxalate oxidase publication-title: Journal of Agriculture and Food Chemistry – volume: 43 start-page: 592 year: 2001 end-page: 597 article-title: Aphid‐resistant transgenic tobacco plants expressing modified gna gene publication-title: Acta Botanic Sinica – volume: 30 start-page: 2419 year: 2004 end-page: 2438 article-title: Gene‐for‐gene disease resistance: Bridging insect pest and pathogen defense publication-title: Journal of Chemical Ecology – volume: 5 start-page: 1 year: 1999 end-page: 9 article-title: Soybean Kunitz trypsin inhibitor (SKTI) confers resistance to the brown planthopper ( Stål) in transgenic rice publication-title: Molecular Breeding – volume: 2 start-page: 167 year: 1996 end-page: 173 article-title: Constitutive expression of a cowpea trypsin inhibitor gene, , in transgenic rice plants confers resistance to two major rice insect pests publication-title: Molecular Breeding – volume: 110 start-page: 31 year: 2004 end-page: 44 article-title: Effects of jackbean lectin (ConA) on the feeding behaviour and kinetics of intoxication of the pea aphid, publication-title: Entomologia Experimentalis et Applicata – volume: 410 start-page: 577 year: 2001 end-page: 580 article-title: Caterpillar‐induced nocturnal plant volatiles repel conspecific females publication-title: Nature – volume: 115 start-page: 409 year: 1997 end-page: 418 article-title: Tomato polyphenol oxidase: Differential response of the polyphenol oxidase F promoter to injuries and wound signals publication-title: Plant Physiology – volume: 112 start-page: 159 year: 2004 end-page: 168 article-title: Indigestibility of plant cell wall by the Australian plague locust, publication-title: Entomologia Experimentalis et Applicata – volume: 66 start-page: 119 year: 1993 end-page: 126 article-title: Antimetabolic effects of plant lectins and plant and fungal enzymes on the nymphal stages of two important rice pests, and publication-title: Entomologia Experimentalis et Applicata – volume: 14 start-page: 494 year: 1996 end-page: 498 article-title: Transgenic rice plants harboring an introduced potato proteinase inhibitor II gene are insect resistant publication-title: Nature Biotechnology – volume: 27 start-page: 3349 year: 1988 end-page: 3358 article-title: Hydroxamic acids (4‐hydroxy–1,4‐benzoxazin–3‐ones), defence chemicals in Gramineae publication-title: Phytochem – volume: 16 start-page: 523 year: 2004 end-page: 532 article-title: A plasma membrane protein from binds with the herbivore elicitor volicitin publication-title: Plant Cell – volume: 102 start-page: 18771 year: 2005 end-page: 18772 article-title: Indigestion is a plant's best defense publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 100 start-page: 14569 year: 2003 end-page: 14576 article-title: Non‐self recognition, transcriptional reprogramming, and secondary metabolite accumulation during plant/pathogen interactions publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 94 start-page: 619 year: 2006 end-page: 628 article-title: Herbivore‐induced plant volatiles induce an indirect defense in neighbouring plants publication-title: Journal of Ecology – volume: 220 start-page: 105 year: 2004 end-page: 117 article-title: Antisense downregulation of polyphenol oxidase results in enhanced disease susceptibility publication-title: Planta – volume: 39 start-page: 27 year: 2001 end-page: 52 article-title: Leafy gall formation by publication-title: Annual Review of Phytopathology – volume: 291 start-page: 2141 year: 2001 end-page: 2144 article-title: Defensive function of herbivore‐induced plant volatile emissions in nature publication-title: Science – volume: 21 start-page: 829 year: 2003 end-page: 837 article-title: Role of the reactive oxygen species‐generating peroxidase reactions in plant defense and growth induction publication-title: Plant Cell Reports – volume: 53 start-page: 299 year: 2002 end-page: 328 article-title: Plant responses to insect herbivory publication-title: Annual Review of Plant Biology – volume: 79 start-page: 295 year: 1996 