Literature DB >> 32816051

Composition and predicted functions of the bacterial community in spouting pool sediments from the El Tatio Geyser field in Chile.

Qian Zhang1, Marco Campos2,3, Giovanni Larama2,3, Jacquelinne J Acuña2,3, Bernardita Valenzuela4, Francisco Solis4, Pedro Zamorano4,5, Rubén Araya6, Michael J Sadowsky1,7, Milko A Jorquera8,9.   

Abstract

The El Tatio Geyser Field (ETGF), located in Northern Chile, is the main geyser field in the southern hemisphere. Despite this, details of its microbial ecology are still unknown. Here, we briefly report on  the composition and predicted functions of the bacterial community in spouting pool sediments from the ETGF as revealed by high-throughput sequencing of 16S rRNA genes. Results of this analysis showed that while there were differences in richness and diversity between samples, bacterial communities were primarily dominated by the phyla Proteobacteria, followed Firmicutes, Bacteroidetes, Acidobacteria, and Chloroflexi. Analyses of predicted functional activity indicated that the functions were mostly attributed to chemoheterotrophy and aerobic chemoheterotrophy, followed by sulfur (respiration of sulfur compounds and sulfate) and nitrogen (nitrate reduction, respiration of nitrogen and nitrate) cycling. Taken together, our results suggest a high diversity in taxonomy and predictive functions of bacterial communities in sediments from spouting pools. This study provides fundamentally important  information on the structure and function  predictive functions of microbiota  communities in spouting pools. Moreover, since the ETGF is intensively visited and impacted by tens of thousands of tourists every year, our results can be used to help guide the design of sustainable conservation strategies.

Entities:  

Keywords:  Atacama Desert; Bacterial community; Extreme environments; Geyser; High-throughput sequencing; Humboldt System; Sediment

Year:  2020        PMID: 32816051     DOI: 10.1007/s00203-020-02020-9

Source DB:  PubMed          Journal:  Arch Microbiol        ISSN: 0302-8933            Impact factor:   2.552


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