Genomic adaptation of Pseudomonas strains to acidity and antibiotics in hydrothermal vents at Kolumbo submarine volcano, Greece

Επιστημονική δημοσίευση - Άρθρο Περιοδικού uoadl:3056251 22 Αναγνώσεις

Μονάδα:
Ερευνητικό υλικό ΕΚΠΑ
Τίτλος:
Genomic adaptation of Pseudomonas strains to acidity and antibiotics in hydrothermal vents at Kolumbo submarine volcano, Greece
Γλώσσες Τεκμηρίου:
Αγγλικά
Περίληψη:
Although the rise of antibiotic and multidrug resistant bacteria is one of the biggest current threats to human health, our understanding of the mechanisms involved in antibiotic resistance selection remains scarce. We performed whole genome sequencing of 21 Pseudomonas strains, previously isolated from an active submarine volcano of Greece, the Kolumbo volcano. Our goal was to identify the genetic basis of the enhanced co-tolerance to antibiotics and acidity of these Pseudomonas strains. Pangenome analysis identified 10,908 Gene Clusters (GCs). It revealed that the numbers of phage-related GCs and sigma factors, which both provide the mechanisms of adaptation to environmental stressors, were much higher in the high tolerant Pseudomonas strains compared to the rest ones. All identified GCs of these strains were associated with antimicrobial and multidrug resistance. The present study provides strong evidence that the CO2-rich seawater of the volcano associated with low pH might be a reservoir of microorganisms carrying multidrug efflux-mediated systems and pumps. We, therefore, suggest further studies of other extreme environments (or ecosystems) and their associated physicochemical parameters (or factors) in the rise of antibiotic resistance. © 2021, The Author(s).
Έτος δημοσίευσης:
2021
Συγγραφείς:
Bravakos, P.
Mandalakis, M.
Nomikou, P.
Anastasiou, T.I.
Kristoffersen, J.B.
Stavroulaki, M.
Kilias, S.
Kotoulas, G.
Magoulas, A.
Polymenakou, P.N.
Περιοδικό:
Scientific Reports
Εκδότης:
Institute of Geographic Sciences and Natural Resources Research
Τόμος:
11
Αριθμός / τεύχος:
1
Λέξεις-κλειδιά:
sea water, adaptation; bacterial genome; genetics; Greece; hydrothermal vent; isolation and purification; microbiology; multidrug resistance; Pseudomonas, Adaptation, Physiological; Drug Resistance, Multiple, Bacterial; Genome, Bacterial; Greece; Hydrothermal Vents; Pseudomonas; Seawater
Επίσημο URL (Εκδότης):
DOI:
10.1038/s41598-020-79359-y
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