西部瀬戸内海に生息するタチウオ Trichiurus japonicus の食性および炭素源の空間的変化

瀬戸内海西部に生息するタチウオ Trichiurus japonicus の餌資源特性を明らかにするため環境特性の異なる4海域から試料を集め,安定同位体比分析と胃内容分析によって T. japonicus の食性を海域間で比較した。その結果,T. japonicus の食性は海域間で異なっていたが,これは胃内容物の時空間的なばらつきによる影響と考えられた。また,安定同位体比に基づく栄養段階と胃内容から推測される栄養ニッチは一致していなかった。そのため,胃内容物による魚類の食性解析にはより多くの採集努力が必要と考えられた。一方で,胃内容分析では検出できなかった海域間での栄養炭素経路の違いを安定同...

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Published inSuisan Zoshoku Vol. 62; no. 3; pp. 243 - 251
Main Authors 宮崎, 寛史, 赤松, 大雅, 大森, 浩二, 浜岡, 秀樹, 柴田, 淳也, 南口, 哲也
Format Journal Article
LanguageEnglish
Published 日本水産増殖学会 2014
Online AccessGet full text
ISSN0371-4217
2185-0194
DOI10.11233/aquaculturesci.62.243

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Abstract 瀬戸内海西部に生息するタチウオ Trichiurus japonicus の餌資源特性を明らかにするため環境特性の異なる4海域から試料を集め,安定同位体比分析と胃内容分析によって T. japonicus の食性を海域間で比較した。その結果,T. japonicus の食性は海域間で異なっていたが,これは胃内容物の時空間的なばらつきによる影響と考えられた。また,安定同位体比に基づく栄養段階と胃内容から推測される栄養ニッチは一致していなかった。そのため,胃内容物による魚類の食性解析にはより多くの採集努力が必要と考えられた。一方で,胃内容分析では検出できなかった海域間での栄養炭素経路の違いを安定同位体比分析では検出することができた。この結果は西部瀬戸内海における基礎生産構造に関する先行研究と一致しており,安定同位体比分析はより少ない採集努力で魚類の食性を効率的に理解することができる手法であると考えられた。
AbstractList 瀬戸内海西部に生息するタチウオ Trichiurus japonicus の餌資源特性を明らかにするため環境特性の異なる4海域から試料を集め,安定同位体比分析と胃内容分析によって T. japonicus の食性を海域間で比較した。その結果,T. japonicus の食性は海域間で異なっていたが,これは胃内容物の時空間的なばらつきによる影響と考えられた。また,安定同位体比に基づく栄養段階と胃内容から推測される栄養ニッチは一致していなかった。そのため,胃内容物による魚類の食性解析にはより多くの採集努力が必要と考えられた。一方で,胃内容分析では検出できなかった海域間での栄養炭素経路の違いを安定同位体比分析では検出することができた。この結果は西部瀬戸内海における基礎生産構造に関する先行研究と一致しており,安定同位体比分析はより少ない採集努力で魚類の食性を効率的に理解することができる手法であると考えられた。
瀬戸内海西部に生息するタチウオTrichiurus japonicusの餌資源特性を明らかにするため環境特性の異なる4海域から試料を集め,安定同位体比分析と胃内容分析によってT. japonicusの食性を海域間で比較した。その結果,T. japonicusの食性は海域間で異なっていたが,これは胃内容物の時空間的なばらつきによる影響と考えられた。また,安定同位体比に基づく栄養段階と胃内容から推測される栄養ニッチは一致していなかった。そのため,胃内容物による魚類の食性解析にはより多くの採集努力が必要と考えられた。一方で、胃内容分析では検出できなかった海域間での栄養炭素経路の違いを安定同位体比分析では検出することができた。この結果は西部瀬戸内海における基礎生産構造に関する先行研究と一致しており,安定同位体比分析はより少ない採集努力で魚類の食性を効率的に理解することができる手法であると考えられた。
Author 南口, 哲也
宮崎, 寛史
大森, 浩二
赤松, 大雅
柴田, 淳也
浜岡, 秀樹
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References Bligh, E. G. and W. J. Dyer (1959) A rapid method of total lipid extraction and purification. Can. J. Biochem. Physiol., 37, 911-917.
Hobson, K. A. (1999) Tracing origins and migration of wildlife using stable isotopes: a review. Oecologia, 120, 314-326.
Chiou, W. D., C. Y. Chen, C. M. Wang and C. T. Chen (2006) Food and feeding habits of ribbonfish Trichiurus lepturus in coastal waters of south-western Taiwan. Fish. Sci., 72, 373-381.
