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南海中尺度气旋涡扰动中细菌群落的系统发育多样性。

Phylogenetic diversity of bacterial communities in South China Sea mesoscale cyclonic eddy perturbations.

机构信息

State Key Laboratory of Marine Environmental Sciences, Xiamen University, Xiamen 361005, China.

出版信息

Res Microbiol. 2011 Apr;162(3):320-9. doi: 10.1016/j.resmic.2010.12.006. Epub 2010 Dec 25.

Abstract

Eddy pumping drives a set of biogeochemical processes by lifting deep waters into the euphotic zone. To address the potential effect of such physical processes upon the bacterial community, phylogenetic diversity was determined in two cold-core cyclonic eddies in the South China Sea. 16S rDNA terminal restriction fragment length polymorphism analysis of the microbial communities through the whole water column showed a wider depth range for the intermediate transition water mass at sites inside the eddies than for those outside. This water mass contained a relatively more complex community than the euphotic and deep-water zones. Stratification of prokaryotic populations between the surface and chlorophyll maximum layer of eddy-related sites versus homogeneity of communities in the euphotic zone of the reference site, revealed by statistical analysis of 16S rDNA libraries, is most likely a reflection of isopycnal displacement induced by differing water movement inside and outside eddies. Phylogenetic analysis revealed that eddy center sites were characterized by deep-water group Alteromonadales-affiliated clones, the psychrophilic genus Octadecabacter cluster and the nitrogen-fixing phototrophic Rhodospirillaceae cluster, while Paracoccus, an important functional group, abundantly existed at the reference site outside eddies. Our analysis revealed that bacterial community structure was significantly influenced by cyclonic eddy perturbations.

摘要

流涡提升深层海水进入透光带,驱动了一系列生物地球化学过程。为了研究这些物理过程对细菌群落可能产生的影响,我们对南海两个冷核气旋式流涡中的细菌群落进行了研究。通过对整个水柱中的微生物群落进行 16S rDNA 末端限制性片段长度多态性分析,发现流涡内部的中间过渡水团的深度范围比流涡外部的更广。该水团的微生物群落比透光带和深水层更为复杂。通过对 16S rDNA 文库的统计分析,揭示了与流涡相关的站点的细菌种群在表层和叶绿素最大值层之间的分层,与参考站点透光带中群落的均一性形成对比,这很可能是由流涡内外不同的水动力引起的等密度面位移的反映。系统发育分析表明,流涡中心的优势类群为深海交替单胞菌目(Alteromonadales)相关克隆、嗜冷菌属(Octadecabacter)集群和固氮光养型红螺菌科(Rhodospirillaceae)集群,而副球菌(Paracoccus)作为一个重要的功能类群,在流涡外部的参考站点大量存在。我们的分析表明,细菌群落结构受到气旋式流涡扰动的显著影响。

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