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  5. Novel endolithic bacteria of phylum
    <i>Chloroflexota</i>
    reveal a myriad of potential survival strategies in the Antarctic desert

Novel endolithic bacteria of phylum Chloroflexota reveal a myriad of potential survival strategies in the Antarctic desert

Author(s)
Williams, Timothy J.
Allen, Michelle A.
Ray, Angelique E.
Benaud, Nicole
Chelliah, Devan S.
more
Editor(s)
Atomi, Haruyuki
Date Issued
February 19, 2024
Type
article
DOI
10.1128/aem.02264-23
ISSN
0099-2240
1098-5336
Journal
APPLIED AND ENVIRONMENTAL MICROBIOLOGY  
Abstract
The ice-free McMurdo Dry Valleys of Antarctica are dominated by nutrient-poor mineral soil and rocky outcrops. The principal habitat for microorganisms is within rocks (endolithic). In this environment, microorganisms are provided with protection against sub-zero temperatures, rapid thermal fluctuations, extreme dryness, and ultraviolet and solar radiation. Endolithic communities include lichen, algae, fungi, and a diverse array of bacteria. Chloroflexota is among the most abundant bacterial phyla present in these communities. Among the Chloroflexota are four novel classes of bacteria, here named Candidatus Spiritibacteria class. nov. (=UBA5177), Candidatus Martimicrobia class. nov. (=UBA4733), Candidatus Tarhunnaeia class. nov. (=UBA6077), and Candidatus Uliximicrobia class. nov. (=UBA2235). We retrieved 17 high-quality metagenome-assembled genomes (MAGs) that represent these four classes. Based on genome predictions, all these bacteria are inferred to be aerobic heterotrophs that encode enzymes for the catabolism of diverse sugars. These and other organic substrates are likely derived from lichen, algae, and fungi, as metabolites (including photosynthate), cell wall components, and extracellular matrix components. The majority of MAGs encode the capacity for trace gas oxidation using high-affinity uptake hydrogenases, which could provide energy and metabolic water required for survival and persistence. Furthermore, some MAGs encode the capacity to couple the energy generated from H2 and CO oxidation to support carbon fixation (atmospheric chemosynthesis). All encode mechanisms for the detoxification and efflux of heavy metals. Certain MAGs encode features that indicate possible interactions with other organisms, such as Tc-type toxin complexes, hemolysins, and macroglobulins.
Subjects

Antarctica

endolithic communitie...

extremophiles

metagenomics

survival strategies

Handle
https://dspace.unitus.it/handle/2067/64960
File(s)
Thumbnail Image
Name

Williamsetal.2024 App Env Microb EndolithicChloroflexota-newclasses.pdf

Size

3.58 MB

Format

Adobe PDF

Checksum (MD5)

7cf3967d4ebf5d0bf409ee09260e3cc0

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