Vadeboncoeur, Y., M. J. Vander Zanden and D. M. Lodge (2002) Putting the lake back together: Reintegrating benthic pathways into lake food web models. BioScience, 52, 44-54.
Vander Zanden, M. J., G. Cabana and J. B. Rasmussen (1997) Comparing trophic position of freshwater fish calculated using stable nitrogen isotope ratios (δ15N) and literature dietary data. Can. J. Fish. Aquat. Sci., 54, 1142-1158.
Nakamura, I., Y. Pa Chen and Q. Zhu (1984) A study on the feeding habit of hairtail fish and the relationship between its food basis and fishing grounds in the Donghai (East China Sea). J. Fish. China, 8, 135-145.
DeNiro, M. J. and S. Epstein (1978) Influence of diet on the distribution of carbon isotopes in animals. Geochim. Cosmochim. Acta, 42, 495-506.
Park, C. S., D. W. Lee and C. I. Zhang (2001) Population characteristics and biomass estimation of hairtail Trichiurus lepturus Linnaeus in Korean waters. Bull. Fish. Res. Dev. Agency Korea, 59, 1-8.
Yoshida, G., M. Hori, K. Sakiyama, M. Hamaguchi, A. Kajida, K. Nishimura and J. Shoji (2010) Distribution of seaweed bed and tidal flat, and their correlations with fisheries catches in the nine sea areas of the Seto Inland Sea. Fish. Engr., 47, 19-29 (in Japanese with English abstract).
Chakraborty, A., F. Aranishi and Y. Iwatsuki (2007) Poly-merase chain reaction-restriction fragment length poly-morphism analysis for species identification hairtail fish fillets from supermarkets in Japan. Fish. Sci., 73, 197-201.
Doiuchi, R., N. Yasue, T. Takeuchi, M. Yamauchi, Y. Okuyama, T. Suwa, M. Mukaino, T. Kokubo and H. Haya (2011) Comparison of carbon sources for Trichiurus japonicus and other benthic fishes in the Kii Channel, Japan, based on carbon and nitrogen stable isotope ratios. Nippon Suisan Gakkaishi, 77, 205-214 (in Japanese with English abstract).
Persson, L. and A. M. De Roos (2006) Food-dependent individual growth and population dynamics in fishes. J. Fish. Biol., 69, 1-20.
Environment Agency (1994) The Report of the Marine Biotic Environment Survey in the 4th National Survey on the Natural Environment Vol.1 Tidal flats. Nature Conservation Bureau, Environment Agency and Marine Parks Center of Japan, Tokyo, 291 pp (in Japanese).
Hamaoka, H., N. Okuda, T. Fukumoto, H. Miyasaka and K. Omori (2010) Seasonal dynamics of a coastal food web: Stable isotope analysis of a higher consumer. In “Earth, Life, and Isotopes” (ed. by N. Ohkouchi, I. Tayasu and K. Koba), Kyoto University Press, Kyoto, pp. 161-181.
Fry, B. and E. B. Sherr (1984) δ13C measurements as indicators of carbon flow in marine and freshwater ecosystems. Contrib. Mar. Sci., 27, 13-47.
Backiel, T. and D. E. Le Cren (1978) Some density relationships for fish population parameters. In “Ecology of Freshwater Production” (ed. by T. B. Bagenal and S. D. Gerking), Blackwell Scientific Publications, London, pp. 279-302.
Post, D. M. (2002) Using stable isotopes to estimate trophic position: models, methods and assumptions. Ecology, 83, 703-718.
Shibata, J., K. Matsumoto, H. Hamaoka, A. Sogabe, T. Nanko, T. Kunihiro, H. Onishi and K. Omori (2012) Contribution of pelagic and benthic grazing and detritus food chains to the coastal ecosystem of the western Seto Inland Sea: a stable isotope and Bayesian mixing model analysis approach. In “Interdisciplinary Studies on Environmental Chemistry-Environmental Pollution and Ecotoxicology” (ed. by M. Kawaguchi, K. Misaki, H. Sato, T. Yokokawa, T. Itai, T. M. Nguyen, J. Ono and S. Tanabe), TERRAPUB, Tokyo, pp. 427-435.
Rin, N. V. (1993) FAO Species Catalogue Vol. 15, Snake Mackerels and Cutlassfishes of the World (Families Gemphylidae and Trichiuridae). FAO Fisheries Synopsis 125, p.136.
Vander Zanden, M. J. and Y. Vadeboncoeur (2002) Fishes as integrators of benthic and pelagic food webs in lakes. Ecology, 83, 2152-2161.
