Lateral movement of common carp (Cyprinus carpio L.) in a large lowland river and floodplain
Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio-tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah-Millewa forest...
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Published in | Ecology of freshwater fish Vol. 18; no. 1; pp. 72 - 82 |
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Main Authors | , |
Format | Journal Article |
Language | English |
Published |
Oxford, UK
Oxford, UK : Blackwell Publishing Ltd
01.03.2009
Blackwell Publishing Ltd |
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Abstract | Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio-tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah-Millewa forest, and 9 in the Murray River approximately 175 km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238 km (mean 30 ± 61 km), with 25 fish (62.5%) occupying a TLR < 10 km. Two fish made large distance movements approximately 650 km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability (P > 0.05) in TLR. Monthly distance from release varied from 0.04 to 238 km (mean 15 ± 44 km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127 km) upstream of the Barmah-Millewa forest. Fourteen fish (35%) showed site fidelity to within 20 m and usually occupied one or two home sites. Twenty-six fish (65%) showed site fidelity to within 100 m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river-floodplain environments should target key floodplain access points and over-wintering habitats to reduce adult biomass, spawning and recruitment levels. |
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AbstractList | – Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio‐tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah‐Millewa forest, and 9 in the Murray River approximately 175 km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238 km (mean 30 ± 61 km), with 25 fish (62.5%) occupying a TLR < 10 km. Two fish made large distance movements approximately 650 km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability (P > 0.05) in TLR. Monthly distance from release varied from 0.04 to 238 km (mean 15 ± 44 km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127 km) upstream of the Barmah‐Millewa forest. Fourteen fish (35%) showed site fidelity to within 20 m and usually occupied one or two home sites. Twenty‐six fish (65%) showed site fidelity to within 100 m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river‐floodplain environments should target key floodplain access points and over‐wintering habitats to reduce adult biomass, spawning and recruitment levels. Abstract – Common carp ( Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio‐tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah‐Millewa forest, and 9 in the Murray River approximately 175 km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238 km (mean 30 ± 61 km), with 25 fish (62.5%) occupying a TLR < 10 km. Two fish made large distance movements approximately 650 km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability ( P > 0.05) in TLR. Monthly distance from release varied from 0.04 to 238 km (mean 15 ± 44 km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127 km) upstream of the Barmah‐Millewa forest. Fourteen fish (35%) showed site fidelity to within 20 m and usually occupied one or two home sites. Twenty‐six fish (65%) showed site fidelity to within 100 m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river‐floodplain environments should target key floodplain access points and over‐wintering habitats to reduce adult biomass, spawning and recruitment levels. Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio-tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah-Millewa forest, and 9 in the Murray River approximately 175km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238km (mean 30c61km), with 25 fish (62.5%) occupying a TLR<10km. Two fish made large distance movements approximately 650km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability (P>0.05) in TLR. Monthly distance from release varied from 0.04 to 238km (mean 15c44km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127km) upstream of the Barmah-Millewa forest. Fourteen fish (35%) showed site fidelity to within 20m and usually occupied one or two home sites. Twenty-six fish (65%) showed site fidelity to within 100m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river-floodplain environments should target key floodplain access points and over-wintering habitats to reduce adult biomass, spawning and recruitment levels. Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio-tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah-Millewa forest, and 9 in the Murray River approximately 175 km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238 km (mean 30 ± 61 km), with 25 fish (62.5%) occupying a TLR < 10 km. Two fish made large distance movements approximately 650 km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability (P > 0.05) in TLR. Monthly distance from release varied from 0.04 to 238 km (mean 15 ± 44 km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127 km) upstream of the Barmah-Millewa forest. Fourteen fish (35%) showed site fidelity to within 20 m and usually occupied one or two home sites. Twenty-six fish (65%) showed site fidelity to within 100 m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river-floodplain environments should target key floodplain access points and over-wintering habitats to reduce adult biomass, spawning and recruitment levels. Jones MJ, Stuart IG. Lateral movement of common carp (Cyprinus carpio L.) in a large lowland river and floodplain. Ecology of Freshwater Fish 2009: 18: 72-82. [copy 2008 Arthur Rylah Institute for Environmental Research [copy 2008 Blackwell MunksgaardAbstract-Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the movement patterns of common carp, radio-tags were implanted into 46 adult fish; 37 near a large floodplain wetland, the Barmah-Millewa forest, and 9 in the Murray River approximately 175km upstream. Tagged fish were located every second week between August 1999 and March 2001. Common carp occupied total linear ranges (TLR) between 0.4 and 238km (mean 30 plus or minus 61km), with 25 fish (62.5%) occupying a TLR<10km. Two fish made large distance movements approximately 650km downstream. Fish sex, the number of locations, time at large, or tagging location explained little variability (P>0.05) in TLR. Monthly distance from release varied from 0.04 to 238km (mean 15 plus or minus 44km), and was not significantly related to river discharge and water temperature, but 29 of 31 (93.5%) fish tagged at Barmah moved from the Murray River into adjacent floodplain habitats upon flooding. Five fish (12.5%) moved large distances (>127km) upstream of the Barmah-Millewa forest. Fourteen fish (35%) showed site fidelity to within 20m and usually occupied one or two home sites. Twenty-six fish (65%) showed site fidelity to within 100m occupying up to five sites during the study period. Movement patterns of common carp were complex, and individuals exhibited different strategies, which is typical of invasive species. Efforts to control and potentially reduce common carp populations in regulated river-floodplain environments should target key floodplain access points and over-wintering habitats to reduce adult biomass, spawning and recruitment levels. |
Author | Jones, M. J. Stuart, I. G. |
