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Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China

Due to the heterogeneous distribution of resources along large rivers, understanding prey utilization by basin‐scale fish assemblages remains a challenge, and thus, recognizing regional fish trophic guilds and indicator species is important. We analyzed the stomach contents of 96 fish species along...

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Autores principales: Wang, Sai, Wang, Tuan‐Tuan, Tang, Jin‐Peng, Wang, Lin, Yang, Yang, Lin, Hsing‐Juh, Chang, Hao‐Yen, Zhou, Xing‐An, Li, Xing, Wang, Ming
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6303697/
https://www.ncbi.nlm.nih.gov/pubmed/30598749
http://dx.doi.org/10.1002/ece3.4577
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author Wang, Sai
Wang, Tuan‐Tuan
Tang, Jin‐Peng
Wang, Lin
Yang, Yang
Lin, Hsing‐Juh
Chang, Hao‐Yen
Zhou, Xing‐An
Li, Xing
Wang, Ming
author_facet Wang, Sai
Wang, Tuan‐Tuan
Tang, Jin‐Peng
Wang, Lin
Yang, Yang
Lin, Hsing‐Juh
Chang, Hao‐Yen
Zhou, Xing‐An
Li, Xing
Wang, Ming
author_sort Wang, Sai
collection PubMed
description Due to the heterogeneous distribution of resources along large rivers, understanding prey utilization by basin‐scale fish assemblages remains a challenge, and thus, recognizing regional fish trophic guilds and indicator species is important. We analyzed the stomach contents of 96 fish species along the subtropical East River in China and identified 8 prey items (29 subcategories). Site‐specific differences in fish diet composition (DC) revealed longitudinal shifts in utilized prey taxa, from upstream lotic to downstream semi‐lentic items, and these were characterized by a decrease in the proportions of epilithic diatoms and aquatic insect larvae (Ephemeroptera and Chironomidae) accompanied by an increase in bivalves (Corbicula and Limnoperna), shrimps and fishes, and organic sediments. The relative prey consumption weighted by fish abundance and biomass indicated that decreasing insect consumption and increasing detritus consumption were two fundamental vectors governing fish‐centered feeding pathways. Seventeen prey‐oriented fish guilds that were clustered based on DC matrix determined the spatial variation in the fish trophic structure. The cumulative presence of (a) upstream guilds reliant on insects and epiphytes, (b) midstream guilds reliant on hydrophytes, molluscs, and nekton, and (c) downstream guilds reliant on detritus, annelids, and plankton resulted in a longitudinal increase in guild richness, but this continuity was interrupted near the industrialized estuary. The most abundant 28 fish species across the guilds were selected as trophic indicator species; their spatial distribution significantly (p < 0.05) explained >80% of the environmental and prey variables identified. These species signified the availability of predator–prey links in distinct habitats and the key environmental factors supporting these links. With a high contribution (>51%) of exotic species, an increase in detritivores downstream distinguishes the subtropical East River from temperate rivers. Particularly, in the disturbed lower reaches, the dominance of detritivores prevailed over the predicted increase in other feeding groups (e.g., omnivores and carnivores).
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spelling pubmed-63036972018-12-31 Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China Wang, Sai Wang, Tuan‐Tuan Tang, Jin‐Peng Wang, Lin Yang, Yang Lin, Hsing‐Juh Chang, Hao‐Yen Zhou, Xing‐An Li, Xing Wang, Ming Ecol Evol Original Research Due to the heterogeneous distribution of resources along large rivers, understanding prey utilization by basin‐scale fish assemblages remains a challenge, and thus, recognizing regional fish trophic guilds and indicator species is important. We analyzed the stomach contents of 96 fish species along the subtropical East River in China and identified 8 prey items (29 subcategories). Site‐specific differences in fish diet composition (DC) revealed longitudinal shifts in utilized prey taxa, from upstream lotic to downstream semi‐lentic items, and these were characterized by a decrease in the proportions of epilithic diatoms and aquatic insect larvae (Ephemeroptera and Chironomidae) accompanied by an increase in bivalves (Corbicula and Limnoperna), shrimps and fishes, and organic sediments. The relative prey consumption weighted by fish abundance and biomass indicated that decreasing insect consumption and increasing detritus consumption were two fundamental vectors governing fish‐centered feeding pathways. Seventeen prey‐oriented fish guilds that were clustered based on DC matrix determined the spatial variation in the fish trophic structure. The cumulative presence of (a) upstream guilds reliant on insects and epiphytes, (b) midstream guilds reliant on hydrophytes, molluscs, and nekton, and (c) downstream guilds reliant on detritus, annelids, and plankton resulted in a longitudinal increase in guild richness, but this continuity was interrupted near the industrialized estuary. The most abundant 28 fish species across the guilds were selected as trophic indicator species; their spatial distribution significantly (p < 0.05) explained >80% of the environmental and prey variables identified. These species signified the availability of predator–prey links in distinct habitats and the key environmental factors supporting these links. With a high contribution (>51%) of exotic species, an increase in detritivores downstream distinguishes the subtropical East River from temperate rivers. Particularly, in the disturbed lower reaches, the dominance of detritivores prevailed over the predicted increase in other feeding groups (e.g., omnivores and carnivores). John Wiley and Sons Inc. 2018-11-26 /pmc/articles/PMC6303697/ /pubmed/30598749 http://dx.doi.org/10.1002/ece3.4577 Text en © 2018 The Authors. Ecology and Evolution published by John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Original Research
Wang, Sai
Wang, Tuan‐Tuan
Tang, Jin‐Peng
Wang, Lin
Yang, Yang
Lin, Hsing‐Juh
Chang, Hao‐Yen
Zhou, Xing‐An
Li, Xing
Wang, Ming
Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title_full Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title_fullStr Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title_full_unstemmed Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title_short Longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, China
title_sort longitudinal variation in fish prey utilization, trophic guilds, and indicator species along a large subtropical river, china
topic Original Research
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6303697/
https://www.ncbi.nlm.nih.gov/pubmed/30598749
http://dx.doi.org/10.1002/ece3.4577
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