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基于碳氮稳定同位素技术的赤水河鱼类群落营养结构研究

Zi-Xin WANGHong WangHe LuMeng-Fei ZHAODong-Sheng LINHuanzhang LiuFei Liu

2025Acta Hydrobiologica SinicaEnvironmental Science被引 3开放获取

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摘要

This study aimed to analyse the temporal and spatial variations in the trophic structures of fish assemblages in the Chishui River, the last undammed tributary of the upper Yangtze River. Fish samples were collected from different sections (the headwater, the upstream, the midstream, and the downstream) along the longitudinal gradient during the flood season (June) and dry season (December) of 2023. Stable carbon and nitrogen isotope values (δ<sup>13</sup>C and δ<sup>15</sup>N) were measured for 2016 fish specimens, belonging to 3 orders, 13 families and 83 species. Temporal and spatial variations were analyzed by using MixSIAR and SIBER. Results showed that the δ<sup>13</sup>C values of fish species ranged from –29.36‰ to –15.81‰, while δ<sup>15</sup>N values ranged from 6.27‰ to 16.66‰. The δ<sup>13</sup>C and δ<sup>15</sup>N values in the upstream and midstream were significantly higher in the flood season than that in the dry season (<italic>P</italic>&lt;0.05), while those in the downstream showed non-significant seasonal differences. Along the longitudinal gradient, the δ<sup>13</sup>C and δ<sup>15</sup>N values increased gradually first and then decreased in the downstream, with the maximum values occurring in the midstream. Trophic levels of fish assemblages ranged from 1.21 to 4.46, with average trophic levels significantly higher in the flood season than those in the dry season (<italic>P</italic>&lt;0.05). Fish assemblages in the midstream exhibited significantly higher average trophic levels than those in other sections (<italic>P</italic>&lt;0.05). The analysis of trophic structure indicators revealed significant temporal and spatial differences in fish assemblages. Temporally, for most sections (except for the downstream), higher Nitrogen Range (NR), Total Area (TA), Mean Nearest Neighbor Distance (MNND), and Standard Deviation of Nearest Neighbor Distance (SDNND) were observed in the flood season, suggesting greater trophic niche differentiation and m

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Zi-Xin WANG, Hong Wang, He Lu, 等. 基于碳氮稳定同位素技术的赤水河鱼类群落营养结构研究[J]. Acta Hydrobiologica Sinica, 2025.

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DOI:https://doi.org/10.3724/1000-3207.2025.2024.0493

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