Sanada, Y., R. Doiuchi, T. Okazaki, Y. Hayashi and S. Masugawa (2011) An investigation into the fisheries resources and fisheries stock management for hairtail Trichiurus japonicus. Bull. Jpn. Soc. Fish. Oceanogr., 75, 244-245 (in Japanese).
Minagawa. M. and E. Wada (1984) Stepwise enrichment of δ15N along food chains: further evidence and the relation between δ15N and animal age. Geochim. Cosmochim. Acta, 48, 1135-1140.
Tanaka, H., A. Takasuka, I. Aoki and S. Ohshimo (2008) Geographical variations in the trophic ecology of Japanese anchovy, Engraulis japonicus, inferred from carbon and nitrogen stable isotope ratios. Mar. Biol., 154, 557-568.
Gannes, L. Z., D. M. O’Brien and C. M. DelRio (1997) Stable isotopes in animal ecology: assumptions, caveats, and a call for more laboratory experiments. Ecology, 78, 1271-1276.
Sakamoto, T. (1982) Study on the fishery biology of ribbon fish, Trichiurus lepturus, in the Kii Channel. Bull. Wakayama Pref. Fish. Exp. Stn., 1, 1-113 (in Japanese).
Beverton, R. J. and S. J. Holt (1957) On the Dynamics of Exploited Fish Populations. Ministry of Agriculture, Fisheries and Food, London, 533 pp.
Munekiyo, M. and A. Kuwahara (1985) Food habitats of ribbon fish in the western Wakasa Bay. Bull. Jpn. Soc. Sci. Fish., 51, 913-919 (in Japanese with English abstract).
Takai, N., A. Yorozu, T. Tanimoto, A. Hoshika and K. Yoshihara (2004) Transport pathways of microphyto-benthos-originating organic carbon in the food web of an exposed hard bottom shore in the Seto Inland Sea, Japan. Mar. Ecol. Prog. Ser., 284, 97-108.
References_xml – reference: Persson, L. and A. M. De Roos (2006) Food-dependent individual growth and population dynamics in fishes. J. Fish. Biol., 69, 1-20.
– reference: Sakamoto, T. (1982) Study on the fishery biology of ribbon fish, Trichiurus lepturus, in the Kii Channel. Bull. Wakayama Pref. Fish. Exp. Stn., 1, 1-113 (in Japanese).
– reference: DeNiro, M. J. and S. Epstein (1978) Influence of diet on the distribution of carbon isotopes in animals. Geochim. Cosmochim. Acta, 42, 495-506.
– reference: Munekiyo, M. and A. Kuwahara (1985) Food habitats of ribbon fish in the western Wakasa Bay. Bull. Jpn. Soc. Sci. Fish., 51, 913-919 (in Japanese with English abstract).
– reference: Rin, N. V. (1993) FAO Species Catalogue Vol. 15, Snake Mackerels and Cutlassfishes of the World (Families Gemphylidae and Trichiuridae). FAO Fisheries Synopsis 125, p.136.
– reference: Vander Zanden, M. J., G. Cabana and J. B. Rasmussen (1997) Comparing trophic position of freshwater fish calculated using stable nitrogen isotope ratios (δ15N) and literature dietary data. Can. J. Fish. Aquat. Sci., 54, 1142-1158.
– reference: Chiou, W. D., C. Y. Chen, C. M. Wang and C. T. Chen (2006) Food and feeding habits of ribbonfish Trichiurus lepturus in coastal waters of south-western Taiwan. Fish. Sci., 72, 373-381.
– reference: Vander Zanden, M. J. and Y. Vadeboncoeur (2002) Fishes as integrators of benthic and pelagic food webs in lakes. Ecology, 83, 2152-2161.
– reference: Minagawa. M. and E. Wada (1984) Stepwise enrichment of δ15N along food chains: further evidence and the relation between δ15N and animal age. Geochim. Cosmochim. Acta, 48, 1135-1140.
– reference: Doiuchi, R., N. Yasue, T. Takeuchi, M. Yamauchi, Y. Okuyama, T. Suwa, M. Mukaino, T. Kokubo and H. Haya (2011) Comparison of carbon sources for Trichiurus japonicus and other benthic fishes in the Kii Channel, Japan, based on carbon and nitrogen stable isotope ratios. Nippon Suisan Gakkaishi, 77, 205-214 (in Japanese with English abstract).
– reference: Environment Agency (1994) The Report of the Marine Biotic Environment Survey in the 4th National Survey on the Natural Environment Vol.1 Tidal flats. Nature Conservation Bureau, Environment Agency and Marine Parks Center of Japan, Tokyo, 291 pp (in Japanese).
– reference: Hobson, K. A. (1999) Tracing origins and migration of wildlife using stable isotopes: a review. Oecologia, 120, 314-326.
