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Distinct Habitats Select Particular Bacterial Communities in Mangrove Sediments

机译:不同的生境选择红树林沉积物中的特定细菌群落

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摘要

We investigated the relationship among environmental variables, composition, and structure of bacterial communities in different habitats in a mangrove located nearby to an oil exploitation area, aiming to retrieve the natural pattern of bacterial communities in this ecosystem. The T-RFLP analysis showed a high diversity of bacterial populations and an increase in the bacterial richness from habitats closer to the sea and without vegetation (S1) to habitats covered by Avicennia schaueriana (S2) and Rhizophora mangle (S3). Environmental variables in S1 and S2 were more similar than in S3; however, when comparing the bacterial compositions, S2 and S3 shared more OTUs between them, suggesting that the presence of vegetation is an important factor in shaping these bacterial communities. In silico analyses of the fragments revealed a high diversity of the class Gammaproteobacteria in the 3 sites, although in general they presented quite different bacterial composition, which is probably shaped by the specificities of each habitat. This study shows that microhabitats inside of a mangrove ecosystem harbor diverse and distinct microbiota, reinforcing the need to conserve these ecosystems as a whole.
机译:我们调查了位于石油开采区附近的红树林不同生境中环境变量,细菌群落结构和结构之间的关系,旨在检索该生态系统中细菌群落的自然模式。 T-RFLP分析显示,细菌种群高度多样性,从更靠近海洋且没有植被的生境(S1)到Avicennia schaueriana(S2)和Rhizophora mangle(S3)覆盖的生境,细菌丰富度增加。 S1和S2中的环境变量比S3中的相似。但是,当比较细菌组成时,S2和S3在它们之间共享更多的OTU,这表明植被的存在是塑造这些细菌群落的重要因素。在碎片的计算机分析中,发现这3个位点的丙种变形杆菌属具有高度多样性,尽管总的来说,它们呈现出截然不同的细菌组成,这可能取决于每个栖息地的特异性。这项研究表明,红树林生态系统内部的微生境具有各种不同的微生物群,从而增强了整体上保护这些生态系统的必要性。

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