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  4. Active microbiome structure and its association with environmental factors and viruses at different aquatic sites of a high‐altitude wetland
 
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Active microbiome structure and its association with environmental factors and viruses at different aquatic sites of a high‐altitude wetland

Journal
MicrobiologyOpen
ISSN
2045-8827
Date Issued
2018-07-30
DOI
10.1002/mbo3.667
WoS ID
WOS:000463972500021
Abstract
<jats:title>Abstract</jats:title><jats:p>Salar de Huasco is a high‐altitude wetland characterized by a highly diverse microbial life adapted to extreme climatic and environmental conditions. Our study aims to determine active microbial community structure changes within different aquatic sites and its relationship with environmental factors and viruses as potential drivers of diversification in different aquatic areas of this ecosystem. In this study, bacteria and archaea composition (16S rRNA subunit pyrolibraries) and picoplankton and viral abundance were determined at ponds, springs and lagoon sites of the wetland during wet and dry seasons (February and July 2012, respectively). In general, mixosaline waters (1,400–51,000 μS/cm) usually found in ponds and lagoon presented higher picoplanktonic abundances compared to freshwater (<800 μS/cm) spring sites, ranging from 1.07 × 10<jats:sup>5</jats:sup> to 1.83 × 10<jats:sup>7</jats:sup> cells/ml. Viral abundance and viral to picoplankton ratio (VPR) also presented greater values at ponds compared to spring sites, reaching up to 4.78 × 10<jats:sup>8</jats:sup> viruses‐like particles and up to 351 for VPR. In general, ponds hold a higher microbial diversity and complexity associated also with the presence of microbial mats compared with water sources or lagoon (Shannon index H′ 2.6–3.9 vs. <2.0). A greater richness of archaea was also detected in ponds characterized by functional groups such as known methanogens and ammonia oxidizers, and uncultured groups. In total, our results indicate that among the different aquatic sites of the wetland, ponds presented a great microbial community diversification associated to a higher top‐down control by viruses which may influence nutrient and greenhouse gases cycling.</jats:p>
OCDE Subjects

Natural sciences::Bio...

Author(s)
Eissler, Yoanna  
Facultad de Ciencias  
María‐Jesús Gálvez
Cristina Dorador
Martha Hengst
Verónica Molina

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