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Cites_doi | 10.1111/j.1365-2400.2005.00446.x 10.1111/j.1365-2427.2004.01232.x 10.1577/1548-8659(1957)87[23:ECOCRT]2.0.CO;2 10.1577/T03-057.1 10.1007/BF00004908 10.1111/j.1095-8649.1996.tb01778.x 10.1007/BF00045929 10.1023/A:1017032616642 10.1111/j.1095-8649.1992.tb02682.x 10.1111/j.1365-2400.2006.00495.x 10.1577/1548-8659(1986)115<577:PAMFEO>2.0.CO;2 10.1023/A:1027381304091 10.1046/j.1365-2400.1999.00175.x 10.1111/j.1600-0633.2006.00213.x 10.1577/1548-8659(1986)115<286:HRSMAH>2.0.CO;2 10.1111/j.0022-1112.2004.00293.x 10.1071/MF05023 10.1071/MF9830857 10.1071/MF9850311 10.1002/rra.850 10.1577/M05-205.1 10.1002/rra.714 10.1023/A:1021356302311 10.1577/1548-8640(1984)46<185:AASPFI>2.0.CO;2 10.1002/rra.705 10.1111/j.1365-2427.2005.01477.x 10.1126/science.279.5350.555 10.1127/0003-9136/2005/0163-0117 10.1071/MF9780551 10.1071/MF97031 10.1139/f98-066 10.1071/MF05035 10.1007/978-94-011-3092-9_1 10.1002/rrr.648 10.1111/j.0021-8790.2004.00802.x 10.1071/MF9951171 10.1111/j.1095-8649.1980.tb02800.x 10.1002/rrr.3450110310 |
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References | Driver, P.D., Closs, G.P. & Koen, T.B. 2005a. The effects of size and density of carp (Cyprinus carpio L.) on water quality in an experimental pond. Archiv für Hydrobiologie 163: 117-131. King, A.J., Robertson, A.I. & Healey, M.R. 1997. Experimental manipulations of the biomass of introduced carp (Cyprinus carpio) in billabongs. I. Impacts on water-column properties. Marine & Freshwater Research 48: 435-443. Jones, M.J. & Stuart, I.G. 2007. Movements and habitat use of common carp (Cyprinus carpio) and Murray cod (Maccullochella peelii peelii) juveniles in a large lowland Australian river. Ecology of Freshwater Fish 16: 210-220. Sivakumaran, K.P., Brown, P., Stoessel, D. & Giles, A. 2003. Maturation and reproductive biology of female wild carp, Cyprinus carpio, in Victoria, Australia. Environmental Biology of Fishes 68: 321-332. Shearer, K.D. & Mulley, J.C. 1978. The Introduction and distribution of the carp, Cyprinus carpio Linnaeus, in Australia. Marine & Freshwater Research 29: 551-563. Smith, B.B. & Walker, K.F. 2004. Spawning dynamics of common carp in the River Murray, South Australia, shown by macroscopic and histological staging of gonads. Journal of Fish Biology 64: 336-354. Rodriguez-Ruiz, A. & Granado-Lorencio, C. 1992. Spawning period and migration of three species of cyprinids in a stream with Mediterranean regimen (SW Spain). Journal of Fish Biology 41: 545-556. Dodson, J.J. 1988. The nature and role of learning in the orientation and migratory behaviour of fishes. Environmental Biology of Fishes 23: 161-182. Mallen-Cooper, M. & Stuart, I.G. 2003. Age, growth and non-flood recruitment of two potamodromous fishes in a large semi-arid/temperate river system. River Research and Applications 19: 697-719. Taylor, R.M., Pegg, M.A. & Chick, J.H. 2005. Response of bighead carp to a bioacoustic behavioural fish guidance system. Fisheries Management and Ecology 12: 283-286. Cooke, S.J. & McKinley, R.S. 1999. Winter residency and activity patterns of channel catfish, Ictalurus punctatus (Rafinesques), and common carp, Cyprinus carpio L., in a thermal discharge canal. Fisheries Management and Ecology 6: 515-526. Berg, S., Jeppesen, E. & Søndergaard, M. 1997. Pike (Esox lucius L.) stocking as a biomanipulation tool 1. Effects on the fish population in Lake Lyng, Denmark. Hydrobiologia 342-343: 311-318. Schwarz, F.J. 1987. Homing behaviour of tagged and displaced carp, Cyprinus carpio, in Pymatuning Lake, Pennsylvania/Ohio. The Ohio Journal of Science 87: 15-22. Roberts, J., Chick, A., Oswald, L. & Thompson, P. 1995. Effect of carp, Cyprinus carpio L., an exotic benthivorous fish, on aquatic plants and water quality in experimental ponds. Marine & Freshwater Research 46: 1171-1180. Jepsen, N., Koed, A., Thorstad, E.B. & Baras, E. 