What defines a photosynthetic microbial mat in western Antarctica?

R Ricardo A. Mercado-Juárez P Patricia M. Valdespino-Castillo M Martín Merino Ibarra S Silvia Batista W Walter Mac Cormack L Lucas Ruberto E Edward J. Carpenter D Douglas G. Capone L Luisa I. Falcón

Abstract

Antarctic microbial mats, with their significant biodiversity and key role in biogeochemical cycling, were the focus of our study. We employed a metagenomic approach to analyze 14 microbial mats from meltwater streams of western Antarctica, covering the Maritime, Peninsula, and Dry Valleys regions. Our findings revealed that the taxonomic compositional level of the microbial mat communities is characterized by similar bacterial groups, with diatoms being the main distinguishing factor between the rapidly warming Maritime Antarctica and the other mats. Bacteria were found to be the predominant component of all microbial mats (>90%), followed by Eukarya (>3%), Archaea (<1%), and Viruses (<0.1%). The average abundance of the main phyla composing Antarctic microbial mats included Bacteroidota (35%), Pseudomonadota (29%), Cyanobacteriota (19%), Verrucomicrobiota (3%), Bacillariophyta (2%), Planctomycetota (2%), Acidobacteriota (2%), Actinomycetota (2%), Bacillota (1%), and Chloroflexota (1%). We also identified some microeukaryotes that could play essential roles in the functioning of Antarctic microbial mats. Notably, all mats were found in sites with varied environmental characteristics, showed N-limitation, and shared functional patterns.

Article Details

Journal PLoS ONE
Volume / Issue Vol. 20, Issue 3
Published March 05, 2025
Pages e0315919
ISSN 1932-6203
Publisher Public Library of Science

Journal Info

PLoS ONE

Public Library of Science

ISSN: 1932-6203 Open Access Health Sciences

Authors (9)

R

Ricardo A. Mercado-Juárez

P

Patricia M. Valdespino-Castillo

M

Martín Merino Ibarra

S

Silvia Batista

W

Walter Mac Cormack

L

Lucas Ruberto

E

Edward J. Carpenter

D

Douglas G. Capone

L

Luisa I. Falcón