Prokaryotic Community Structure, Abundances, and Potential Ecological Functions in a Mars Analog Salt Lake

克雷纳恰奥塔 生态学 古细菌 厚壁菌 极端微生物 蛋白质细菌 生物地球化学循环 放线菌门 群落结构 微生物种群生物学 生物 环境科学 微生物 细菌 古生物学 16S核糖体RNA
作者
Weiping Cai,Ke Yu,Wenhan Yang,Rong Mu,Chun-Ang Lian,Luhua Xie,Yan Yan,Shibin Liao,Fan Wang
出处
期刊:Astrobiology [Mary Ann Liebert, Inc.]
卷期号:23 (5): 550-562
标识
DOI:10.1089/ast.2022.0091
摘要

Barkol Lake, situated northeast of the Tianshan Mountains, Xinjiang, is a hypersaline lake with abundant sulfate and chloride minerals, which can be a potential analog for microbial saline paleolakes on Mars. The lake water, sediments, and surrounding soils of Barkol Lake were sampled for geochemical analysis and 16S rRNA gene sequencing to investigate the prokaryotic community structure, abundances, interactions, and ecological functions. Results show that (1) prokaryotic community structure differs significantly between biotopes (water, sediment, and soil), with the highest abundances of archaea occurring in water samples and highest prokaryotic diversities in soil samples; (2) archaeal communities are dominated by Halobacterota, Nanoarchaeota, Thermoplasmatota, and Crenarchaeota, while bacterial communities are mainly Proteobacteria, Bacteroidetes, Actinobacteria, Desulfobacterota, Chloroflexi, Gemmatimonadetes, Firmicutes, and Cyanobacteria; (3) the prokaryotic community network for soil is far more complicated and stable than those for water and sediment; (4) soil prokaryotic communities could be significantly affected by environmental factors such as salinity, pH, total sulfur, and Ca2+; (5) archaeal communities may play an important role in the nitrogen cycle, while bacterial communities may mainly participate in the sulfur cycle. This study extends the data set of prokaryotic communities for hypersaline environments, which will provide perspectives into identification of the counterparts and help to understand potential microbial interactions and biogeochemical cycles occurring on Mars.

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