Understanding the rapid spread of antimicrobial resistance genes mediated by IS26

Author:

Tang Na12,Wei Dawei12,Zeng Yuan12,Zhang Gang1,Wang Chao1,Feng Jie1ORCID,Song Yuqin1

Affiliation:

1. State Key Laboratory of Microbial Resources, Institute of Microbiology Chinese Academy of Sciences Beijing China

2. College of Life Science University of Chinese Academy of Sciences Beijing China

Abstract

AbstractInsertion sequences (ISs) promote the transmission of antimicrobial resistance genes (ARGs) across bacterial populations. However, their contributions and dynamics during the transmission of resistance remain unclear. In this study, we selected IS26 as a representative transposable element to decipher the relationship between ISs and ARGs and to investigate their transfer features and transmission trends. We retrieved 2656  translocatable  IS26 ‐bounded  units with  ARGs (tIS26‐bUs‐ARGs) in complete bacterial genomes from the NCBI RefSeq database. In total, 124 ARGs spanning 12 classes of antibiotics were detected, and the average contribution rate of IS26 to these genes was 41.2%. We found that  IS26 ‐bounded  units (IS26‐bUs) mediated extensive ARG dissemination within the bacteria of the Gammaproteobacteria class, showing strong transfer potential between strains, species, and even phyla. The IS26‐bUs expanded in bacterial populations over time, and their temporal expansion trend was significantly correlated with antibiotic usage. This wide dissemination could be due to the nonspecific target site preference of IS26. Finally, we experimentally confirmed that the introduction of a single copy of IS26 could lead to the formation of a composite transposon mediating the transmission of “passenger” genes. These observations extend our knowledge of the IS26 and provide new insights into the mediating role of ISs in the dissemination of antibiotic resistance.

Publisher

Wiley

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