Affiliation:
1. Department of Plant Pathology, University of Arizona, Tucson, Arizona 85721
Abstract
ABSTRACT
The root-associated biological control bacterium
Pseudomonas aureofaciens
30-84 produces a range of exoproducts, including protease and phenazines. Phenazine antibiotic biosynthesis by
phzXYFABCD
is regulated in part by the PhzR-PhzI quorum-sensing system. Mutants defective in
phzR
or
phzI
produce very low levels of phenazines but wild-type levels of exoprotease. In the present study, a second genomic region of strain 30-84 was identified that, when present in
trans
, increased β-galactosidase activity in a genomic
phzB
::
lacZ
reporter and partially restored phenazine production to a
phzR
mutant. Sequence analysis identified two adjacent genes,
csaR
and
csaI
, that encode members of the LuxR-LuxI family of regulatory proteins. No putative promoter region is present upstream of the
csaI
start codon and no
lux
box-like element was found in either the
csaR
promoter or the 30-bp intergenic region between
csaR
and
csaI
. Both the PhzR-PhzI and CsaR-CsaI systems are regulated by the GacS-GacA two-component regulatory system. In contrast to the multicopy effects of
csaR
and
csaI
in
trans
, a genomic
csaR
mutant (30-84R2) and a
csaI
mutant (30-84I2) did not exhibit altered phenazine production in vitro or in situ, indicating that the CsaR-CsaI system is not involved in phenazine regulation in strain 30-84. Both mutants also produced wild-type levels of protease. However, disruption of both
csaI
and
phzI
or both
csaR
and
phzR
eliminated both phenazine and protease production completely. Thus, the two quorum-sensing systems do not interact for phenazine regulation but do interact for protease regulation. Additionally, the CsaI
N
-acylhomoserine lactone (AHL) signal was not recognized by the phenazine AHL reporter 30-84I/Z but was recognized by the AHL reporters
Chromobacterium violaceum
CV026 and
Agrobacterium tumefaciens
A136(pCF240). Inactivation of
csaR
resulted in a smooth mucoid colony phenotype and formation of cell aggregates in broth, suggesting that CsaR is involved in regulating biosynthesis of cell surface components. Strain 30-84I/I2 exhibited mucoid colony and clumping phenotypes similar to those of 30-84R2. Both phenotypes were reversed by complementation with
csaR-csaI
or by the addition of the CsaI AHL signal. Both quorum-sensing systems play a role in colonization by strain 30-84. Whereas loss of PhzR resulted in a 6.6-fold decrease in colonization by strain 30-84 on wheat roots in natural soil, a
phzR
csaR
double mutant resulted in a 47-fold decrease. These data suggest that gene(s) regulated by the CsaR-CsaI system also plays a role in the rhizosphere competence of
P. aureofaciens
30-84.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
116 articles.
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