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通过下一代测序确定的最深淡水湖贝加尔湖水柱中的细菌群落组成。

Bacterial community composition in the water column of the deepest freshwater Lake Baikal as determined by next-generation sequencing.

作者信息

Kurilkina Maria I, Zakharova Yulia R, Galachyants Yuri P, Petrova Darya P, Bukin Yuri S, Domysheva Valentina M, Blinov Vadim V, Likhoshway Yelena V

机构信息

Limnological Institute, Siberian Branch, Russian Academy of Sciences, Irkutsk, Russia

Limnological Institute, Siberian Branch, Russian Academy of Sciences, Irkutsk, Russia.

出版信息

FEMS Microbiol Ecol. 2016 Jul;92(7). doi: 10.1093/femsec/fiw094. Epub 2016 May 8.

Abstract

The composition of bacterial communities in Lake Baikal in different hydrological periods and at different depths (down to 1515 m) has been analyzed using pyrosequencing of the 16S rRNA gene V3 variable region. Most of the resulting 34 562 reads of the Bacteria domain have clustered into 1693 operational taxonomic units (OTUs) classified with the phyla Proteobacteria, Actinobacteria, Chloroflexi, Bacteroidetes, Firmicutes, Acidobacteria and Cyanobacteria. It has been found that their composition at the family level and relative contributions to bacterial communities distributed over the water column vary depending on hydrological period. The number of OTUs and the parameters of taxonomic richness (ACE, Chao1 indices) and diversity (Shannon and inverse Simpson index) reach the highest values in water layers. The composition of bacterial communities in these layers remains relatively constant, whereas that in surface layers differs between hydrological seasons. The dynamics of physicochemical conditions over the water column and their relative constancy in deep layers are decisive factors in shaping the pattern of bacterial communities in Lake Baikal.

摘要

利用16S rRNA基因V3可变区的焦磷酸测序技术,分析了贝加尔湖不同水文时期及不同深度(直至1515米)的细菌群落组成。细菌域产生的34562条读数中,大部分聚集成了1693个可操作分类单元(OTU),这些OTU被归类为变形菌门、放线菌门、绿弯菌门、拟杆菌门、厚壁菌门、酸杆菌门和蓝细菌门。研究发现,它们在科水平上的组成以及对水柱中分布的细菌群落的相对贡献因水文时期而异。OTU的数量以及分类丰富度参数(ACE、Chao1指数)和多样性参数(香农指数和辛普森倒数指数)在水层中达到最高值。这些水层中细菌群落的组成相对稳定,而表层的细菌群落在不同水文季节有所不同。水柱中物理化学条件的动态变化及其在深层的相对稳定性是塑造贝加尔湖细菌群落模式的决定性因素。

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