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Sigma S Involved in Bacterial Survival of Ralstonia pseudosolanacearum

Authors :
Hye Kyung Choi
Eun Jeong Jo
Jee Eun Heo
Hyun Gi Kong
Seon-Woo Lee
Source :
Research in Plant Disease, Vol 30, Iss 2, Pp 148-156 (2024)
Publication Year :
2024
Publisher :
Hanrimwon Publishing Company, 2024.

Abstract

Ralstonia pseudosolanacearum, a plant pathogenic bacterium that can survive for a long time in soil and water, causes lethal wilt in the Solanaceae family. Sigma S is a part of the RNA polymerase complex, which regulates gene expression during bacterial stress response or stationary phase. In this study, we investigated the role of sigma S in R. pseudosolanacearum under stress conditions using a rpoS-defective mutant strain of R. pseudosolanacearum and its wild-type strain. The phenotypes of rpoS-defective mutant were complemented by introducing the original rpoS gene. There were no differences observed in bacterial growth rate and exopolysaccharide production between the wild-type strain and the rpoS mutant. However, the wild-type strain responded more sensitively to nutrient deficiency compared to the mutant strain. Under the nutrient deficiency, the rpoS mutant maintained a high bacterial viability for a longer period, while the viability of the wild-type strain declined rapidly. Furthermore, a significant difference in pH was observed between the culture supernatant of the wild-type strain and the mutant strain. The pH of the culture supernatant for the wild-type strain decreased rapidly during bacterial growth, leading to medium acidification. The rapid decline in the wild-type strain's viability may be associated with medium acidification and bacterial sensitivity to acidity during transition to the stationary phase. Interestingly, the rpoS mutant strain cannot utilize acetic acid, D-alanine, D-trehalose, and L-histidine. These results suggest that sigma S of R. pseudosolanacearum regulates the production or utilization of organic acids and controls cell death during stationary phase under nutrient deficiency.

Details

Language :
English, Korean
ISSN :
15982262 and 22339191
Volume :
30
Issue :
2
Database :
Directory of Open Access Journals
Journal :
Research in Plant Disease
Publication Type :
Academic Journal
Accession number :
edsdoj.5c18e636137a4de5bbce9b42840c8237
Document Type :
article
Full Text :
https://doi.org/10.5423/RPD.2024.30.2.148