Drastic flowering phenology shift and population genetic structure in F1 hybrids between two ecotypes of Imperata cylindrica

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Published inJournal of Weed Science and Technology Vol. 68; no. 2; pp. 68 - 73
Main Author Nomura, Yasuyuki
Format Journal Article
LanguageEnglish
Japanese
Published The Weed Science Society of Japan 2023
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Author Nomura, Yasuyuki
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  fullname: Nomura, Yasuyuki
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Cites_doi 10.1111/wbm.12164
10.1111/wre.12149
10.1111/j.1558-5646.2010.01129.x
10.1111/1365-2745.13890
10.3719/weed.51.146
10.1126/science.aao4593
10.1111/j.1469-8137.2007.02217.x
10.3719/weed.34.273
10.1007/s10530-008-9388-x
10.3719/weed.52.17
10.1046/j.1523-1739.1996.10010010.x
10.1007/s10530-008-9385-0
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References 冨永達・西脇亜也・水口亜樹・江崎次夫 2007.雑草モノグラフ 5. チガヤ(Imperata cylindrica (L.) Beauv.).雑草研究 52, 17–27.
Holm, L.G., D.L. Plucknett, J.V. Pancho and J.P. Herberger 1977. Imperata cylindrica (L.) Beauv. POACEAE (also GRAMINEAE). GRASS FAMILY. In “The World’s Worst Weeds, Distribution and Biology” ed. by L.G. Holm, D.L. Plucknett, J.V. Pancho and J.P. Herberger, University Press of Hawaii, Honolulu, USA, pp. 62–71.
Mitsui, Y., N. Nomura, Y. Isagi, H. Tobe and H. Setoguchi 2011. Ecological barriers to gene flow between riparian and forest species of Ainsliaea (Asteraceae). Evolution 65, 335–349.
Lamichhaney, S., F. Han, M.T. Webster, L. Andersson, B.R. Grant and P.R. Grant 2018. Rapid hybrid speciation in Darwin’s finches. Science 359, 224–228.
Nomura, Y., K. Yasuda, A. Nishiwaki and T. Tominaga 2018. Reciprocal transplant experiments testing the performance of common and early flowering types of Imperata cylindrica in Japan. Weed Biol. Manag. 18, 167–175.
保田謙太郎・芝山秀次郎 2006.イネ科植物における葉緑体ゲノムの非コード領域のDNAを増幅するプライマー.雑草研究 51, 146–151.
Nomura, Y., Y. Shimono, N. Mizuno, I. Miyoshi, S. Iwakami, K. Sato and T. Tominaga 2022. Drastic shift in flowering phenology of F1 hybrids causing rapid reproductive isolation in Imperata cylindrica in Japan. J. Ecol. 110, 1548–1560.
Prentis, P.J., E.M. White, I.J. Radford, A.J. Lowe and A.R. Clarke 2007. Can hybridization cause local extinction: a case for demographic swamping of the Australian native Senecio pinnatifolius by the invasive Senecio madagascariensis? New Phytol. 176, 902–912.
Levin, D.A., J. Francisco-Ortega and R.K. Jansen 1996. Hybridization and the extinction of rare plant species. Conserv. Biol. 10, 10–16.
Nomura, Y., Y. Shimono and T. Tominaga 2015. Development of chloroplast DNA markers in Japanese Imperata cylindrica. Weed Res. 55, 329–333.
Schierenbeck, K.A. and N.C. Ellstrand 2009. Hybridization and the evolution of invasiveness in plants and other organisms. Biol. Invasions 11, 1093–1105.
Sloop, C.M., D.R. Ayres and D.R. Strong 2009. The rapid evolution of self-fertility in Spartina hybrids (Spartina alterniflora×foliosa) invading San Francisco Bay, CA. Biol. Invasions 11, 1131–1144.
Tominaga, T., H. Kobayashi and K. Ueki 1989b. Intra- and Inter-populational variation of Imperata cylindrica var. koenigii on Kii-Ohshima island of Japan. Weed Res. Japan 34, 273–279.
Tominaga, T., H. Kobayashi and K. Ueki 1989a. Geographical variation of Imperata cylindrica (L.) Beauv. in Japan. J. Japanese Grassl. Sci. 35, 164–171.