end-page: 307 article-title: Transgenic potato plants with enhanced resistance to the peach‐potato aphid publication-title: Entomologia Experimentalis et Applicata – volume: 16 start-page: 696 year: 1997 end-page: 699 article-title: Sweet potato ( ) trypsin inhibitors expressed in transgenic tobacco plants confer resistance against publication-title: Plant Cell Reports – volume: 68 start-page: 516 year: 1991 end-page: 521 article-title: α‐Amylase inhibitors from rice: fractionation and selectivity towards insects, mammalian and bacterial α‐Amylases publication-title: Cereal Chemistry – volume: 89 start-page: 119 year: 1998 end-page: 124 article-title: A gene controlling biosynthesis of isoorientin, a compound in corn silks antibiotic to the corn earworm publication-title: Entomologia Experimentalis et Applicata – volume: 74 start-page: 283 year: 1995 end-page: 294 article-title: Hypersensitive response of wheat to the Hessian fly publication-title: Entomologia Experimentalis et Applicata – volume: 279 start-page: 45998 year: 2004 end-page: 46007 article-title: Regulation of plant arginase by wounding, jasmonate, and the phytotoxin coronatine publication-title: Journal of Biological Chemistry – start-page: 256 year: 1994 – volume: 14 start-page: 73 year: 2004 end-page: 82 article-title: Transgenic chickpea seeds expressing high levels of a bean α‐amylase inhibitor publication-title: Molecular Breeding – volume: 92 start-page: 8041 year: 1995 end-page: 8045 article-title: Adaptation of larvae to plant proteinase inhibitors by induction of gut proteinase activity insensitive to inhibition publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 43 start-page: 727 year: 1997 end-page: 739 article-title: Effects of snowdrop lectin (GNA) delivered via artificial diet and transgenic plants on the development of the tomato moth ( ) larvae in laboratory and glasshouse trials publication-title: Journal of Insect Physiology – volume: 1 start-page: 509 year: 1974 end-page: 513 article-title: Substituted phenols as repellents for male (Goleoptera: Scarabaeidae) in mating flights publication-title: New Zealand Journal of Zoology – volume: 26 start-page: 45 year: 2001 end-page: 55 article-title: The occurrence and effectiveness of hypersensitive reaction against galling herbivores across host taxa publication-title: Ecology Entomology – volume: 9 start-page: 113 year: 1999 end-page: 117 article-title: Within‐plant allocation of a chemical defense in . Is concentration the appropriate currency of allocation publication-title: Chemoecology – volume: 127 start-page: 617 year: 1994 end-page: 633 article-title: Secondary metabolites in plant defence mechanisms publication-title: New Physiologist – volume: 10 start-page: 399 year: 2007 end-page: 408 article-title: Plant‐aphid interactions: molecular and ecological perspectives publication-title: Current Opinion in Plant Biology – volume: 3 start-page: 79 year: 2004 end-page: 96 article-title: Peroxi‐dase‐dependent cross‐linking reactions of ‐hydroxycinnamates in plant cell walls publication-title: Phytochemistry Reviews – volume: 32 start-page: 3 year: 1996 end-page: 37 article-title: Antinutritive and toxic components of plant defense against insects publication-title: Archives of Insect Biochemistry and Physiology – volume: 101 start-page: 519 year: 2000 end-page: 526 article-title: Soybean Kunitz, C‐II and PI‐IV inhibitor genes confer different levels of insect resistance to tobacco and potato transgenic plants publication-title: Theoretical and Applied Genetics – volume: 103 start-page: 8575 year: 2006 end-page: 8576 article-title: Two modes of pathogen recognition by plants publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 46 start-page: 5318 year: 1998 end-page: 5323 article-title: Toxicity of isothiocyanates produced by glucosinolates in Brassicaceae species to black vine weevil eggs publication-title: Journal of Agriculture and Food Chemistry – volume: 4 start-page: 18 year: 1995 end-page: 25 article-title: Expression of snowdrop lectin in