2002. Surgical implantation of telemetry transmitters in fish: how much have we learned? Hydrobiologia 483: 239-248. Gervai, J., Pater, S., Nagy, A., Horvath, L. & Csenyi, V. 1980. Induced triploidy in carp, Cyprinus carpio L. Journal of Fish Biology 17: 667-671. Hartney, K.B. 1996. Site fidelity and homing of some kelp-bed fishes. Journal of Fish Biology 49: 1062-1069. Cohen, A.N. & Carlton, J.T. 1998. Accelerating invasion rate in a highly invaded estuary. Science 279: 555-558. Crook, D.A. 2004. Is the home range concept compatible with the movements of two species of lowland river fish? Journal of Animal Ecology 73: 353-366. Driver, P.D., Harris, J.H., Closs, G.P. & Koen, T.B. 2005b. Effects of flow regulation on carp (Cyprinus carpio L.) recruitment in the Murray-Darling Basin, Australia. River Research and Applications 21: 327-335. Mesing, C.L. & Wicker, A.M. 1986. Home Range, spawning migrations, and homing of radio-tagged Florida largemouth bass in two central Florida lakes. Transactions of the American Fisheries Society 115: 286-294. Reynolds, L.F. 1983. Migration patterns of five fish species in the Murray-Darling River system. Marine & Freshwater Research 34: 857-871. Ricciardi, A. & Rasmussen, J.B. 1998. Predicting the identity and impact of future biological invaders: a priority for aquatic resource management. Canadian Journal of Fisheries and Aquatic Sciences 55: 1759-1765. Marty, G.D. & Summerfelt, R.C. 1986. Pathways and mechanisms for expulsion of surgically implanted dummy transmitters from channel catfish. Transactions of the American Fisheries Society 115: 577-589. Shields, J.T. 1958. Experimental control of carp reproduction through water drawdowns in Fort Randall reservoir, South Dakota. Transactions of the American Fisheries Society 87: 23-33. Gehrke, P.C., Brown, P., Schiller, C.B., Moffatt, D.B. & Bruce, A.M. 1995. River regulation and fish communities in the Murray-Darling river system, Australia. Regulated Rivers: Research & Management 11: 363-375. Koehn, J.D. 2004. Carp (Cyprinus carpio) as a powerful invader in Australian waterways. Freshwater Biology 49: 882-894. Miller, S.A. & Crowl, T.A. 2006. Effects of common carp (Cyprinus carpio) on macrophytes and invertebrate communities in a shallow lake. Freshwater Biology 51: 85-94. Propst, D.L. & Gido, K.B. 2004. Responses of native and nonnative fishes to natural flow regime mimicry in the San Juan River. Transactions of the American Fisheries Society 133: 922-931. Stuart, I.G. & Jones, M.J. 2006b. Movement of common carp, Cyprinus carpio, in a regulated lowland Australian river: implications for management. Fisheries Management and Ecology 13: 213-219. Schramm, H.L., Jr. & Black, D.J. 1984. Anaesthesia and surgical procedures for implanting radio transmitters into grass carp. The Progressive Fish Culturist 46: 185-190. Gehrke, P.C. & Harris, J.H. 2001. Regional-scale effects of flow regulation on lowland riverine fish communities in New South Wales, Australia. Regulated Rivers: Research & Management 17: 369-391. Stuart, I.G. & Jones, M. 2006a. Large, regulated forest floodplain is an ideal recruitment zone for non-native common carp (Cyprinus carpio L.). Marine & Freshwater Research 57: 337-347. Fletcher, A.R., Morison, A.K. & Hume, D.J. 1985. Effects of carp, Cyprinus carpio L., on communities of aquatic vegetation and turbidity of waterbodies in the lower Goulburn River basin. Australian Journal of Marine and Freshwater Research 36: 311-327. Koehn, J., Brumley, A. & Gehrke, P. 2000. Managing the impacts of carp. Canberra: Bureau of Rural Sciences. Loyn, R.H., Lumsden, L.F. & Ward, K.A. 2002. Vertebrate fauna of Barmah forest, a large forest of river red gum Eucalyptus camaldulensis on the floodplain of the Murray River. The Victorian Naturalist 119: 