– reference: Takai, N., A. Yorozu, T. Tanimoto, A. Hoshika and K. Yoshihara (2004) Transport pathways of microphyto-benthos-originating organic carbon in the food web of an exposed hard bottom shore in the Seto Inland Sea, Japan. Mar. Ecol. Prog. Ser., 284, 97-108.
– reference: Sanada, Y., R. Doiuchi, T. Okazaki, Y. Hayashi and S. Masugawa (2011) An investigation into the fisheries resources and fisheries stock management for hairtail Trichiurus japonicus. Bull. Jpn. Soc. Fish. Oceanogr., 75, 244-245 (in Japanese).
– reference: Post, D. M. (2002) Using stable isotopes to estimate trophic position: models, methods and assumptions. Ecology, 83, 703-718.
– reference: Fry, B. and E. B. Sherr (1984) δ13C measurements as indicators of carbon flow in marine and freshwater ecosystems. Contrib. Mar. Sci., 27, 13-47.
– reference: Gannes, L. Z., D. M. O’Brien and C. M. DelRio (1997) Stable isotopes in animal ecology: assumptions, caveats, and a call for more laboratory experiments. Ecology, 78, 1271-1276.
– reference: Hamaoka, H., N. Okuda, T. Fukumoto, H. Miyasaka and K. Omori (2010) Seasonal dynamics of a coastal food web: Stable isotope analysis of a higher consumer. In “Earth, Life, and Isotopes” (ed. by N. Ohkouchi, I. Tayasu and K. Koba), Kyoto University Press, Kyoto, pp. 161-181.
– reference: Nakamura, I., Y. Pa Chen and Q. Zhu (1984) A study on the feeding habit of hairtail fish and the relationship between its food basis and fishing grounds in the Donghai (East China Sea). J. Fish. China, 8, 135-145.
– reference: Yoshida, G., M. Hori, K. Sakiyama, M. Hamaguchi, A. Kajida, K. Nishimura and J. Shoji (2010) Distribution of seaweed bed and tidal flat, and their correlations with fisheries catches in the nine sea areas of the Seto Inland Sea. Fish. Engr., 47, 19-29 (in Japanese with English abstract).
– reference: Backiel, T. and D. E. Le Cren (1978) Some density relationships for fish population parameters. In “Ecology of Freshwater Production” (ed. by T. B. Bagenal and S. D. Gerking), Blackwell Scientific Publications, London, pp. 279-302.
– reference: Park, C. S., D. W. Lee and C. I. Zhang (2001) Population characteristics and biomass estimation of hairtail Trichiurus lepturus Linnaeus in Korean waters. Bull. Fish. Res. Dev. Agency Korea, 59, 1-8.
– reference: Shibata, J., K. Matsumoto, H. Hamaoka, A. Sogabe, T. Nanko, T. Kunihiro, H. Onishi and K. Omori (2012) Contribution of pelagic and benthic grazing and detritus food chains to the coastal ecosystem of the western Seto Inland Sea: a stable isotope and Bayesian mixing model analysis approach. In “Interdisciplinary Studies on Environmental Chemistry-Environmental Pollution and Ecotoxicology” (ed. by M. Kawaguchi, K. Misaki, H. Sato, T. Yokokawa, T. Itai, T. M. Nguyen, J. Ono and S. Tanabe), TERRAPUB, Tokyo, pp. 427-435.
– reference: Beverton, R. J. and S. J. Holt (1957) On the Dynamics of Exploited Fish Populations. Ministry of Agriculture, Fisheries and Food, London, 533 pp.
– reference: Bligh, E. G. and W. J. Dyer (1959) A rapid method of total lipid extraction and purification. Can. J. Biochem. Physiol., 37, 911-917.
– reference: Vadeboncoeur, Y., M. J. Vander Zanden and D. M. Lodge (2002) Putting the lake back together: Reintegrating benthic pathways into lake food web models. BioScience, 52, 44-54.
– reference: Chakraborty, A., F. Aranishi and Y. Iwatsuki (2007) Poly-merase chain reaction-restriction fragment length poly-morphism analysis for species identification hairtail fish fillets from supermarkets in Japan. Fish. Sci., 73, 197-201.
– reference: Tanaka, H., A. Takasuka, I. Aoki and S. Ohshimo (2008) Geographical variations in the trophic ecology of Japanese anchovy, Engraulis japonicus, inferred from carbon and nitrogen stable isotope ratios. Mar. Biol., 154, 557-568.
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瀬戸内海西部に生息するタチウオTrichiurus japonicusの餌資源特性を明らかにするため環境特性の異なる4海域から試料を集め,安定同位体比分析と胃内容分析によってT....
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