transgenic tobacco plants results in added protection against aphids publication-title: Transgen Research – volume: 72 start-page: 181 year: 1994 end-page: 187 article-title: Isolation of a chitin‐binding lectin, with insecticidal activity in chemically‐defined synthetic diets, from two wild brassica species with resistance to cabbage aphid publication-title: Entomologia Experimentalis et Applicata – volume: 12 start-page: 1031 year: 2000 end-page: 1040 article-title: A unique 33‐kD cysteine proteinase accumulates in response to larval feeding in maize genotypes resistant to fall armyworm and other Lepidoptera publication-title: Plant Cell – volume: 27 start-page: 253 year: 1995 end-page: 271 article-title: The role of lectins in plant defense publication-title: Histochemical Journal – volume: 56 start-page: 84 year: 2004 end-page: 96 article-title: Mechanisms of the insecticidal action of TEL ( Lectin) against (Coleoptera: Bruchidae) publication-title: Archives of Insect Biochemistry and Physiology – volume: 175 start-page: 776 year: 1972 end-page: 777 article-title: Wound‐induced proteinase inhibitor in plant leaves: a possible defense mechanism against insects publication-title: Science – volume: 46 start-page: 347 year: 2001 end-page: 359 article-title: A Kunitz trypsin inhibitor gene family from trembling aspen ( Michx.): cloning, functional expression, and induction by wounding and herbivory publication-title: Plant Molecular Biology – volume: 4 start-page: 45 year: 2005 end-page: 49 article-title: Study on transformation of cowpea trypsin inhibitor gene into cauliflower ( L. var. ) publication-title: African Journal of Biotechnology – volume: 4 start-page: 1157 year: 1992 end-page: 1170 article-title: General roles of abscisic and jasmonic acids in gene activation as a result of mechanical wounding publication-title: Plant Cell – volume: 99 start-page: 10 year: 2002 end-page: 24 article-title: Modification of adverse conditions by insects publication-title: Oikos – start-page: 344 year: 2007 – start-page: 560 year: 1995 – volume: 149 start-page: 1997 year: 1998 end-page: 2006 article-title: Genetic mechanisms underlying apimaysin and maysin synthesis and corn earworm antibiosis in maize ( L.) publication-title: Genetics – start-page: 457 year: 1997 end-page: 470 – volume: 3 start-page: 304 year: 1999 – volume: 29 start-page: 174 year: 2004 end-page: 187 article-title: Feeny revisited: condensed tannins as anti‐herbivore defenses in leaf‐chewing herbivore communities of Quercus publication-title: Ecological Entomology – volume: 4 start-page: 973 year: 2006 end-page: 988 article-title: Beyond carbohydrate binding: new directions in plant lectin research publication-title: Organic and Biomolecular Chemistry – volume: 5 start-page: 53 year: 1999 end-page: 63 article-title: Increased insect resistance in transgenic wheat stably expressing trypsin inhibitor CMe publication-title: Molecular Breeding – volume: 143 start-page: 1954 year: 2007 end-page: 1967 article-title: Stability of plant defense proteins in the gut of insect herbivores publication-title: Plant Physiology – volume: 12 start-page: 907 year: 1971 end-page: 915 article-title: Studies on rice seed protease V. Protease inhibitor in rice seed publication-title: Plant Cell Physiology – volume: 43 start-page: 885 year: 1997 end-page: 895 article-title: The adaptation of insects to plant protease inhibitors publication-title: Journal of Insect Physiology – volume: 311 start-page: 812 year: 2006 end-page: 815 article-title: Volatile signaling in plant‐plant interactions: “Talking Trees” in the genomics era publication-title: Science – volume: 92 start-page: 407 year: 1995 end-page: 411 article-title: Systemin activates synthesis of wound‐inducible tomato leaf polyphenol oxidase via the octadecanoid defense signaling pathway publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 99 start-page: 305 year: 2006 end-page: 316 article-title: Virulent Hessian fly (Diptera: Cecidomyiidae) larvae induce a nutritive tissue during compatible