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干旱、天然盐环境中的微生物多样性。

Microbial Diversity in an Arid, Naturally Saline Environment.

机构信息

Institute of Resource Ecology, Helmholtz-Zentrum Dresden-Rossendorf, Bautzner Landstraße 400, 01328, Dresden, Germany.

出版信息

Microb Ecol. 2019 Aug;78(2):494-505. doi: 10.1007/s00248-018-1301-2. Epub 2018 Dec 28.

Abstract

The Arava Valley in is a rock desert within the Great African Rift valley. Soil from this area is covered with a salt crust. Here, we report microbial diversity from arid, naturally saline samples collected near Ein Yahav from the Arava Valley by culture-independent as well as culture-dependent analysis. High-throughput sequencing of the hypervariable region V4 of the 16S rRNA gene revealed that the microbial community consists of halophiles from the domain Bacteria as well as Archaea. Bacterial diversity was mainly represented by the genus Salinimicrobium of the order Flavobacteriales within the phylum Bacteroidetes, from the gammaproteobacterial orders Alteromonadales and Oceanospirillales as well as representatives from the order Bacillales of the phylum Firmicutes. Archaeal diversity was dominated by euryarchaeal Halobacteria from the orders Halobacteriales, Haloferacales, and Natrialbales. But more than 40% of the sequences affiliated with Archaea were assigned to unknown or unclassified archaea. Even if taxonomic resolution of the 16S rRNA gene V4 region for Archaea is limited, this study indicates the need of further and more detailed studies of Archaea. By using culture-dependent analysis, bacteria of the order Bacillales as well as archaea from all three halobacterial orders Halobacteriales, Haloferacales, and Natrialbales including potentially novel species from the genera Halorubrum and Haloparvum were isolated.

摘要

以色列的阿拉瓦谷是大非洲大裂谷中的一个岩石沙漠。该地区的土壤覆盖着一层盐壳。在这里,我们通过非培养和培养依赖的分析,报告了来自以色列阿拉瓦谷的干旱、天然盐样本的微生物多样性。16S rRNA 基因高变区 V4 的高通量测序显示,微生物群落由细菌域的嗜盐菌以及古菌组成。细菌多样性主要由拟杆菌门黄杆菌目 Salinimicrobium 属、γ-变形菌门交替单胞菌目和海洋螺旋菌目以及厚壁菌门芽孢杆菌目代表。古菌多样性主要由盐杆菌目、盐杆菌目和盐球菌目 euryarchaeal Halobacteria 组成。但超过 40%的与古菌相关的序列被归为未知或未分类的古菌。即使 16S rRNA 基因 V4 区对古菌的分类分辨率有限,本研究仍表明需要进一步和更详细地研究古菌。通过使用培养依赖的分析,我们分离到芽孢杆菌目细菌以及来自盐杆菌目、盐杆菌目和盐球菌目的所有三个嗜盐菌目古菌,包括来自 Halorubrum 和 Haloparvum 属的潜在新型物种。

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