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通过平行标签测序评估卡里亚科盆地氧化还原过渡区和缺氧区细菌多样性的动态变化。

The dynamics of the bacterial diversity in the redox transition and anoxic zones of the Cariaco Basin assessed by parallel tag sequencing.

作者信息

Rodriguez-Mora Maria J, Scranton Mary I, Taylor Gordon T, Chistoserdov Andrei Y

机构信息

Department of Biology, University of Louisiana at Lafayette, Lafayette, LA 70504, USA.

School of Marine and Atmospheric Sciences, Stony Brook University, Stony Brook, NY 11794, USA.

出版信息

FEMS Microbiol Ecol. 2015 Sep;91(9):fiv088. doi: 10.1093/femsec/fiv088. Epub 2015 Jul 23.

Abstract

Massively parallel tag sequencing was applied to describe the bacterial diversity in the redox transition and anoxic zones of the Cariaco Basin. In total, 14 samples from the Cariaco Basin were collected over a period of eight years from two stations. A total of 244 357 unique bacterial V6 amplicons were sequenced. The total number of operational taxonomic units (OTUs) found in this study was 4692, with a range of 511-1491 OTUs per sample. Approximately 95% of the OTUs found in the redox transition zone and anoxic layers of Cariaco are represented by less than 50 amplicons suggesting that only about 5% of the bacterial OTUs are responsible for the bulk of the microbial processes in the basin redox transition and anoxic zones. The same dominant OTUs were observed across all eight years of sampling although periodic fluctuations in their proportion were apparent. No distinctive differences were observed between the bacterial communities from the redox transition and anoxic layers of the Cariaco Basin water column. The largest proportion of amplicons belongs to Gammaproteobacteria represented mostly by sulfide oxidizers, followed by Marine Group A (originally described as SAR406; Gordon and Giovannoni 1996), a group of uncultured bacteria hypothesized to be involved in metal reduction, and sulfate-reducing Deltaproteobacteria. Gammaproteobacteria, Deltaproteobacteria and Marine Group A make up 67-90% of all V6 amplicons sequenced in this study. This strongly suggests that the basin's microbial communities are actively involved in the sulfur-related metabolism and coupling of the sulfur and carbon cycles. According to detrended canonical correspondence analysis, ecological factors such as chemoautotrophy, nitrate and oxidized and reduced sulfur compounds influence the structuring and distribution of the Cariaco microbial communities.

摘要

大规模平行标签测序技术被用于描述卡里亚科盆地氧化还原过渡带和缺氧区的细菌多样性。在八年时间里,从两个站点共采集了14个来自卡里亚科盆地的样本。总共对244357个独特的细菌V6扩增子进行了测序。本研究中发现的可操作分类单元(OTU)总数为4692个,每个样本的OTU数量范围为511 - 1491个。在卡里亚科氧化还原过渡带和缺氧层中发现的OTU中,约95%由少于50个扩增子代表,这表明在盆地氧化还原过渡带和缺氧区,仅约5%的细菌OTU负责大部分微生物过程。在所有八年的采样中都观察到了相同的优势OTU,尽管它们的比例存在周期性波动。在卡里亚科盆地水柱的氧化还原过渡带和缺氧层的细菌群落之间未观察到明显差异。扩增子中最大比例属于主要由硫化物氧化菌代表的γ-变形菌纲,其次是海洋类群A(最初描述为SAR406;Gordon和Giovannoni,1996年),这是一组推测参与金属还原的未培养细菌,以及硫酸盐还原型δ-变形菌纲。γ-变形菌纲、δ-变形菌纲和海洋类群A占本研究中测序的所有V6扩增子的67 - 90%。这有力地表明,该盆地的微生物群落积极参与与硫相关的代谢以及硫和碳循环的耦合。根据去趋势典范对应分析,化学自养、硝酸盐以及氧化态和还原态硫化合物等生态因素影响卡里亚科微生物群落的结构和分布。

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