interactions with wheat publication-title: Annals of the Entomological Society of America – volume: 24 start-page: 888 year: 2005 end-page: 893 article-title: Efficacy of flavonoids in controlling (L.) (Coleoptera: Brachidae), a post‐harvest pest of grain legumes publication-title: Crop Protection – volume: 94 start-page: 958 year: 2001 end-page: 962 article-title: Hypersensitive response of beans to (Coleoptera: Curculionidae) publication-title: Journal of Economical Entomology – volume: 12 start-page: 1569 year: 2007 end-page: 1595 article-title: Functional analysis of polyphenol oxidases by antisense/sense technology publication-title: Molecules – volume: 60 start-page: 25 year: 1997 end-page: 29 article-title: The development of genetic transformation of sugarcane in Texas publication-title: International Sugar Journal – volume: 164 start-page: S93 year: 2003 end-page: S102 article-title: The evolution of function in plant secondary metabolites publication-title: International Journal of Plant Science – volume: 28 start-page: 425 year: 1990 end-page: 449 article-title: Proteinase inhibitors in plants: Genes for improving defenses against insects and pathogens publication-title: Annual Review of Phytopathology – volume: 76 start-page: 143 year: 1995 end-page: 155 article-title: Toxicity of lectins and processing of ingested proteins in the pea aphid publication-title: Entomologia Experimentalis et Applicata – volume: 2 start-page: 259 year: 2002 end-page: 273 article-title: Probing plant‐pathogen interactions and downstream defense signaling using DNA microarrays publication-title: Functional and Integrative Genomics – volume: 89 start-page: 233 year: 1998 end-page: 242 article-title: Settling behaviour and reproductive potential of the green peach aphid on peach varieties and a related wild publication-title: Entomologia Experimentalis et Applicata – volume: 80 start-page: 847 year: 2001 end-page: 853 article-title: Proteinase inhibitors: Plant‐derived genes of insecticidal protein for developing insect‐resistant transgenic plants publication-title: Current Science – volume: 151 start-page: 351 year: 2006 end-page: 360 article-title: Production and analysis of transgenic wheat ( .) with improved insect resistance by the introduction of cowpea trypsin inhibitor gene publication-title: Euphytica – volume: 96 start-page: 950 year: 2003 end-page: 956 article-title: Effects of snowdrop lectin (GNA) on Mexican rice borer (Lepidoptera: Pyralidae) life history parameters publication-title: Journal of Economic Entomology – volume: 12 start-page: 607 year: 2003 end-page: 614 article-title: Transformation of tobacco with genes encoding agglutinin (HTA) confers resistance to peach‐potato aphid ( ) publication-title: Transgenic Research – volume: 134 start-page: 1181 year: 2004 end-page: 1190 article-title: Manipulation of endogenous trypsin proteinase inhibitor production in demonstrates their function as antiherbivore defenses publication-title: Plant Physiology – volume: 5 start-page: 357 year: 1999 end-page: 365 article-title: Transgenic tobacco and peas expressing a proteinase inhibitor from have increased insect resistance publication-title: Molecular Breeding – start-page: 232 year: 1989 – volume: 33 start-page: 2171 year: 2007 end-page: 2194 article-title: Gene expression of different wheat genotypes during attack by virulent and avirulent Hessian fly ( ) larvae publication-title: Journal of Chemical Ecology – volume: 99 start-page: 71 year: 2001 end-page: 77 article-title: Antimetabolic effects of plant lectins towards nymphal stages of the planthoppers and publication-title: Entomologia Experimentalis et Applicata – volume: 5 start-page: 168 year: 2000 end-page: 173 article-title: The cell and developmental biology of alkaloid biosynthesis publication-title: Trends in Plant Science – volume: 3 start-page: 50 year: 1994 end-page: 58 article-title: Accumulation of the chymotrypsin inhibitor in transgenic tobacco can affect the growth of insect pests publication-title: Transgenic