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隐藏在欧洲淡水系统中的寄生虫多样性。

Hidden parasite diversity in a European freshwater system.

机构信息

Department of Aquatic Ecology, University of Duisburg-Essen, 45141, Essen, Germany.

Department of Biology, Aquatic Biology, Aarhus University, 8000, Aarhus C, Denmark.

出版信息

Sci Rep. 2020 Feb 14;10(1):2694. doi: 10.1038/s41598-020-59548-5.

Abstract

Parasites comprise a huge part of the biodiversity on earth. However, on a local scale, not much is known about their diversity and community structure. Here, we assess the diversity of larval trematode communities in an interconnected freshwater system of the River Ruhr in Germany and analyse how the parasites are spatially and temporally distributed in the ecosystem. A total of 5347 snail hosts belonging to six species revealed a highly diverse parasite fauna with 36 trematode species. More abundant snail species harboured more species-rich trematode faunas and communities, with the two dominant snail species, Radix auricularia and Gyraulus albus, accounting for almost 90% of the trematode diversity and harbouring spatially and temporally stable parasite communities. The results highlight the important role of stable keystone host populations for trematode transmission, structure and diversity. This local trematode diversity reveals information on definitive host occurrence and trophic interactions within ecosystems.

摘要

寄生虫构成了地球上生物多样性的重要组成部分。然而,在局部尺度上,对于它们的多样性和群落结构知之甚少。在这里,我们评估了德国鲁尔河(River Ruhr)相互连通的淡水系统中幼虫类吸虫群落的多样性,并分析了寄生虫在生态系统中的空间和时间分布情况。总共 5347 只属于六个物种的蜗牛宿主揭示了高度多样化的寄生虫群,共有 36 种吸虫。更丰富的蜗牛物种拥有更丰富的吸虫动物群和群落,其中两种主要的蜗牛物种,耳萝卜螺和沼萝卜螺,占了近 90%的吸虫多样性,并拥有空间和时间稳定的寄生虫群落。研究结果强调了稳定的关键宿主种群对吸虫传播、结构和多样性的重要作用。这种局部的吸虫多样性揭示了关于生态系统中终末宿主出现和营养相互作用的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/81cb/7021786/2b74b0cb2d2a/41598_2020_59548_Fig1_HTML.jpg

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