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小巨人的声音:环境 DNA 生物指示物中的有壳变形目黏菌,从分类学自由到单倍型水平。

The voice of the little giants: Arcellinida testate amoebae in environmental DNA-based bioindication, from taxonomy free to haplotypic level.

机构信息

Real Jardín Botánico (RJB-CSIC), Madrid, Spain.

Institut de Biologia Evolutiva (CSIC-Universitat Pompeu Fabra), Barcelona, Spain.

出版信息

Mol Ecol Resour. 2024 Oct;24(7):e13999. doi: 10.1111/1755-0998.13999. Epub 2024 Jul 23.

DOI:10.1111/1755-0998.13999
PMID:39044539
Abstract

Bioindication, evaluating biological responses to environmental disturbances, is crucial for assessing the ecological status of an ecosystem. While historical bioindication relied on macroscopic organisms, the introduction of environmental DNA (eDNA) techniques allows the application of protists without the necessity of morphological identification. In this study, we propose a novel bioindication methodology utilizing Arcellinida, a group of top predators among protists, as bioindicators of freshwater ecosystems. For that purpose, we first characterized the Arcellinida diversity over 1 year at three different points of Lake Sanabria, an ancient glacier lake known to be subjected to anthropogenic disturbances. We compared this diversity with an undisturbed control site. Second, we characterized the Arcellinida diversity in other ecosystems to generate the ecological background to test the connectivity between them. Results indicate limited connectivity between the different ecosystems and an edge effect between terrestrial and aquatic ecosystems. Disturbed freshwater ecosystems exhibited reduced Arcellinida diversity at both specific and infraspecific levels, providing valuable insight into recent disturbances. Arcellinida-based bioindication provides a sensitive, accurate and easy-to-interpret protocol for monitoring disturbances in freshwater ecosystems. It represents a valuable tool for environmental assessments and conservation strategies.

摘要

生物指示,评估生物对环境干扰的反应,对于评估生态系统的生态状况至关重要。虽然传统的生物指示依赖于宏观生物体,但环境 DNA(eDNA)技术的引入允许在无需形态识别的情况下应用原生动物。在这项研究中,我们提出了一种利用原生动物中的顶级捕食者——有孔虫类作为淡水生态系统生物指示物的新生物指示方法。为此,我们首先在三个不同的地点对 Sanabria 湖进行了为期一年的有孔虫多样性特征描述,该湖是一个已知受到人为干扰的古老冰川湖。我们将这种多样性与未受干扰的对照点进行了比较。其次,我们对其他生态系统中的有孔虫多样性进行了特征描述,以生成生态背景来测试它们之间的连通性。结果表明,不同生态系统之间的连通性有限,并且陆地和水生生态系统之间存在边缘效应。受干扰的淡水生态系统在特定和种以下水平的有孔虫多样性减少,为最近的干扰提供了有价值的见解。基于有孔虫的生物指示为监测淡水生态系统的干扰提供了一种敏感、准确且易于解释的协议。它是环境评估和保护策略的有力工具。

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