INVESTIGADORES
QUIROGA Cecilia
artículos
Título:
Novel mobile integrons and strain-specific integrase genes within Shewanella spp. unveil multiple lateral genetic transfer events within the genus
Autor/es:
TEOLINCACIHUATL AYALA NUÑEZ; GABRIELA CERBINO; MARÍA FLORENCIA RAPISARDI; CECILIA QUIROGA; DANIELA CENTRÓN
Revista:
Microorganisms
Editorial:
MDPI
Referencias:
Lugar: Basel; Año: 2022
ISSN:
2076-2607
Resumen:
Co-corresponding authorShewanella spp. are Gram-negative bacteria that thrive in aquatic niches and also can cause infectious diseases as opportunistic pathogens. Chromosomal (CI) and mobile integrons (MI) were previously described in some Shewanella isolates. Here, we evaluated the occurrence of integrase genes, the integron systems and their genetic surroundings in the genus. We identified 22 integrase gene types, 17 of which were newly described, showing traits of multiple events of lateral genetic transfer (LGT). Phylogenetic analysis showed that most of them were strain-specific, except for Shewanella algae, where SonIntIA-like may have co-evolved within the host as typical CIs. Noteworthy, co-existence of up to 5 different integrase genes within a strain, as well as their wide dissemination to Alteromonadales, Vibrionales, Chromatiales, Oceanospirillales and Enterobacterales was observed. In addition, identification of two novel MIs suggests that continuous LGT events may have occurred resembling the behavior of class 1 integrons. The constant emergence of determinants associated to antimicrobial resistance worldwide, concomitantly with novel MIs in strains capable to harbor several types of integrons, may be an alarming threat for the recruitment of novel antimicrobial resistance gene cassettes in the genus Shewanella, with its consequent contribution towards multidrug resistance in clinical isolates.