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Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments

Members of the phylum Acidobacteria are abundant and ubiquitous across soils. We performed a large‐scale comparative genome analysis spanning subdivisions 1, 3, 4, 6, 8 and 23 (n = 24) with the goal to identify features to help explain their prevalence in soils and understand their ecophysiology. Ou...

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Autores principales: Eichorst, Stephanie A., Trojan, Daniela, Roux, Simon, Herbold, Craig, Rattei, Thomas, Woebken, Dagmar
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2018
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900883/
https://www.ncbi.nlm.nih.gov/pubmed/29327410
http://dx.doi.org/10.1111/1462-2920.14043
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author Eichorst, Stephanie A.
Trojan, Daniela
Roux, Simon
Herbold, Craig
Rattei, Thomas
Woebken, Dagmar
author_facet Eichorst, Stephanie A.
Trojan, Daniela
Roux, Simon
Herbold, Craig
Rattei, Thomas
Woebken, Dagmar
author_sort Eichorst, Stephanie A.
collection PubMed
description Members of the phylum Acidobacteria are abundant and ubiquitous across soils. We performed a large‐scale comparative genome analysis spanning subdivisions 1, 3, 4, 6, 8 and 23 (n = 24) with the goal to identify features to help explain their prevalence in soils and understand their ecophysiology. Our analysis revealed that bacteriophage integration events along with transposable and mobile elements influenced the structure and plasticity of these genomes. Low‐ and high‐affinity respiratory oxygen reductases were detected in multiple genomes, suggesting the capacity for growing across different oxygen gradients. Among many genomes, the capacity to use a diverse collection of carbohydrates, as well as inorganic and organic nitrogen sources (such as via extracellular peptidases), was detected – both advantageous traits in environments with fluctuating nutrient environments. We also identified multiple soil acidobacteria with the potential to scavenge atmospheric concentrations of H(2), now encompassing mesophilic soil strains within the subdivision 1 and 3, in addition to a previously identified thermophilic strain in subdivision 4. This large‐scale acidobacteria genome analysis reveal traits that provide genomic, physiological and metabolic versatility, presumably allowing flexibility and versatility in the challenging and fluctuating soil environment.
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spelling pubmed-59008832018-04-23 Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments Eichorst, Stephanie A. Trojan, Daniela Roux, Simon Herbold, Craig Rattei, Thomas Woebken, Dagmar Environ Microbiol Research Articles Members of the phylum Acidobacteria are abundant and ubiquitous across soils. We performed a large‐scale comparative genome analysis spanning subdivisions 1, 3, 4, 6, 8 and 23 (n = 24) with the goal to identify features to help explain their prevalence in soils and understand their ecophysiology. Our analysis revealed that bacteriophage integration events along with transposable and mobile elements influenced the structure and plasticity of these genomes. Low‐ and high‐affinity respiratory oxygen reductases were detected in multiple genomes, suggesting the capacity for growing across different oxygen gradients. Among many genomes, the capacity to use a diverse collection of carbohydrates, as well as inorganic and organic nitrogen sources (such as via extracellular peptidases), was detected – both advantageous traits in environments with fluctuating nutrient environments. We also identified multiple soil acidobacteria with the potential to scavenge atmospheric concentrations of H(2), now encompassing mesophilic soil strains within the subdivision 1 and 3, in addition to a previously identified thermophilic strain in subdivision 4. This large‐scale acidobacteria genome analysis reveal traits that provide genomic, physiological and metabolic versatility, presumably allowing flexibility and versatility in the challenging and fluctuating soil environment. John Wiley and Sons Inc. 2018-03-12 2018-03 /pmc/articles/PMC5900883/ /pubmed/29327410 http://dx.doi.org/10.1111/1462-2920.14043 Text en © 2018 The Authors. Environmental Microbiology published by Society for Applied Microbiology and John Wiley & Sons Ltd. This is an open access article under the terms of the http://creativecommons.org/licenses/by/4.0/ License, which permits use, distribution and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Articles
Eichorst, Stephanie A.
Trojan, Daniela
Roux, Simon
Herbold, Craig
Rattei, Thomas
Woebken, Dagmar
Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title_full Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title_fullStr Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title_full_unstemmed Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title_short Genomic insights into the Acidobacteria reveal strategies for their success in terrestrial environments
title_sort genomic insights into the acidobacteria reveal strategies for their success in terrestrial environments
topic Research Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC5900883/
https://www.ncbi.nlm.nih.gov/pubmed/29327410
http://dx.doi.org/10.1111/1462-2920.14043
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