Research – volume: 19 start-page: 1553 year: 1993 end-page: 1568 article-title: Potential role of ascor‐bate oxidase as a plant defense protein against insect herbivory publication-title: Journal of Chemical Ecology – volume: 86 start-page: 9871 year: 1989 end-page: 9875 article-title: Expression of proteinase inhibitors I and II in transgenic tobacco plants: effects on natural defense against larvae publication-title: Proceedings of the National Academy of Sciences of the United States of America – volume: 35 start-page: 1696 year: 2006 end-page: 1701 article-title: Insect herbivory on low‐lignin transgenic aspen publication-title: Environmental Entomology – volume: 21 start-page: 511 year: 2002 end-page: 514 article-title: Transgenic rice lines with enhanced resistance to the small brown planthopper publication-title: Crop Protection – volume: 1 start-page: 319 year: 1995 end-page: 328 article-title: Toxicity to (Coleoptera: Chrysomelidae) of transgenic poplars expressing a cysteine proteinase inhibitor publication-title: Molecular Breeding – start-page: 153 year: 1996 end-page: 186 – volume: 28 start-page: 1411 year: 2002 end-page: 1428 article-title: A lectin‐like wheat gene responds systemically to attempted feeding by avirulent first‐instar Hessian fly larvae publication-title: Journal of Chemical Ecology – volume: 200 start-page: 1296 year: 1978 end-page: 1298 article-title: Allylglucosinolate and herbivorous caterpillars: a contrast in toxicity and tolerance publication-title: Science – volume: 122 start-page: 1 year: 2006 end-page: 16 article-title: The molecular bases of plant resistance and defense responses to aphid feeding: current status publication-title: Entomologia Experimentalis et Applicata – volume: 44 start-page: 321 year: 2000 end-page: 334 article-title: Hypersensitive response‐related death publication-title: Plant Molecular Biology – volume: 42 start-page: 1035 year: 1996 end-page: 1045 article-title: Snowdrop lectin inhibits development and fecundity of the glasshouse potato aphid ( ) when administered in vitro and via transgenic plants both in laboratory and glasshouse trials publication-title: Journal of Insect Physiology – volume: 47 start-page: 873 year: 2005 end-page: 880 article-title: Enhanced resistance of snowdrop lectin ( L. ( Guenée) publication-title: Journal of Integrative of Plant Biology – ident: e_1_2_1_143_1 doi: 10.1007/978-94-009-1519-0_6 – ident: e_1_2_1_121_1 doi: 10.1042/BJ20031825 – start-page: 304 volume-title: Annual Plant Reviews year: 1999 ident: e_1_2_1_158_1 contributor: fullname: Wink M. – ident: e_1_2_1_34_1 doi: 10.1111/j.1467-7652.2005.00151.x – ident: e_1_2_1_122_1 doi: 10.1111/j.1570-7458.1995.tb01956.x – ident: e_1_2_1_76_1 doi: 10.1111/j.1570-7458.1996.tb00838.x – start-page: 1021 volume-title: Encyclopedia of Plant and Crop Science year: 2005 ident: e_1_2_1_124_1 contributor: fullname: Rohfritsch O. – ident: e_1_2_1_78_1 doi: 10.1126/science.1265481 – ident: e_1_2_1_109_1 doi: 10.1016/0031-9422(90)89016-3 – ident: e_1_2_1_11_1 doi: 10.1126/science.200.4347.1296 – ident: e_1_2_1_163_1 doi: 10.1016/j.ibmb.2004.09.006 – ident: e_1_2_1_3_1 doi: 10.1111/j.0962-1075.2004.00523.x – ident: e_1_2_1_37_1 doi: 10.1016/0022-1910(92)90128-Z – volume: 72 start-page: 741 year: 1997 ident: e_1_2_1_127_1 article-title: Development of insect‐resistant transgenic plants using plant genes: Expression of cowpea trypsin inhibitor in transgenic tobacco plants publication-title: Current Science contributor: fullname: Sane V.A. – ident: e_1_2_1_87_1 doi: 10.1126/science.1096931 – volume: 10 start-page: 237 year: 1998 ident: e_1_2_1_97_1 article-title: Obtaining transgenic cotton plants with cow‐pea trypsin inhibitor gene publication-title: Acta Gossypii Sinica contributor: fullname: Li Y.E. – volume: 49 start-page: 53 year: 1997 ident: e_1_2_1_95_1 article-title: Mexican rice borer, Eoreuma loftini (Lepidoptera: Pyralidae) in the lower Rio Grande valley of Texas: its history and control publication-title: Subtropical Plant Science contributor: fullname: