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Published on: May 23, 2020
Quorum sensing: the "switch" in the competitive relationship between Gram-positive bacteria based on transcriptomic
Guoxu Ao1, Changli Wang2, Liguo Yang3
1Engineering Research Center of Agricultural Microbiology Technology, Ministry of Education & Heilongjiang Provincial Key Laboratory of Plant Genetic Engineering and Biological Fermentation Engineering for Cold Region & Key Laboratory of Molecular Biology, College of Heilongjiang Province & School of Life Sciences, Heilongjiang University, Harbin 150080, China.
Quorum sensing (QS) drives bacterial competition between Gram-positive bacteria. Microbacterium sp. HM-2
Area of Science:
- Microbiology
- Bacterial Competition
- Quorum Sensing
Background:
- Bacterial competition is common, but mechanisms in Gram-positive bacteria, especially via quorum sensing (QS), are understudied.
- Understanding QS in inter-species competition is crucial for microbial ecology and biotechnology.
Purpose of the Study:
- To investigate the role of quorum sensing (QS) in the competitive interaction between two Gram-positive bacteria: Rhodococcus sp. HD1 and Microbacterium sp. HM-2.
- To elucidate the molecular mechanisms underlying QS-mediated competition.
Main Methods:
- Co-culturing of Rhodococcus sp. HD1 and Microbacterium sp. HM-2.
- Analysis of epiphysiological indicators and biomass.
- Transcriptomic analysis to identify differentially expressed genes.
- Gene engineering techniques, including gene knockout and complementation.
- Structural equation modeling to analyze gene regulatory networks.
Main Results:
- Microbacterium sp. HM-2 inhibited Rhodococcus sp. HD1 growth, altering HD1's morphology and increasing its surface-to-volume ratio.
- QS-related genes, particularly the virulence gene TM_0352, were upregulated in HM-2.
- ABC transporter genes in HD1 were upregulated, correlating with TM_0352 expression.
- TM_0352 was confirmed as a key player, promoting HM-2 biomass and inhibiting HD1 biomass.
Conclusions:
- Quorum sensing (QS) drives bacterial competition between Gram-positive bacteria through specific gene regulation.
- The TM_0352 virulence gene in Microbacterium sp. HM-2 plays a dominant role, inducing ABC transporters in Rhodococcus sp. HD1.
- These findings offer novel insights into QS-mediated competition and inhibition mechanisms between bacteria.
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