230-248. Brown, P., Sivakumaran, K.P., Stoessel, D. & Giles, A. 2005. Population biology of carp (Cyprinus carpio L.) in the mid-Murray River and Barmah forest Wetlands, Australia. Marine & Freshwater Research 56: 1151-1164. McDowall, R.M. 1996. Freshwater fishes of south-eastern Australia. Chatswood, NSW: Reed Books. Ross, L.G. & Ross, B. 1999. Anaesthetic and sedative techniques for aquatic animals. Melbourne: Blackwell Science Pty Ltd. Lever, C. 1996. Naturalized fishes of the world. London: Academic Press. Walker, K.F. 1985. A review of the ecological effects of river regulation in Australia. Hydrobiologia 125: 111-129. Stuart, I.G., Williams, A., McKenzie, J. & Holt, T. 2006. Managing a migratory pest species: a selective trap for common carp. North American Journal of Fisheries Management 26: 888-893. Chong, J. & Ladson, A.R. 2003. Analysis and management of unseasonal flooding in the Barmah-Millewa forest, Australia. River Research and Applications 19: 161-180. Stuart, I.G. & Jones, M.J. 2002. Ecology and management of common carp in the Barmah-Millewa forest. Melbourne: Arthur Rylah Institute for Environmental Research, pp. 214. 2004; 64 1986; 115 2006; 51 2004; 49 1997; 48 1995; 11 1984; 46 1996 1985; 125 1998; 279 2003; 19 2002; 119 1991 2002 1999; 6 2006a; 57 2007; 16 1999 1983; 34 1980; 17 2004; 133 2006b; 13 2004; 73 1987; 87 2002; 483 2000 1995; 46 1997; 342 2005a; 163 2006; 26 2003; 68 2005b; 21 1958; 87 1988; 23 1978; 29 2001; 17 1996; 49 2005; 56 1998; 55 2005; 12 1985; 36 1992; 41 Schwarz F.J. (e_1_2_6_38_1) 1987; 87 Stuart I.G. (e_1_2_6_43_1) 2002 e_1_2_6_32_1 e_1_2_6_10_1 e_1_2_6_31_1 e_1_2_6_30_1 e_1_2_6_19_1 Loyn R.H. (e_1_2_6_24_1) 2002; 119 Baras E. (e_1_2_6_2_1) 1996 e_1_2_6_13_1 e_1_2_6_14_1 e_1_2_6_35_1 e_1_2_6_11_1 e_1_2_6_34_1 e_1_2_6_12_1 e_1_2_6_33_1 e_1_2_6_17_1 e_1_2_6_18_1 e_1_2_6_39_1 e_1_2_6_15_1 e_1_2_6_16_1 e_1_2_6_37_1 e_1_2_6_42_1 e_1_2_6_21_1 e_1_2_6_20_1 e_1_2_6_41_1 e_1_2_6_40_1 e_1_2_6_9_1 e_1_2_6_8_1 Ross L.G. (e_1_2_6_36_1) 1999 Stuart I.G. (e_1_2_6_44_1) 2006; 57 e_1_2_6_5_1 Lever C. (e_1_2_6_23_1) 1996 e_1_2_6_4_1 e_1_2_6_7_1 Koehn J. (e_1_2_6_22_1) 2000 e_1_2_6_6_1 McDowall R.M. (e_1_2_6_28_1) 1996 e_1_2_6_48_1 e_1_2_6_3_1 e_1_2_6_29_1 e_1_2_6_45_1 Mallen‐Cooper M. (e_1_2_6_25_1) 1999 e_1_2_6_27_1 e_1_2_6_46_1 e_1_2_6_26_1 e_1_2_6_47_1 |
References_xml | – volume: 342 start-page: 311 year: 1997 end-page: 318 article-title: Pike ( L.) stocking as a biomanipulation tool 1. Effects on the fish population in Lake Lyng, Denmark publication-title: Hydrobiologia – volume: 115 start-page: 577 year: 1986 end-page: 589 article-title: Pathways and mechanisms for expulsion of surgically implanted dummy transmitters from channel catfish publication-title: Transactions of the American Fisheries Society – volume: 279 start-page: 555 year: 1998 end-page: 558 article-title: Accelerating invasion rate in a highly invaded estuary publication-title: Science – volume: 13 start-page: 213 year: 2006b end-page: 219 article-title: Movement of common carp, , in a regulated lowland Australian river: implications for management publication-title: Fisheries Management and Ecology – volume: 73 start-page: 353 year: 2004 end-page: 366 article-title: Is the home range concept compatible with the movements of two species of lowland river fish? publication-title: Journal of Animal Ecology – volume: 51 start-page: 85 year: 2006 end-page: 94 article-title: Effects of common carp ( ) on macrophytes and invertebrate communities in a shallow lake publication-title: Freshwater Biology – volume: 133 start-page: 922 year: 2004 end-page: 931 article-title: Responses of native and nonnative fishes to natural flow regime mimicry in the San Juan River publication-title: Transactions of the American Fisheries Society – volume: 49 start-page: 1062 year: 1996 