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环境测序揭示的底栖原生生物群落随深度的分布模式——从潮下带到深海

Distribution Patterns of Benthic Protist Communities Depending on Depth Revealed by Environmental Sequencing-From the Sublittoral to the Deep Sea.

作者信息

Dünn Manon, Arndt Hartmut

机构信息

Institute of Zoology, Biocenter Cologne, University of Cologne, Zuelpicher Str. 47b, 50674 Cologne, Germany.

出版信息

Microorganisms. 2023 Jun 26;11(7):1664. doi: 10.3390/microorganisms11071664.

Abstract

Protists are key components of the microbial food web in marine pelagic systems because they link algal and bacterial production to higher trophic levels. However, their functioning and bathymetric distribution in benthic deep-sea ecosystems are still only poorly understood. However, biogeographical patterns of communities can be coupled to the functioning of ecosystems and are therefore important to understand ecological and evolutionary processes. In this study, we investigated the diversity and distribution of benthic protist communities from the sublittoral down to the deep seafloor (50-2000 m) around three islands of the Azores in the North Atlantic Ocean. Using amplicon sequencing of the V9 region (18S rDNA) of 21 samples, we found that protist community compositions from different depths were significantly different. Three assemblages were separated along the following depths: 50 m, 150-500 m and 1000-2000 m, which indicate that deep-sea areas surrounding islands might act as isolating barriers for benthic protist species. A limited gene flow between the communities could favor speciation processes, leading to the unique protist communities found at the different investigated islands.

摘要

原生生物是海洋浮游系统中微生物食物网的关键组成部分,因为它们将藻类和细菌的生产与更高的营养级联系起来。然而,它们在深海底栖生态系统中的功能和深度分布仍然知之甚少。然而,群落的生物地理模式可以与生态系统的功能相联系,因此对于理解生态和进化过程很重要。在这项研究中,我们调查了北大西洋亚速尔群岛三个岛屿周围从潮下带到深海海底(50 - 2000米)的底栖原生生物群落的多样性和分布。通过对21个样本的V9区域(18S rDNA)进行扩增子测序,我们发现不同深度的原生生物群落组成存在显著差异。沿着以下深度划分出了三个组合:50米、150 - 500米和1000 - 2000米,这表明岛屿周围的深海区域可能对底栖原生生物物种起到隔离屏障的作用。群落之间有限的基因流动可能有利于物种形成过程,从而导致在不同研究岛屿上发现独特的原生生物群落。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0870/10385078/ce295d64369c/microorganisms-11-01664-g001.jpg

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