Legaspi J.C. – ident: e_1_2_1_96_1 doi: 10.1007/BF01248409 – ident: e_1_2_1_110_1 doi: 10.1016/0031-9422(88)80731-3 – ident: e_1_2_1_49_1 doi: 10.1023/A:1009600321838 – ident: e_1_2_1_114_1 doi: 10.1105/tpc.12.7.1031 – ident: e_1_2_1_154_1 doi: 10.1007/s10142-002-0080-4 – ident: e_1_2_1_55_1 doi: 10.1016/j.pbi.2007.06.004 – ident: e_1_2_1_27_1 doi: 10.1034/j.1600-0706.2002.990102.x – ident: e_1_2_1_123_1 doi: 10.1046/j.1365-313X.1998.00226.x – ident: e_1_2_1_108_1 doi: 10.1073/pnas.070054597 – volume: 80 start-page: 847 year: 2001 ident: e_1_2_1_150_1 article-title: Proteinase inhibitors: Plant‐derived genes of insecticidal protein for developing insect‐resistant transgenic plants publication-title: Current Science contributor: fullname: Ussuf K.K. – ident: e_1_2_1_24_1 doi: 10.1073/pnas.92.2.407 – ident: e_1_2_1_140_1 doi: 10.1016/S0169-5347(03)00247-7 – ident: e_1_2_1_117_1 doi: 10.1111/j.1570-7458.1993.tb00699.x – ident: e_1_2_1_79_1 doi: 10.1073/pnas.86.24.9871 – ident: e_1_2_1_99_1 doi: 10.1007/s10886-007-9382-2 – ident: e_1_2_1_145_1 doi: 10.1007/s00425-004-1330-6 – ident: e_1_2_1_157_1 doi: 10.1023/A:1016200619766 – ident: e_1_2_1_82_1 doi: 10.1007/s10886-004-7943-1 – ident: e_1_2_1_162_1 doi: 10.1104/pp.103.035634 – ident: e_1_2_1_47_1 doi: 10.1111/j.1365-2311.2004.0590.x – ident: e_1_2_1_54_1 doi: 10.1146/annurev.phyto.39.1.27 – ident: e_1_2_1_141_1 doi: 10.1016/S0261-2194(01)00127-2 – ident: e_1_2_1_30_1 doi: 10.1007/s002990050497 – start-page: 560 volume-title: Saponins (Chemistry and Pharmacology of Natural Products year: 1995 ident: e_1_2_1_73_1 contributor: fullname: Hostettmann K.A. – ident: e_1_2_1_62_1 doi: 10.1023/A:1010654711619 – ident: e_1_2_1_107_1 doi: 10.1046/j.1570-7458.1999.00576.x – ident: e_1_2_1_23_1 doi: 10.1023/A:1009640204314 – ident: e_1_2_1_44_1 doi: 10.1016/S0022-1910(98)00090-0 – ident: e_1_2_1_89_1 doi: 10.1039/b515446d – ident: e_1_2_1_164_1 doi: 10.1094/MPMI-21-1-0070 – start-page: 457 volume-title: Plant Pathology year: 1997 ident: e_1_2_1_2_1 contributor: fullname: Agrios G.N. – ident: e_1_2_1_59_1 doi: 10.1126/science.175.4023.776 – ident: e_1_2_1_6_1 doi: 10.1023/A:1009659911798 – start-page: 344 volume-title: Isolation and Structure Elucidation of Bioactive Secondary Metabolites from Indonesian Marine Sponges year: 2007 ident: e_1_2_1_66_1 contributor: fullname: Hertiani T. – ident: e_1_2_1_106_1 doi: 10.1007/BF01976027 – ident: e_1_2_1_128_1 doi: 10.1023/B:MOLB.0000037996.01494.12 – ident: e_1_2_1_21_1 doi: 10.1111/j.0013-8703.2004.00192.x – ident: e_1_2_1_67_1 doi: 10.1080/03014223.1974.9517852 – ident: e_1_2_1_92_1 doi: 10.1093/jxb/eri318 – ident: e_1_2_1_153_1 doi: 10.1007/s003440000026 – ident: e_1_2_1_19_1 doi: 10.1074/jbc.M407151200 – ident: e_1_2_1_148_1 doi: 10.1007/BF00232917 – ident: e_1_2_1_86_1 doi: 10.1146/annurev.arplant.53.100301.135207 – ident: e_1_2_1_133_1 doi: 10.1073/pnas.0605921103 – ident: e_1_2_1_10_1 doi: 10.1007/s10681-006-9157-9 – ident: e_1_2_1_39_1 doi: 10.1007/BF02059605 – ident: e_1_2_1_152_1 doi: 10.1016/j.pbi.2004.04.003 – ident: e_1_2_1_61_1 doi: 10.1073/pnas.0831246100 – volume: 410 start-page: 577 year: 2001 ident: e_1_2_1_29_1 article-title: Caterpillar‐induced nocturnal plant volatiles repel conspecific females publication-title: Nature doi: 10.1038/35069058 contributor: fullname: DeMoraes C.M. – ident: e_1_2_1_4_1 doi: 10.1046/j.1439-0418.2003.00806.x – ident: e_1_2_1_98_1 doi: 10.1007/s00425-002-0750-4 – ident: e_1_2_1_64_1 doi: 10.1023/A:1026592509060 – ident: e_1_2_1_38_1 doi: 10.1007/BF00984896 – ident: e_1_2_1_12_1 doi: 10.1021/jf9805754 – volume: 126 start-page: 347 year: 1995 ident: e_1_2_1_52_1 article-title: The effect of modifying the glucosinolate content of leaves on oilseed rape (Brassica napus ssp. oleifera) on its interaction with specialist and generalist pests publication-title: Annals of Applied Biology doi: 10.1111/j.1744-7348.1995.tb05371.x contributor: fullname: Giamoustaris A. – ident: e_1_2_1_33_1 doi: 10.1002/(SICI)1520-6327(1996)32:1<3::AID-ARCH2>3.0.CO;2-1 – ident: e_1_2_1_43_1 