z-logo
Premium
Prokaryotic and viral community structure in the singular chaotropic salt lake Salar de Uyuni
Author(s) -
RamosBarbero María Dolores,
Martínez José M.,
Almansa Cristina,
Rodríguez Nuria,
Villamor Judith,
Gomariz María,
Escudero Cristina,
Rubin Sergio dC,
Antón Josefa,
MartínezGarcía Manuel,
Amils Ricardo
Publication year - 2019
Publication title -
environmental microbiology
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.954
H-Index - 188
eISSN - 1462-2920
pISSN - 1462-2912
DOI - 10.1111/1462-2920.14549
Subject(s) - biology , archaea , halophile , extreme environment , metagenomics , community structure , microbial population biology , ecology , bacteria , genetics , gene
Summary Salar de Uyuni (SdU) is the largest hypersaline salt flat and the highest lithium reservoir on Earth. In addition to extreme temperatures and high UV irradiance, SdU has high concentrations of chaotropic salts which can be important factors in controlling microbial diversity. Here, for the first time we characterize the viral diversity of this hypersaline environment during the two seasons, as well as the physicochemical characteristics and the prokaryotic communities of the analysed samples. Most of the selected samples showed a peculiar physicochemical composition and prokaryotic diversity, mostly different from each other even for samples from locations in close proximity or the same season. In contrast to most hypersaline systems Bacteria frequently outnumbered Archaea. Furthermore, an outstanding percentage of members of Salinibacte r sp., likely a species different from the cosmopolitan Salinibacter ruber, was obtained in most of the samples. Viral communities displayed the morphologies normally found in hypersaline environments. Two seasonal samples were chosen for a detailed metagenomic analysis of the viral assemblage. Both viral communities shared common sequences but were dominated by sample‐specific viruses, mirroring the differences also observed in physicochemical and prokaryotic community composition. These metaviromes were distinct from those detected in other hypersaline systems analysed to date.

This content is not available in your region!

Continue researching here.

Having issues? You can contact us here