end-page: 1069 article-title: Site fidelity and homing of some kelp‐bed fishes publication-title: Journal of Fish Biology – volume: 34 start-page: 857 year: 1983 end-page: 871 article-title: Migration patterns of five fish species in the Murray‐Darling River system publication-title: Marine & Freshwater Research – volume: 16 start-page: 210 year: 2007 end-page: 220 article-title: Movements and habitat use of common carp ( ) and Murray cod ( ) juveniles in a large lowland Australian river publication-title: Ecology of Freshwater Fish – volume: 26 start-page: 888 year: 2006 end-page: 893 article-title: Managing a migratory pest species: a selective trap for common carp publication-title: North American Journal of Fisheries Management – volume: 19 start-page: 161 year: 2003 end-page: 180 article-title: Analysis and management of unseasonal flooding in the Barmah‐Millewa forest, Australia publication-title: River Research and Applications – volume: 41 start-page: 545 year: 1992 end-page: 556 article-title: Spawning period and migration of three species of cyprinids in a stream with Mediterranean regimen (SW Spain) publication-title: Journal of Fish Biology – volume: 6 start-page: 515 year: 1999 end-page: 526 article-title: Winter residency and activity patterns of channel catfish, (Rafinesques), and common carp, L., in a thermal discharge canal publication-title: Fisheries Management and Ecology – volume: 21 start-page: 327 year: 2005b end-page: 335 article-title: Effects of flow regulation on carp ( L.) recruitment in the Murray–Darling Basin, Australia publication-title: River Research and Applications – volume: 17 start-page: 667 year: 1980 end-page: 671 article-title: Induced triploidy in carp, L publication-title: Journal of Fish Biology – volume: 46 start-page: 1171 year: 1995 end-page: 1180 article-title: Effect of carp, L., an exotic benthivorous fish, on aquatic plants and water quality in experimental ponds publication-title: Marine & Freshwater Research – year: 1996 – year: 2000 – volume: 483 start-page: 239 year: 2002 end-page: 248 article-title: Surgical implantation of telemetry transmitters in fish: how much have we learned? publication-title: Hydrobiologia – volume: 87 start-page: 23 year: 1958 end-page: 33 article-title: Experimental control of carp reproduction through water drawdowns in Fort Randall reservoir, South Dakota publication-title: Transactions of the American Fisheries Society – volume: 48 start-page: 435 year: 1997 end-page: 443 article-title: Experimental manipulations of the biomass of introduced carp ( ) in billabongs. I. Impacts on water‐column properties publication-title: Marine & Freshwater Research – volume: 64 start-page: 336 year: 2004 end-page: 354 article-title: Spawning dynamics of common carp in the River Murray, South Australia, shown by macroscopic and histological staging of gonads publication-title: Journal of Fish Biology – volume: 29 start-page: 551 year: 1978 end-page: 563 article-title: The Introduction and distribution of the carp, Linnaeus, in Australia publication-title: Marine & Freshwater Research – volume: 87 start-page: 15 year: 1987 end-page: 22 article-title: Homing behaviour of tagged and displaced carp, , in Pymatuning Lake, Pennsylvania/Ohio publication-title: The Ohio Journal of Science – start-page: 1 year: 1991 end-page: 33 – volume: 19 start-page: 697 year: 2003 end-page: 719 article-title: Age, growth and non‐flood recruitment of two potamodromous fishes in a large semi‐arid/temperate river system publication-title: River Research and Applications – volume: 23 start-page: 161 year: 1988 end-page: 182 article-title: The nature and role of learning in the orientation and migratory behaviour of fishes publication-title: Environmental Biology of Fishes – volume: 163 start-page: 117 year: 