Spatiotemporal Variations in Trophic Diversity of Fish Communities in a Marine Bay Ecosystem Based on Stable Isotope Analysis

Fishes Pub Date : 2024-07-04 DOI:10.3390/fishes9070262
Pengcheng Li, Wan Chen, Kun Wang, Binduo Xu, Chongliang Zhang, Yu-peng Ji, Yiping Ren, Ying Xue
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Abstract

Climate change has led to significant fluctuations in marine ecosystems. As a component of the food web, the trophic diversity and spatiotemporal changes of fish communities are crucial for understanding ecosystems. In recent years, stable isotope analysis has been increasingly used as a comprehensive tool for quantitative assessment of trophic diversity to explore spatiotemporal variations in fish community diversity. This study is based on carbon (δ13C) and nitrogen (δ15N) stable isotope analysis using different biomass-weighted isotope diversity indices, including isotopic divergence index (IDiv), isotopic dispersion index (IDis), isotopic evenness index (IEve), and isotopic uniqueness index (IUni). The overall results indicate that IDis, IEve, and IUni values of fish communities were relatively low, while IDiv was relatively high in the Haizhou Bay ecosystem. IDiv, IDis, IEve, and IUni were lower in autumn than in spring; IDiv and IDis were relatively higher in offshore waters, while IEve and IUni were relatively higher in inshore waters. The changes in species composition and intensive pelagic–benthic coupling in Haizhou Bay may lead to significant spatiotemporal variations in the trophic diversity of fish communities in the area. These findings highlight the importance of incorporating trophic relationships into ecosystem models, which will help to enhance our understanding of the complexity of the trophic structure of fish communities.
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基于稳定同位素分析的海湾生态系统鱼类群落营养多样性的时空变化
气候变化已导致海洋生态系统发生重大波动。作为食物网的一个组成部分,鱼类群落的营养多样性和时空变化对于了解生态系统至关重要。近年来,稳定同位素分析作为一种营养多样性定量评估的综合工具,越来越多地被用于探索鱼类群落多样性的时空变化。本研究基于碳(δ13C)和氮(δ15N)稳定同位素分析,采用不同的生物量加权同位素多样性指数,包括同位素分异指数(IDiv)、同位素离散指数(IDis)、同位素均匀度指数(IEve)和同位素独特性指数(IUni)。总体结果表明,在海州湾生态系统中,鱼类群落的 IDis、IEve 和 IUni 值相对较低,而 IDiv 值相对较高。秋季的 IDiv、IDis、IEve 和 IUni 均低于春季;近海水域的 IDiv 和 IDis 相对较高,而近岸水域的 IEve 和 IUni 相对较高。海州湾鱼类物种组成的变化和中上层与底栖生物的密集耦合可能导致该区域鱼类群落营养多样性的显著时空变化。这些发现强调了将营养关系纳入生态系统模型的重要性,这将有助于加深我们对鱼类群落营养结构复杂性的理解。
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