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  3. The Evolution of Ecological Diversity in Acidobacteria.
 

The Evolution of Ecological Diversity in Acidobacteria.

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BORIS DOI
10.48350/165886
Publisher DOI
10.3389/fmicb.2022.715637
PubMed ID
35185839
Description
Acidobacteria occur in a large variety of ecosystems worldwide and are particularly abundant and highly diverse in soils. In spite of their diversity, only few species have been characterized to date which makes Acidobacteria one of the most poorly understood phyla among the domain Bacteria. We used a culture-independent niche modeling approach to elucidate ecological adaptations and their evolution for 4,154 operational taxonomic units (OTUs) of Acidobacteria across 150 different, comprehensively characterized grassland soils in Germany. Using the relative abundances of their 16S rRNA gene transcripts, the responses of active OTUs along gradients of 41 environmental variables were modeled using hierarchical logistic regression (HOF), which allowed to determine values for optimum activity for each variable (niche optima). By linking 16S rRNA transcripts to the phylogeny of full 16S rRNA gene sequences, we could trace the evolution of the different ecological adaptations during the diversification of Acidobacteria. This approach revealed a pronounced ecological diversification even among acidobacterial sister clades. Although the evolution of habitat adaptation was mainly cladogenic, it was disrupted by recurrent events of convergent evolution that resulted in frequent habitat switching within individual clades. Our findings indicate that the high diversity of soil acidobacterial communities is largely sustained by differential habitat adaptation even at the level of closely related species. A comparison of niche optima of individual OTUs with the phenotypic properties of their cultivated representatives showed that our niche modeling approach (1) correctly predicts those physiological properties that have been determined for cultivated species of Acidobacteria but (2) also provides ample information on ecological adaptations that cannot be inferred from standard taxonomic descriptions of bacterial isolates. These novel information on specific adaptations of not-yet-cultivated Acidobacteria can therefore guide future cultivation trials and likely will increase their cultivation success.
Date of Publication
2022
Publication Type
Article
Subject(s)
500 Science > 580 Plants (Botany)
Keyword(s)
16S rRNA gene transcripts Acidobacteria adaptation ecological diversity evolution optimum niche modeling physiological traits
Language(s)
en
Contributor(s)
Sikorski, Johannes
Baumgartner, Vanessa
Birkhofer, Klaus
Boeddinghaus, Runa S
Bunk, Boyke
Fischer, Markus
Institut für Pflanzenwissenschaften (IPS)
Fösel, Bärbel U
Friedrich, Michael W
Göker, Markus
Hölzel, Norbert
Huang, Sixing
Huber, Katharina J
Kandeler, Ellen
Klaus, Valentin H
Kleinebecker, Till
Marhan, Sven
von Mering, Christian
Oelmann, Yvonne
Prati, Daniel
Institut für Pflanzenwissenschaften (IPS)
Regan, Kathleen M
Richter-Heitmann, Tim
Rodrigues, João F Matias
Schmitt, Barbara
Institut für Pflanzenwissenschaften (IPS)
Schöning, Ingo
Schrumpf, Marion
Schurig, Elisabeth
Solly, Emily F
Wolters, Volkmar
Overmann, Jörg
Additional Credits
Institut für Pflanzenwissenschaften (IPS)
Series
Frontiers in Microbiology
Publisher
Frontiers
ISSN
1664-302X
Access(Rights)
open.access
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