Affiliation:
1. Department of Microbiology and Immunology, Department of Pathology, and Sealy Center for Vaccine Development, University of Texas Medical Branch, Galveston, Texas 77555-1070
2. Department of Biology, University of North Carolina, Chapel Hill, North Carolina 27599-3280
Abstract
ABSTRACT
Escherichia coli
O157:H7 carried on plant surfaces, including alfalfa sprouts, has been implicated in food poisoning and outbreaks of disease in the United States. Adhesion to cell surfaces is a key component for bacterial establishment and colonization on many types of surfaces. Several
E. coli
O157:H7 surface proteins are thought to be important for adhesion and/or biofilm formation. Therefore, we examined whether mutations in several genes encoding potential adhesins and regulators of adherence have an effect on bacterial binding to plants and also examined the role of these genes during adhesion to Caco-2 cells and during biofilm formation on plastic in vitro. The genes tested included those encoding adhesins (
cah
,
aidA1
, and
ompA
) and mediators of hyperadherence (
tdcA
,
yidE
,
waaI
, and
cadA
) and those associated with fimbria formation (
csgA
,
csgD
, and
lpfD2
). The introduction of some of these genes (
cah
,
aidA1
, and
csg
loci) into an
E. coli
K-12 strain markedly increased its ability to bind to alfalfa sprouts and seed coats. The addition of more than one of these genes did not show an additive effect. In contrast, deletion of one or more of these genes in a strain of
E. coli
O157:H7 did not affect its ability to bind to alfalfa. Only the absence of the
ompA
gene had a significant effect on binding, and the plant-bacterium interaction was markedly reduced in a
tdcA ompA
double mutant. In contrast, the
E. coli
O157:H7
ompA
and
tdcA ompA
mutant strains were only slightly affected in adhesion to Caco-2 cells and during biofilm formation. These findings suggest that some adhesins alone are sufficient to promote binding to alfalfa and that they may exist in
E. coli
O157:H7 as redundant systems, allowing it to compensate for the loss of one or more of these systems. Binding to the three types of surfaces appeared to be mediated by overlapping but distinct sets of genes. The only gene which appeared to be irreplaceable for binding to plant surfaces was
ompA
.
Publisher
American Society for Microbiology
Subject
Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology
Cited by
99 articles.
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