doi: 10.1093/ee/19.5.1278 – ident: e_1_2_1_53_1 doi: 10.1007/s000490050041 – ident: e_1_2_1_112_1 doi: 10.1073/pnas.90.21.9906 – ident: e_1_2_1_156_1 doi: 10.1046/j.1570-7458.1998.00390.x – ident: e_1_2_1_104_1 doi: 10.1007/s001220051511 – volume: 68 start-page: 516 year: 1991 ident: e_1_2_1_40_1 article-title: α‐Amylase inhibitors from rice: fractionation and selectivity towards insects, mammalian and bacterial α‐Amylases publication-title: Cereal Chemistry contributor: fullname: Feng G.H. – ident: e_1_2_1_46_1 doi: 10.1016/S0022-1910(99)00143-2 – ident: e_1_2_1_103_1 doi: 10.1021/jf063030f – start-page: 256 volume-title: The Hypersensitive Reaction in Plants to Pathogens year: 1994 ident: e_1_2_1_56_1 contributor: fullname: Goodman R.N. – ident: e_1_2_1_155_1 doi: 10.1111/j.1744-7909.2005.00096.x – ident: e_1_2_1_63_1 doi: 10.1603/0013-8746(2006)099[0305:VHFDCL]2.0.CO;2 – ident: e_1_2_1_125_1 doi: 10.1146/annurev.py.28.090190.002233 – ident: e_1_2_1_42_1 doi: 10.1016/j.copbio.2004.01.008 – ident: e_1_2_1_91_1 doi: 10.1111/j.1365-2745.2006.01120.x – ident: e_1_2_1_151_1 doi: 10.1111/j.1365-3040.2006.01618.x – ident: e_1_2_1_115_1 doi: 10.1007/BF00398968 – volume: 96 start-page: 950 year: 2003 ident: e_1_2_1_135_1 article-title: Effects of snowdrop lectin (GNA) on Mexican rice borer (Lepidoptera: Pyralidae) life history parameters publication-title: Journal of Economic Entomology doi: 10.1603/0022-0493-96.3.950 contributor: fullname: Setamou M. – ident: e_1_2_1_138_1 doi: 10.1111/j.1570-7458.2006.00503.x – ident: e_1_2_1_48_1 doi: 10.1603/0022-0493-94.4.958 – ident: e_1_2_1_137_1 doi: 10.1093/ee/12.3.787 – ident: e_1_2_1_93_1 doi: 10.1093/genetics/149.4.1997 – ident: e_1_2_1_68_1 doi: 10.1007/BF01976497 – ident: e_1_2_1_116_1 doi: 10.1046/j.1570-7458.2001.00803.x – ident: e_1_2_1_102_1 doi: 10.1007/s00299-006-0281-8 – ident: e_1_2_1_13_1 doi: 10.1093/ee/35.6.1696 – ident: e_1_2_1_85_1 doi: 10.1126/science.291.5511.2141 – ident: e_1_2_1_65_1 doi: 10.1007/978-94-010-9132-9 – volume: 102 start-page: 18771 year: 2005 ident: e_1_2_1_20_1 article-title: Jasmonate‐inducible plant enzymes degrade essential amino acids in the herbivore midgut publication-title: Proceedings of the National Academy of Sciences of the United States of America contributor: fullname: Chen H. – ident: e_1_2_1_94_1 doi: 10.1023/A:1009660712382 – ident: e_1_2_1_146_1 doi: 10.1104/pp.115.2.409 – ident: e_1_2_1_7_1 doi: 10.1126/science.1118446 – ident: e_1_2_1_129_1 doi: 10.1046/j.1570-7458.1998.00404.x – ident: e_1_2_1_14_1 doi: 10.1002/arch.20078 – ident: e_1_2_1_5_1 doi: 10.1023/A:1022176207180 – ident: e_1_2_1_105_1 doi: 10.1023/A:1008957610872 – ident: e_1_2_1_81_1 doi: 10.1016/S0022-1910(97)00040-1 – ident: e_1_2_1_35_1 doi: 10.1038/nbt0297-137 – ident: e_1_2_1_90_1 doi: 10.1046/j.1365-313X.2003.01968.x – volume: 60 start-page: 25 year: 1997 ident: e_1_2_1_75_1 article-title: The development of genetic transformation of sugarcane in Texas publication-title: International Sugar Journal contributor: fullname: Irvine J.E. – ident: e_1_2_1_131_1 doi: 10.1111/j.1570-7458.1996.tb00836.x – ident: e_1_2_1_134_1 doi: 10.1603/0022-0493-95.2.469 – ident: e_1_2_1_136_1 doi: 10.1038/nbt0894-793 – ident: e_1_2_1_25_1 doi: 10.1007/0-306-47596-0_6 – ident: e_1_2_1_130_1 doi: 10.1111/j.0013-8703.2004.00117.x – ident: e_1_2_1_132_1 doi: 10.1073/pnas.0602328103 – ident: e_1_2_1_32_1 doi: 10.1038/nbt0496-494 – ident: e_1_2_1_120_1 doi: 10.1023/B:PHYT.0000047811.13837.fb – ident: e_1_2_1_80_1 doi: 10.1073/pnas.92.17.8041 – ident: e_1_2_1_15_1 doi: 10.1111/j.1744-7909.2006.00258.x – ident: e_1_2_1_77_1 doi: 10.17660/ActaHortic.1993.336.22 – ident: e_1_2_1_58_1 doi: 10.1111/j.1744-7348.1997.tb05401.x – volume: 21 start-page: 171 year: 1999 ident: e_1_2_1_111_1 article-title: Transgenic sugarcane with increased resistance to canegrubs publication-title: Proceedings of Australian Society of Sugar Cane Technologists contributor: fullname: Nutt K.A. – ident: e_1_2_1_149_1 doi: 10.1105/tpc.017723 – ident: e_1_2_1_57_1 doi: 