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本格拉海流特性塑造了微生物群落的多样性和潜在功能。

Agulhas Current properties shape microbial community diversity and potential functionality.

机构信息

Centre for Microbial Ecology and Genomics (CMEG), Department of Biochemistry, Genetics and Microbiology, Natural Sciences 2, University of Pretoria, Pretoria, 0028, South Africa.

Earth and Biological Sciences Directorate, Pacific Northwest National Laboratories, P.O. Box 999, Richland, WA, USA.

出版信息

Sci Rep. 2018 Jul 12;8(1):10542. doi: 10.1038/s41598-018-28939-0.

Abstract

Understanding the impact of oceanographic features on marine microbial ecosystems remains a major ecological endeavour. Here we assess microbial diversity, community structure and functional capacity along the Agulhas Current system and the Subtropical Front in the South Indian Ocean (SIO). Samples collected from the epipelagic, oxygen minimum and bathypelagic zones were analysed by 16S rRNA gene amplicon and metagenomic sequencing. In contrast to previous studies, we found high taxonomic richness in surface and deep water samples, but generally low richness for OMZ communities. Beta-diversity analysis revealed significant dissimilarity between the three water depths. Most microbial communities were dominated by marine Gammaproteobacteria, with strikingly low levels of picocyanobacteria. Community composition was strongly influenced by specific environmental factors including depth, salinity, and the availability of both oxygen and light. Carbon, nitrogen and sulfur cycling capacity in the SIO was linked to several autotrophic and copiotrophic Alphaproteobacteria and Gammaproteobacteria. Taken together, our data suggest that the environmental conditions in the Agulhas Current system, particularly depth-related parameters, substantially influence microbial community structure. In addition, the capacity for biogeochemical cycling of nitrogen and sulfur is linked primarily to the dominant Gammaproteobacteria taxa, whereas ecologically rare taxa drive carbon cycling.

摘要

理解海洋特征对海洋微生物生态系统的影响仍然是一项主要的生态学工作。在这里,我们评估了南印度洋(SIO)亚速尔群岛流系统和亚热带锋沿线的微生物多样性、群落结构和功能能力。从表生带、缺氧带和深海带采集的样本通过 16S rRNA 基因扩增子和宏基因组测序进行了分析。与以前的研究不同,我们在地表水和深水中发现了高分类丰富度,但在缺氧带中发现的群落丰富度一般较低。β多样性分析显示三个水深之间存在显著的差异。大多数微生物群落由海洋γ变形菌门主导,而蓝细菌的丰度极低。群落组成受到特定环境因素的强烈影响,包括深度、盐度以及氧气和光照的可用性。SIO 中的碳、氮和硫循环能力与几种自养和富营养α变形菌门和γ变形菌门有关。总的来说,我们的数据表明,亚速尔群岛流系统的环境条件,特别是与深度相关的参数,极大地影响了微生物群落结构。此外,氮和硫的生物地球化学循环能力主要与优势γ变形菌门分类群有关,而生态上罕见的分类群则驱动着碳循环。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bb7f/6043601/ca49c94e5ee9/41598_2018_28939_Fig1_HTML.jpg

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