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利用高密度微阵列和克隆文库分析揭示了西藏不同湖泊中细菌浮游生物的多样性。

Diversity of bacterioplankton in contrasting Tibetan lakes revealed by high-density microarray and clone library analysis.

机构信息

Division of Environmental Science and Engineering, National University of Singapore, Singapore; State Key Laboratory of Marine Environmental Science, Xiamen University, Xiamen, China.

出版信息

FEMS Microbiol Ecol. 2013 Nov;86(2):277-87. doi: 10.1111/1574-6941.12160. Epub 2013 Jul 10.

Abstract

Tibetan lakes represent a unique microbial environment and are a good ecosystem to investigate the microbial diversity of high mountain lakes and their relationship with environmental factors. The diversity and community structure of bacterioplankton in Tibetan lakes was determined using DNA fingerprinting analysis, high-density 16S rRNA gene microarray (PhyloChip) analysis, and extensive clone library analysis of bacterial 16S rRNA genes. A previously unseen high microbial diversity (1732 operational taxonomic units based on PhyloChip data) and numerous novel bacterial 16S rRNA gene sequences were observed. Abundant SAR11-like sequences retrieved from saline Lake Qinghai demonstrated a unique SAR11 phylogenetic sister clade related to the freshwater LD12 clade. Water chemistry (e.g. salinity) and altitude played important roles in the selection of bacterial taxa (both presence and relative abundance) in Tibetan lakes. The ubiquity and uniqueness of bacterial taxa, as well as the correlation between environmental factors and bacterial taxa, was observed to vary gradually with different phylogenetic levels. Our study suggested high microbial cosmopolitanism and high endemicity observed at higher and lower phylogenetic levels, respectively.

摘要

藏区湖泊代表了一种独特的微生物环境,是研究高山湖泊微生物多样性及其与环境因素关系的良好生态系统。本研究采用 DNA 指纹图谱分析、高密度 16S rRNA 基因微阵列(PhyloChip)分析和细菌 16S rRNA 基因广泛克隆文库分析的方法,研究了藏区湖泊中浮游细菌的多样性和群落结构。研究结果显示,藏区湖泊具有前所未知的高微生物多样性(基于 PhyloChip 数据有 1732 个操作分类单元)和大量新型细菌 16S rRNA 基因序列。从咸水青海湖中获得的丰富的 SAR11 样序列,展示了一个与淡水 LD12 分支相关的独特 SAR11 系统发育姐妹分支。水质(如盐度)和海拔高度对藏区湖泊中细菌分类群(存在和相对丰度)的选择起着重要作用。研究结果还表明,细菌分类群的普遍性和独特性以及环境因素与细菌分类群之间的相关性随不同的系统发育水平而逐渐变化。本研究表明,在较高和较低的系统发育水平上分别观察到了高微生物世界性和高特有性。

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