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Interkingdom Signaling of the Insect Pathogen with Plants Via the LuxR solo SdiA. | LitMetric

Interkingdom Signaling of the Insect Pathogen with Plants Via the LuxR solo SdiA.

Microorganisms

Institute of Molecular Physiology (imP), Johannes-Gutenberg-University Mainz, Biocenter II, Microbiology and Biotechnology, Hanns-Dieter-Hüsch-Weg 17, 55128 Mainz, Germany.

Published: March 2023

In bacteria, group-coordinated behavior such as biofilm formation or virulence are often mediated via cell-cell communication, a process referred to as quorum sensing (QS). The canonical QS system of Gram-negative bacteria uses -acyl homoserine lactones (AHLs) as communication molecules, which are produced by LuxI-type synthases and sensed by cognate LuxR-type receptors. These receptors act as transcriptional regulators controlling the expression of specific genes. Some bacteria harbor LuxR-type receptors lacking a cognate LuxI-type synthases, designated as LuxR solos. Among many other LuxR solos, the entomopathogenic enteric bacterium harbors a SdiA-like LuxR solo containing an AHL signal-binding domain, for which a respective signal molecule and target genes have not been identified yet. Here we performed SPR analysis to demonstrate that SdiA acts as a bidirectional regulator of transcription, tightly controlling its own expression and the adjacent () gene in a gene supposed to be involved in the colonization of eukaryotes. Via qPCR we could further determine that in deletion mutant strains, is upregulated, indicating that SdiA negatively affects expression of . Furthermore, the Δ deletion mutant exhibited differences in biofilm formation and motility compared with the wild-type. Finally, using nanoDSF analysis we could identify putative binding ability of SdiA towards diverse AHLs, but also to plant-derived signals, modulating the DNA-binding capacity of SdiA, suggesting that this LuxR solo acts as an important player in interkingdom signaling between and plants.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10143992PMC
http://dx.doi.org/10.3390/microorganisms11040890DOI Listing

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