松村正幸・行村徹 1980.チガヤ種内2型の比較生態 (1) 植生からみた普通型及び早生型チガヤの生育地特性.岐阜大農研報 43, 233–248.
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References_xml – reference: Tominaga, T., H. Kobayashi and K. Ueki 1989a. Geographical variation of Imperata cylindrica (L.) Beauv. in Japan. J. Japanese Grassl. Sci. 35, 164–171.
– reference: Holm, L.G., D.L. Plucknett, J.V. Pancho and J.P. Herberger 1977. Imperata cylindrica (L.) Beauv. POACEAE (also GRAMINEAE). GRASS FAMILY. In “The World’s Worst Weeds, Distribution and Biology” ed. by L.G. Holm, D.L. Plucknett, J.V. Pancho and J.P. Herberger, University Press of Hawaii, Honolulu, USA, pp. 62–71.
– reference: Prentis, P.J., E.M. White, I.J. Radford, A.J. Lowe and A.R. Clarke 2007. Can hybridization cause local extinction: a case for demographic swamping of the Australian native Senecio pinnatifolius by the invasive Senecio madagascariensis? New Phytol. 176, 902–912.
– reference: Tominaga, T., H. Kobayashi and K. Ueki 1989b. Intra- and Inter-populational variation of Imperata cylindrica var. koenigii on Kii-Ohshima island of Japan. Weed Res. Japan 34, 273–279.
– reference: Nomura, Y., Y. Shimono and T. Tominaga 2015. Development of chloroplast DNA markers in Japanese Imperata cylindrica. Weed Res. 55, 329–333.
– reference: Levin, D.A., J. Francisco-Ortega and R.K. Jansen 1996. Hybridization and the extinction of rare plant species. Conserv. Biol. 10, 10–16.
– reference: Mitsui, Y., N. Nomura, Y. Isagi, H. Tobe and H. Setoguchi 2011. Ecological barriers to gene flow between riparian and forest species of Ainsliaea (Asteraceae). Evolution 65, 335–349.
– reference: Nomura, Y., Y. Shimono, N. Mizuno, I. Miyoshi, S. Iwakami, K. Sato and T. Tominaga 2022. Drastic shift in flowering phenology of F1 hybrids causing rapid reproductive isolation in Imperata cylindrica in Japan. J. Ecol. 110, 1548–1560.
– reference: Nomura, Y., K. Yasuda, A. Nishiwaki and T. Tominaga 2018. Reciprocal transplant experiments testing the performance of common and early flowering types of Imperata cylindrica in Japan. Weed Biol. Manag. 18, 167–175.
– reference: Schierenbeck, K.A. and N.C. Ellstrand 2009. Hybridization and the evolution of invasiveness in plants and other organisms. Biol. Invasions 11, 1093–1105.
– reference: Lamichhaney, S., F. Han, M.T. Webster, L. Andersson, B.R. Grant and P.R. Grant 2018. Rapid hybrid speciation in Darwin’s finches. Science 359, 224–228.
– reference: 松村正幸・行村徹 1980.チガヤ種内2型の比較生態 (1) 植生からみた普通型及び早生型チガヤの生育地特性.岐阜大農研報 43, 233–248.
– reference: Sloop, C.M., D.R. Ayres and D.R. Strong 2009. The rapid evolution of self-fertility in Spartina hybrids (Spartina alterniflora×foliosa) invading San Francisco Bay, CA. Biol. Invasions 11, 1131–1144.
– reference: 保田謙太郎・芝山秀次郎 2006.イネ科植物における葉緑体ゲノムの非コード領域のDNAを増幅するプライマー.雑草研究 51, 146–151.
– reference: 冨永達・西脇亜也・水口亜樹・江崎次夫 2007.雑草モノグラフ 5. チガヤ(Imperata cylindrica (L.) Beauv.).雑草研究 52, 17–27.
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SubjectTerms ecotype
flowering phenology
hybridization
Imperata cylindrica (L.) Raeusch
population genetic structure
Title Drastic flowering phenology shift and population genetic structure in F1 hybrids between two ecotypes of Imperata cylindrica
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