2005a end-page: 131 article-title: The effects of size and density of carp ( L.) on water quality in an experimental pond publication-title: Archiv für Hydrobiologie – volume: 55 start-page: 1759 year: 1998 end-page: 1765 article-title: Predicting the identity and impact of future biological invaders: a priority for aquatic resource management publication-title: Canadian Journal of Fisheries and Aquatic Sciences – year: 2002 – volume: 17 start-page: 369 year: 2001 end-page: 391 article-title: Regional‐scale effects of flow regulation on lowland riverine fish communities in New South Wales, Australia publication-title: Regulated Rivers: Research & Management – volume: 119 start-page: 230 year: 2002 end-page: 248 article-title: Vertebrate fauna of Barmah forest, a large forest of river red gum on the floodplain of the Murray River publication-title: The Victorian Naturalist – volume: 57 start-page: 337 year: 2006a end-page: 347 article-title: Large, regulated forest floodplain is an ideal recruitment zone for non‐native common carp ( L.) publication-title: Marine & Freshwater Research – volume: 56 start-page: 1151 year: 2005 end-page: 1164 article-title: Population biology of carp ( L.) in the mid‐Murray River and Barmah forest Wetlands, Australia publication-title: Marine & Freshwater Research – volume: 11 start-page: 363 year: 1995 end-page: 375 article-title: River regulation and fish communities in the Murray–Darling river system, Australia publication-title: Regulated Rivers: Research & Management – volume: 46 start-page: 185 year: 1984 end-page: 190 article-title: Anaesthesia and surgical procedures for implanting radio transmitters into grass carp publication-title: The Progressive Fish Culturist – volume: 68 start-page: 321 year: 2003 end-page: 332 article-title: Maturation and reproductive biology of female wild carp, , in Victoria, Australia publication-title: Environmental Biology of Fishes – volume: 125 start-page: 111 year: 1985 end-page: 129 article-title: A review of the ecological effects of river regulation in Australia publication-title: Hydrobiologia – volume: 12 start-page: 283 year: 2005 end-page: 286 article-title: Response of bighead carp to a bioacoustic behavioural fish guidance system publication-title: Fisheries Management and Ecology – volume: 115 start-page: 286 year: 1986 end-page: 294 article-title: Home Range, spawning migrations, and homing of radio‐tagged Florida largemouth bass in two central Florida lakes publication-title: Transactions of the American Fisheries Society – volume: 49 start-page: 882 year: 2004 end-page: 894 article-title: Carp ( ) as a powerful invader in Australian waterways publication-title: Freshwater Biology – volume: 36 start-page: 311 year: 1985 end-page: 327 article-title: Effects of carp, L., on communities of aquatic vegetation and turbidity of waterbodies in the lower Goulburn River basin publication-title: Australian Journal of Marine and Freshwater Research – start-page: 173 year: 1999 end-page: 195 – year: 1999 – volume-title: Managing the impacts of carp year: 2000 ident: e_1_2_6_22_1 contributor: fullname: Koehn J. – ident: e_1_2_6_47_1 doi: 10.1111/j.1365-2400.2005.00446.x – ident: e_1_2_6_21_1 doi: 10.1111/j.1365-2427.2004.01232.x – ident: e_1_2_6_40_1 doi: 10.1577/1548-8659(1957)87[23:ECOCRT]2.0.CO;2 – ident: e_1_2_6_31_1 doi: 10.1577/T03-057.1 – volume-title: Anaesthetic and sedative techniques for aquatic animals year: 1999 ident: e_1_2_6_36_1 contributor: fullname: Ross L.G. – ident: e_1_2_6_9_1 doi: 10.1007/BF00004908 – volume-title: Proceedings of the fifth European conference on wildlife telemetry (in press) year: 1996 ident: e_1_2_6_2_1 contributor: fullname: Baras E. – ident: e_1_2_6_16_1 doi: 10.1111/j.1095-8649.1996.tb01778.x – ident: e_1_2_6_48_1 doi: 10.1007/BF00045929 – ident: e_1_2_6_3_1 doi: 10.1023/A:1017032616642 – ident: e_1_2_6_35_1 doi: 10.1111/j.1095-8649.1992.tb02682.x – ident: e_1_2_6_45_1 doi: 10.1111/j.1365-2400.2006.00495.x – ident: e_1_2_6_27_1 doi: 10.1577/1548-8659(1986)115<577:PAMFEO>2.0.CO;2 – ident: e_1_2_6_41_1 doi: 10.1023/A:1027381304091 – ident: e_1_2_6_7_1 doi: 10.1046/j.1365-2400.1999.00175.x – ident: e_1_2_6_19_1 doi: 10.1111/j.1600-0633.2006.00213.x – ident: e_1_2_6_29_1 doi: 10.1577/1548-8659(1986)115<286:HRSMAH>2.0.CO;2 – start-page: 173 volume-title: Innovations in fish passage technology year: 1999 ident: e_1_2_6_25_1 contributor: fullname: Mallen‐Cooper M. – ident: e_1_2_6_42_1 doi: 10.1111/j.0022-1112.2004.00293.x – volume-title: Ecology and management of common carp in the Barmah‐Millewa forest year: 2002 ident: e_1_2_6_43_1 contributor: fullname: Stuart I.G. – ident: e_1_2_6_4_1 doi: 10.1071/MF05023 – ident: e_1_2_6_32_1 doi: 10.1071/MF9830857 – volume: 87 start-page: 15 year: 1987 ident: e_1_2_6_38_1 article-title: Homing behaviour of tagged and displaced carp, Cyprinus carpio, in Pymatuning Lake, Pennsylvania/Ohio publication-title: The Ohio Journal of Science contributor: fullname: Schwarz F.J. – ident: e_1_2_6_12_1 doi: 10.1071/MF9850311 – ident: e_1_2_6_11_1 doi: 10.1002/rra.850 – ident: e_1_2_6_46_1 doi: 10.1577/M05-205.1 – ident: e_1_2_6_26_1 doi: 10.1002/rra.714 – ident: e_1_2_6_18_1 doi: 10.1023/A:1021356302311 – ident: e_1_2_6_37_1 doi: 10.1577/1548-8640(1984)46<185:AASPFI>2.0.CO;2 – volume: 119 start-page: 230 year: 2002 ident: e_1_2_6_24_1 article-title: Vertebrate fauna of Barmah forest, a large forest of river red gum Eucalyptus camaldulensis on the floodplain of the Murray River publication-title: The Victorian Naturalist contributor: fullname: Loyn R.H. – ident: e_1_2_6_5_1 doi: 10.1002/rra.705 – volume-title: Freshwater fishes of south‐eastern Australia year: 1996 ident: e_1_2_6_28_1 contributor: fullname: McDowall R.M. – ident: e_1_2_6_30_1 doi: 10.1111/j.1365-2427.2005.01477.x – ident: e_1_2_6_6_1 doi: 10.1126/science.279.5350.555 – ident: e_1_2_6_10_1 doi: 10.1127/0003-9136/2005/0163-0117 – ident: e_1_2_6_39_1 doi: 10.1071/MF9780551 – ident: e_1_2_6_20_1 doi: 10.1071/MF97031 – ident: e_1_2_6_33_1 doi: 10.1139/f98-066 – volume: 57 start-page: 337 year: 2006 ident: e_1_2_6_44_1 article-title: Large, regulated forest floodplain is an ideal recruitment zone for non‐native common carp (Cyprinus carpio L.) publication-title: Marine & Freshwater Research doi: 10.1071/MF05035 contributor: fullname: Stuart I.G. – ident: e_1_2_6_17_1 doi: 10.1007/978-94-011-3092-9_1 – ident: e_1_2_6_13_1 doi: 10.1002/rrr.648 – ident: e_1_2_6_8_1 doi: 10.1111/j.0021-8790.2004.00802.x – ident: e_1_2_6_34_1 doi: 10.1071/MF9951171 – ident: e_1_2_6_15_1 doi: 10.1111/j.1095-8649.1980.tb02800.x – volume-title: Naturalized fishes of the world year: 1996 ident: e_1_2_6_23_1 contributor: fullname: Lever C. – ident: e_1_2_6_14_1 doi: 10.1002/rrr.3450110310 |
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Snippet | Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate the... – Common carp (Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To investigate... Abstract – Common carp ( Cyprinus carpio L.) are a major freshwater invader and knowledge of their movements is important for planning control efforts. To... Jones MJ, Stuart IG. Lateral movement of common carp (Cyprinus carpio L.) in a large lowland river and floodplain. Ecology of Freshwater Fish 2009: 18: 72-82.... |
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SubjectTerms | Australia Cyprinus carpio Freshwater invasive Murray River radio-telemetry site fidelity |
Title | Lateral movement of common carp (Cyprinus carpio L.) in a large lowland river and floodplain |
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