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环境DNA揭示了亚马逊鱼类多样性方面在应对不同地理、环境和人为影响时的不匹配。

Environmental DNA reveals a mismatch between diversity facets of Amazonian fishes in response to contrasting geographical, environmental and anthropogenic effects.

作者信息

Coutant Opale, Jézéquel Céline, Mokany Karel, Cantera Isabel, Covain Raphaël, Valentini Alice, Dejean Tony, Brosse Sébastien, Murienne Jérôme

机构信息

Laboratoire Evolution et Diversité Biologique (UMR 5174), CNRS, IRD, Université Paul Sabatier, Toulouse, France.

CSIRO, Canberra, Australian Capital Territory, Australia.

出版信息

Glob Chang Biol. 2023 Apr;29(7):1741-1758. doi: 10.1111/gcb.16533. Epub 2022 Nov 27.

Abstract

Freshwater ecosystems are among the most endangered ecosystem in the world. Understanding how human activities affect these ecosystems requires disentangling and quantifying the contribution of the factors driving community assembly. While it has been largely studied in temperate freshwaters, tropical ecosystems remain challenging to study due to the high species richness and the lack of knowledge on species distribution. Here, the use of eDNA-based fish inventories combined to a community-level modelling approach allowed depicting of assembly rules and quantifying the relative contribution of geographic, environmental and anthropic factors to fish assembly. We then used the model predictions to map spatial biodiversity and assess the representativity of sites surveyed in French Guiana within the EU Water Framework Directive (WFD) and highlighted areas that should host unique freshwater fish assemblages. We demonstrated a mismatch between the taxonomic and functional diversity. Taxonomic assemblages between but also within basins were mainly the results of dispersal limitation resulting from basin isolation and natural river barriers. Contrastingly, functional assemblages were ruled by environmental and anthropic factors. The regional mapping of fish diversity indicated that the sites surveyed within the EU WFD had a better representativity of the regional functional diversity than taxonomic diversity. Importantly, we also showed that the assemblages expected to be the most altered by anthropic factors were the most poorly represented in terms of functional diversity in the surveyed sites. The predictions of unique functional and taxonomic assemblages could, therefore, guide the establishment of new survey sites to increase fish diversity representativity and improve this monitoring program.

摘要

淡水生态系统是世界上最濒危的生态系统之一。了解人类活动如何影响这些生态系统需要理清并量化驱动群落组装的各种因素的贡献。虽然这在温带淡水生态系统中已得到大量研究,但由于物种丰富度高以及缺乏物种分布方面的知识,热带生态系统的研究仍然具有挑战性。在这里,基于环境DNA的鱼类清查与群落水平建模方法相结合,能够描绘组装规则,并量化地理、环境和人为因素对鱼类组装的相对贡献。然后,我们利用模型预测来绘制空间生物多样性图谱,并评估法属圭亚那在欧盟水框架指令(WFD)下所调查站点的代表性,同时突出那些应拥有独特淡水鱼类群落的区域。我们证明了分类多样性和功能多样性之间存在不匹配。流域之间以及流域内部的分类群落主要是流域隔离和天然河流屏障导致的扩散限制的结果。相反,功能群落则受环境和人为因素的支配。鱼类多样性的区域图谱表明,在欧盟水框架指令下所调查的站点,区域功能多样性的代表性要优于分类多样性。重要的是,我们还表明,预计受人为因素影响最大的群落,在所调查站点的功能多样性方面代表性最差。因此,对独特功能和分类群落的预测可以指导新调查站点的建立,以提高鱼类多样性的代表性,并改进这一监测计划。

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