N-acyl-homoserine lactone-mediated quorum-sensing in Azospirillum: an exception rather than a rule

FEMS Microbiology Ecology
2006.0

Abstract

Forty Azospirillum strains were tested for their ability to synthesize N-acyl-homoserine lactones (AHLs). AHL production was detected for four strains belonging to the lipoferum species and isolated from a rice rhizosphere. AHL molecules were structurally identified for two strains: Azospirillum lipoferum TVV3 produces 3O,C(8)-HSL (N-3-oxo-octanoyl-homoserine-lactone), C(8)-HSL (N-3-octanoyl-homoserine-lactone), 3O,C(10)-HSL (N-3-oxo-decanoyl-homoserine-lactone), 3OH,C(10)-HSL (N-3-hydroxy-decanoyl-homoserine-lactone) and C(10)-HSL (N-3-decanoyl-homoserine-lactone), whereas A. lipoferum B518 produced 3O,C(6)-HSL (N-3-oxo-hexanoyl-homoserine-lactone), C(6)-HSL (N-3-hexanoyl-homoserine-lactone), 3O,C(8)-HSL, 3OH,C(8)-HSL and C(8)-HSL. Genes involved in AHL production were characterized for A. lipoferum TVV3 by generating a genomic library and complementing an AHL-deficient strain with sensor capabilities. Those genes, designated alpI and alpR, were found to belong to the luxI and luxR families, respectively. When cloned in a suitable heterologous host, alpI and alpR could direct the synthesis of the five cognate AHLs present in A. lipoferum TVV3. These two adjacent genes were found to be located on a 85 kb plasmid. Southern hybridization experiments with probes alpI/R indicated that genes involved in AHL production in the three other AHL-producing strains were not closely related to alpI and alpR. This study demonstrates that AHL-based quorum-sensing is not widespread among the genus Azospirillum and could be found only in some A. lipoferum strains.

Knowledge Graph

Similar Paper

N-acyl-homoserine lactone-mediated quorum-sensing in Azospirillum: an exception rather than a rule
FEMS Microbiology Ecology 2006.0
(Z)-N-(4-Decenoyl)homoserine lactone, a new quorum-sensing molecule, produced by endobacteria associated with Mortierella alpina A-178
Tetrahedron Letters 2012.0
Identification of Quorum-Sensing Molecules of N-Acyl-Homoserine Lactone in Gluconacetobacter Strains by Liquid Chromatography-Tandem Mass Spectrometry
Molecules 2019.0
An Unprecedented Medium-Chain Diunsaturated N-acylhomoserine Lactone from Marine Roseobacter Group Bacteria
Marine Drugs 2018.0
Identification of novel long chain <i>N</i>-acylhomoserine lactones of chain length C20 from the marine phototrophic bacterium <i>Rhodovulum sulfidophilum</i>
Bioscience, Biotechnology, and Biochemistry 2018.0
<i>Methylobacterium extorquens</i> AM1 produces a novel type of acyl‐homoserine lactone with a double unsaturated side chain under methylotrophic growth conditions
FEBS Letters 2006.0
The LuxM Homologue VanM from <i>Vibrio anguillarum</i> Directs the Synthesis of <i>N</i> -(3-Hydroxyhexanoyl)homoserine Lactone and <i>N</i> -Hexanoylhomoserine Lactone
Journal of Bacteriology 2001.0
A comparative study of non-native N-acyl l-homoserine lactone analogs in two Pseudomonas aeruginosa quorum sensing receptors that share a common native ligand yet inversely regulate virulence
Bioorganic &amp; Medicinal Chemistry 2018.0
Absolute Configuration and Antimicrobial Activity of Acylhomoserine Lactones
Journal of Natural Products 2008.0
A quorum-sensing system in the free-living photosynthetic bacterium Rhodobacter sphaeroides
Journal of Bacteriology 1997.0