Recent Understanding of Soil Acidobacteria and Their Ecological Significance: A Critical Review

Acidobacteria represents an underrepresented soil bacterial phylum whose members are pervasive and copiously distributed across nearly all ecosystems. Acidobacterial sequences are abundant in soils and represent a significant fraction of soil microbial community. Being recalcitrant and difficult-to-...

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Published inFrontiers in microbiology Vol. 11; p. 580024
Main Authors Kalam, Sadaf, Basu, Anirban, Ahmad, Iqbal, Sayyed, R. Z., El-Enshasy, Hesham Ali, Dailin, Daniel Joe, Suriani, Ni Luh
Format Journal Article
LanguageEnglish
Published Frontiers Media S.A 30.10.2020
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Summary:Acidobacteria represents an underrepresented soil bacterial phylum whose members are pervasive and copiously distributed across nearly all ecosystems. Acidobacterial sequences are abundant in soils and represent a significant fraction of soil microbial community. Being recalcitrant and difficult-to-cultivate under laboratory conditions, holistic, polyphasic approaches are required to study these refractive bacteria extensively. Acidobacteria possesses an inventory of genes involved in diverse metabolic pathways, as evidenced by their pan-genomic profiles. Because of their preponderance and ubiquity in the soil, speculations have been made regarding their dynamic roles in vital ecological processes viz., regulation of biogeochemical cycles, decomposition of biopolymers, exopolysaccharide secretion, and plant growth promotion. These bacteria are expected to have genes that might help in survival and competitive colonization in the rhizosphere, leading to the establishment of beneficial relationships with plants. Exploration of these genetic attributes and more in-depth insights into the belowground mechanics and dynamics would lead to a better understanding of the functions and ecological significance of this enigmatic phylum in the soil-plant environment. This review is an effort to provide a recent update into the diversity of genes in Acidobacteria useful for characterization, understanding ecological roles, and future biotechnological perspectives.Acidobacteria represents an underrepresented soil bacterial phylum whose members are pervasive and copiously distributed across nearly all ecosystems. Acidobacterial sequences are abundant in soils and represent a significant fraction of soil microbial community. Being recalcitrant and difficult-to-cultivate under laboratory conditions, holistic, polyphasic approaches are required to study these refractive bacteria extensively. Acidobacteria possesses an inventory of genes involved in diverse metabolic pathways, as evidenced by their pan-genomic profiles. Because of their preponderance and ubiquity in the soil, speculations have been made regarding their dynamic roles in vital ecological processes viz., regulation of biogeochemical cycles, decomposition of biopolymers, exopolysaccharide secretion, and plant growth promotion. These bacteria are expected to have genes that might help in survival and competitive colonization in the rhizosphere, leading to the establishment of beneficial relationships with plants. Exploration of these genetic attributes and more in-depth insights into the belowground mechanics and dynamics would lead to a better understanding of the functions and ecological significance of this enigmatic phylum in the soil-plant environment. This review is an effort to provide a recent update into the diversity of genes in Acidobacteria useful for characterization, understanding ecological roles, and future biotechnological perspectives.
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This article was submitted to Systems Microbiology, a section of the journal Frontiers in Microbiology
Edited by: Byung-Kwan Cho, Korea Advanced Institute of Science and Technology, South Korea
These authors have contributed equally to this work
These authors have contributed equally to this work and share first authorship
Reviewed by: Vasvi Chaudhry, University of Tübingen, Germany; Sheree J. Finley, Alabama State University, United States; Namil Lee, Korea Advanced Institute of Science and Technology, South Korea
ORCID: Anirban Basu, orcid.org/0000-0001-6620-8320; Iqbal Ahmad, orcid.org/0000-0001-8447-4497; R. Z. Sayyed, orcid.org/0000-0002-1553-1213
ISSN:1664-302X
1664-302X
DOI:10.3389/fmicb.2020.580024