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Genome-resolved analysis of Serratia marcescens SMTT infers niche specialization as a hydrocarbon-degrader. | LitMetric

Genome-resolved analysis of Serratia marcescens SMTT infers niche specialization as a hydrocarbon-degrader.

DNA Res

Biochemistry Research Lab (Rm216), Dept. of Life Sciences, Faculty of Science and Technology, The University of the West Indies, St. Augustine. Trinidad and Tobago - West Indies.

Published: January 2025

AI Article Synopsis

  • Bacteria exposed to pollutants exhibit unique genomic and metabolic diversity that helps them adapt to hydrocarbon-rich environments.
  • Whole genome sequencing of Serratia marcescens SMTT from crude oil-contaminated soil revealed a genome size of about 5 million base pairs and 4,842 genes, highlighting its metabolic capabilities.
  • Comparisons with other S. marcescens strains showed SMTT has enhanced gene features for degrading aromatic compounds and increased resistance to drugs, indicating its potential for industrial applications.

Article Abstract

Bacteria that are chronically exposed to high levels of pollutants demonstrate genomic and corresponding metabolic diversity that complement their strategies for adaptation to hydrocarbon-rich environments. Whole genome sequencing was carried out to infer functional traits of Serratia marcescens SMTT recovered from soil contaminated with crude oil. The genome size (Mb) was 5,013,981 with a total gene count of 4,842. Comparative analyses with carefully selected S. marcescens strains, two of which are associated with contaminated soil, show conservation of central metabolic pathways in addition to intra-specific genetic diversity and metabolic flexibility. Genome comparisons also indicated an enrichment of genes associated with multidrug resistance and efflux pumps for SMTT. The SMTT genome contained genes that enable the catabolism of aromatic compounds via the protocatechuate para-degradation pathway, in addition to meta-cleavage of catechol (meta-cleavage pathway II); gene enrichment for aromatic compound degradation was markedly higher for SMTT compared to the other S. marcescens strains analyzed. Our data presents a valuable genetic inventory for future studies on strains of S. marcescens and provides insights into those genomic features of SMTT with industrial potential.

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Source
http://dx.doi.org/10.1093/dnares/dsaf001DOI Listing

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