分类、功能和系统发育多样性模式揭示了东淮河流域河流鱼类群落形成的不同过程

IF 5.1 Q1 ENVIRONMENTAL SCIENCES
Han Liu , Xiao Qu , Wentong Xia , Yushun Chen
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引用次数: 2

摘要

了解不同环境驱动因素对河流生物群结构和功能的贡献对于生物多样性和环境保护至关重要。然而,对于哪些驱动因素对鱼类多样性的影响最大,尤其是在受到多种人类活动干扰的流域,还没有达成共识。在中国东部淮河流域淮河流域(HRW)、隋河流域(SRW)和沂树泗河流域(YRW)三个流域的84个河流站点,研究了鱼类在α和β维度上的分类、系统发育和功能多样性及其环境驱动因素。结果表明,三个流域的河流在分类和功能α多样性方面没有显著差异。HRW中的河流具有显著较高的系统发育α多样性。对于分类学和系统发育的β多样性,总体β多样性和周转成分在HRW中显著较高。对于功能性β多样性,HRW的总体β多样性显著较低。多元线性回归(MLR)和冗余分析(RDA)表明,局部(如营养物质、溶解氧、河流宽度、透明度)、区域(如湿地)、气候(如温度)和空间变量构成了α和β鱼类多样性。变异划分分析表明,地方和空间变量的纯粹贡献比气候和区域变量的贡献更重要,这表明空间效应和地方环境过滤是驱动这些河流鱼类组合β多样性的主要因素。目前的研究强调了考虑多维多样性和多种环境因素对保护河流鱼类的重要性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Taxonomic, functional, and phylogenetic diversity patterns reveal different processes shaping river fish assemblages in the Eastern Huai River Basin, China

Understanding contributions of different environmental drivers to the structure and function of river biota is critical for biodiversity and environmental conservation. Yet, there is no consensus on which drivers have the greatest impact on fish diversity, especially in watersheds disturbed by multiple human activities. Fish taxonomic, phylogenetic, and functional diversity at both alpha and beta dimensions and their environmental drivers were studied in a total of 84 river sites from three watersheds, Huai River watershed (HRW), Sui River watershed (SRW), and Yishusi River watershed (YRW) in the Eastern Huai River Basin of China. Results showed that rivers in the three watersheds had no significant difference in both taxonomic and functional alpha diversity. Rivers in the HRW had significantly higher phylogenetic alpha diversity. For taxonomic and phylogenetic beta diversity, the overall beta diversity and turnover component were significant higher in the HRW. For functional beta diversity, the overall beta diversity was significantly lower in the HRW. Multiple linear regression (MLR) and redundancy analysis (RDA) showed that local (e.g., nutrients, dissolved oxygen, river width, transparency), regional (e.g., wetland), climate (e.g., temperature), and spatial variables structured alpha and beta fish diversity. Variation partitioning analysis indicated that the pure contributions of local and spatial variables were more important than that of climate and regional variables, which suggested that spatial effects and local environmental filtering were the main factors driving the beta diversity of fish assemblages in these rivers. The current study highlights the importance of considering multidimensional diversity and multiple environmental factors for conserving river fishes.

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