Jie Liu, Max M Häggblom
Journal: mBio 2019;9(6):e02471-18
PMID: 30563901
Organohalide compounds are widespread in the environment as a result of both anthropogenic activities and natural production. The marine environment, in particular, is a major reservoir of organohalides, and reductive dehalogenation is thought to be an important process in the overall cycling of these compounds. are important members of the marine microbiota with diverse metabolic capacities, and reductive dehalogenation has been observed in some In this study, a comprehensive survey of genomes revealed that approximately 10% contain reductive dehalogenase (RDase) genes, which are found within a common gene neighborhood. The dehalogenating potential of select RDase A-containing and their gene expression were experimentally verified. Three strains isolated from marine environments representing diverse species, , , and , were shown to reductively dehalogenate bromophenols and utilize them as terminal electron acceptors in organohalide respiration. Their debrominating activity was not inhibited by sulfate or elemental sulfur, and these species are either sulfate- or sulfur-reducing bacteria. The analysis of RDase A gene transcripts indicated significant upregulation induced by 2,6-dibromophenol. This study extends our knowledge of the phylogenetic diversity of organohalide-respiring bacteria and their functional RDase A gene diversity. The identification of reductive dehalogenase genes in diverse and confirmation of their organohalide-respiring capability suggest that play an important role in natural organohalide cycling. The marine environment is a major reservoir for both anthropogenic and natural organohalides, and reductive dehalogenation is thought to be an important process in the overall cycling of these compounds. Here we demonstrate that the capacity of organohalide respiration appears to be widely distributed in members of marine The identification of reductive dehalogenase genes in diverse and the confirmation of their dehalogenating activity through functional assays and transcript analysis in select isolates extend our knowledge of organohalide-respiring diversity. The presence of functional reductive dehalogenase genes in diverse implies that they may play an important role in organohalide respiration in the environment.
Copyright © 2018 Liu and Häggblom.
Full Text Sources:
Molecular Biology Databases:
© Copyright 2026, Nutrition Evidence
We use cookies to improve your experience and analyze site traffic with Google Analytics. By continuing to use our site, you agree to our use of cookies. Learn more.