TY - JOUR
T1 - Metagenomic and metabolic analyses of poly-extreme microbiome from an active crater volcano lake
AU - Anaid Pena-Ocana, Betsy
AU - Ovando-Ovando, Cesar Ivan
AU - Puente Sanchez, Fernando
AU - Tamames, Javier
AU - Eduardo Servin-Garciduenas, Luis
AU - Gonzalez-Toril, Elena
AU - Gutiérrez-Sarmiento, Wilbert
AU - Jasso-Chavez, Ricardo
AU - Ruíz-Valdiviezo, Víctor Manuel
PY - 2022
Y1 - 2022
N2 - El Chich ' on volcano is one of the most active volcanoes in Mexico. Previous studies have described its polyextreme conditions and its bacterial composition, although the functional features of the complete microbiome have not been characterized yet. By using metabarcoding analysis, metagenomics, metabolomics and enzymology techniques, the microbiome of the crater lake was characterized in this study. New information is provided on the taxonomic and functional diversity of the representative Archaea phyla, Crenarchaeota and Euryarchaeota, as well as those that are representative of Bacteria, Thermotogales and Aquificae. With culture of microbial consortia and with the genetic information collected from the natural environment sampling, metabolic interactions were identified between prokaryotes, which can withstand multiple extreme conditions. The existence of a close relationship between the biogeochemical cycles of carbon and sulfur in an active volcano has been proposed, while the relationship in the energy metabolism of thermoacidophilic bacteria and archaea in this multi-extreme environment was biochemically revealed for the first time. These findings contribute towards understanding microbial metabolism under extreme conditions, and provide potential knowledge pertaining to "microbial dark matter", which can be applied to biotechnological processes and evolutionary studies.
AB - El Chich ' on volcano is one of the most active volcanoes in Mexico. Previous studies have described its polyextreme conditions and its bacterial composition, although the functional features of the complete microbiome have not been characterized yet. By using metabarcoding analysis, metagenomics, metabolomics and enzymology techniques, the microbiome of the crater lake was characterized in this study. New information is provided on the taxonomic and functional diversity of the representative Archaea phyla, Crenarchaeota and Euryarchaeota, as well as those that are representative of Bacteria, Thermotogales and Aquificae. With culture of microbial consortia and with the genetic information collected from the natural environment sampling, metabolic interactions were identified between prokaryotes, which can withstand multiple extreme conditions. The existence of a close relationship between the biogeochemical cycles of carbon and sulfur in an active volcano has been proposed, while the relationship in the energy metabolism of thermoacidophilic bacteria and archaea in this multi-extreme environment was biochemically revealed for the first time. These findings contribute towards understanding microbial metabolism under extreme conditions, and provide potential knowledge pertaining to "microbial dark matter", which can be applied to biotechnological processes and evolutionary studies.
KW - Poly-extreme conditions
KW - Anaerobic metabolism
KW - Sulfate reduction
KW - Methane production
KW - Archaea
KW - Poly-extreme conditions
KW - Anaerobic metabolism
KW - Sulfate reduction
KW - Methane production
KW - Archaea
UR - https://res.slu.se/id/publ/114131
U2 - 10.1016/j.envres.2021.111862
DO - 10.1016/j.envres.2021.111862
M3 - Journal article
SN - 0013-9351
VL - 203
JO - Environmental Research
JF - Environmental Research
M1 - 111862
ER -