Temperature and Oxidative Stress as Triggers for Virulence Gene Expression in Pathogenic spp.

Front Microbiol

Department of Basic Medical Sciences, Biochemistry Section, University of the West IndiesMona, Jamaica.

Published: May 2017

Leptospirosis is a zooanthroponosis aetiologically caused by pathogenic bacteria belonging to the genus, . Environmental signals such as increases in temperatures or oxidative stress can trigger response regulatory modes of virulence genes during infection. This study sought to determine the effect of temperature and oxidative stress on virulence associated genes in highly passaged Jules and Portlandvere. Bacteria were grown in EMJH at 30°C, 37°C, or at 30°C before being transferred to 37°C. A total of 14 virulence-associated genes (, and ) were assessed using endpoint PCR. Transcriptional analyses of , , , , were assessed by quantitative real-time RT-PCR at the temperature conditions. To assess oxidative stress, bacteria were exposed to HO for 30 and 60 min with or without the temperature stress. All genes except (for Portlandvere) and and (for Jules) were detectable in the strains. Quantitatively, temperature stress resulted in significant changes in gene expression within species or between species. Temperature changes were more influential in gene expression for Jules, particularly at 30°C and upshift conditions; at 37°C, expression levels were higher for Portlandvere. However, compared to Jules, where temperature was influential in two of five genes, temperature was an essential element in four of five genes in Portlandvere exposed to oxidative stress. At both low and high oxidative stress levels, the interplay between genetic predisposition (larger genome size) and temperature was biased towards Portlandvere particularly at 30°C and upshift conditions. While it is clear that expression of many virulence genes in highly passaged strains of are attenuated or lost, genetic predisposition, changes in growth temperature and/or oxidative intensity and/or duration were factors which acted in isolation or together with other regulatory cues to contribute to the variable gene expression observed in this study. Overall, differential gene expression in serovar Portlandvere was more responsive to temperature and oxidative stress.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC5423269PMC
http://dx.doi.org/10.3389/fmicb.2017.00783DOI Listing

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