10.1590/S1519-566X2005000500013 – ident: e_1_2_1_31_1 doi: 10.1016/S0022-1910(96)00065-0 – start-page: 35 volume-title: Lectins: Biomedical Perspectives year: 1995 ident: e_1_2_1_51_1 contributor: fullname: Gatehouse A.M.R. – ident: e_1_2_1_69_1 doi: 10.1038/330160a0 – ident: e_1_2_1_147_1 doi: 10.3390/12081569 – ident: e_1_2_1_9_1 doi: 10.1111/j.1570-7458.1996.tb00766.x – ident: e_1_2_1_45_1 doi: 10.1016/S0022-1910(97)00042-5 – ident: e_1_2_1_50_1 doi: 10.1111/j.1570-7458.1996.tb00837.x – ident: e_1_2_1_126_1 doi: 10.1016/j.cropro.2005.01.013 – ident: e_1_2_1_161_1 doi: 10.1007/s002990050304 – volume: 43 start-page: 592 year: 2001 ident: e_1_2_1_160_1 article-title: Aphid‐resistant transgenic tobacco plants expressing modified gna gene publication-title: Acta Botanic Sinica contributor: fullname: Yuan Z. – ident: e_1_2_1_113_1 doi: 10.1073/pnas.202224899 – ident: e_1_2_1_36_1 doi: 10.1073/pnas.0509895102 – volume: 26 start-page: 45 year: 2001 ident: e_1_2_1_41_1 article-title: The occurrence and effectiveness of hypersensitive reaction against galling herbivores across host taxa publication-title: Ecology Entomology contributor: fullname: Fernandes G.W. – ident: e_1_2_1_71_1 doi: 10.1093/jxb/eri318 – ident: e_1_2_1_22_1 doi: 10.1111/j.1570-7458.1994.tb01816.x – ident: e_1_2_1_88_1 doi: 10.1016/S1360-1385(97)90052-2 – ident: e_1_2_1_28_1 doi: 10.1016/S1360-1385(00)01575-2 – ident: e_1_2_1_16_1 doi: 10.1023/A:1025810213869 – ident: e_1_2_1_142_1 doi: 10.1126/science.1062249 – ident: e_1_2_1_159_1 doi: 10.1007/BF00441431 – ident: e_1_2_1_139_1 doi: 10.1023/A:1009616413886 – ident: e_1_2_1_74_1 doi: 10.1007/0-387-23266-4_13 – ident: e_1_2_1_144_1 doi: 10.1086/374190 – volume: 4 start-page: 1157 year: 1992 ident: e_1_2_1_70_1 article-title: General roles of abscisic and jasmonic acids in gene activation as a result of mechanical wounding publication-title: Plant Cell contributor: fullname: Hildmann T. – volume: 4 start-page: 45 year: 2005 ident: e_1_2_1_100_1 article-title: Study on transformation of cowpea trypsin inhibitor gene into cauliflower (Brassica oleracea L. var. botrytis) publication-title: African Journal of Biotechnology contributor: fullname: Lu L. – ident: e_1_2_1_101_1 doi: 10.1002/arch.10145 – ident: e_1_2_1_17_1 doi: 10.1023/A:1009633710224 – ident: e_1_2_1_18_1 doi: 10.1104/pp.107.095588 – ident: e_1_2_1_119_1 doi: 10.1016/S0022-1910(98)00054-7 – volume: 12 start-page: 907 year: 1971 ident: e_1_2_1_72_1 article-title: Studies on rice seed protease V. Protease inhibitor in rice seed publication-title: Plant Cell Physiology doi: 10.1093/oxfordjournals.pcp.a074695 contributor: fullname: Horiguchi T. – volume: 21 start-page: 829 year: 2003 ident: e_1_2_1_84_1 article-title: Role of the reactive oxygen species‐generating peroxidase reactions in plant defense and growth induction publication-title: Plant Cell Reports doi: 10.1007/s00299-003-0591-z contributor: fullname: Kawano T. – ident: e_1_2_1_8_1 doi: 10.1111/j.1469-8137.1994.tb02968.x – ident: e_1_2_1_83_1 doi: 10.1105/tpc.106.041103 – volume: 75 start-page: 51 year: 1995 ident: e_1_2_1_118_1 article-title: Antifeedant effects of plant‐lectins and an enzyme on the adult stage of the rice brown planthopper, Nilaparvata lugens publication-title: Entomologia Experimentalis et Applicata doi: 10.1111/j.1570-7458.1995.tb01909.x contributor: fullname: Powell K.S. – ident: e_1_2_1_26_1 doi: 10.1073/pnas.0603183103 – ident: e_1_2_1_60_1 doi: 10.1111/j.1570-7458.1995.tb01902.x |
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Snippet | Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all plant traits... Abstract Plants respond to insect herbivory with responses broadly known as direct defenses, indirect defenses, and tolerance. Direct defenses include all... |
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SubjectTerms | chemical defense defensive protease lectins protease inhibitor secondary metabolite |
Title | Inducible direct plant defense against insect herbivores: A review |
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