Mutation of a Broadly Conserved Operon (RL3499-RL3502) from Rhizobium leguminosarum Biovar viciae Causes Defects in Cell Morphology and Envelope Integrity

Author:

Vanderlinde Elizabeth M.1,Magnus Samantha A.1,Tambalo Dinah D.2,Koval Susan F.3,Yost Christopher K.1

Affiliation:

1. Department of Biology, University of Regina, 3737 Wascana Parkway, Regina, Saskatchewan, Canada S4S 0A2

2. Department of Biological Sciences, University of Calgary, 2500 University Drive, N.W., Calgary, Alberta, Canada T2N 1N4

3. Department of Microbiology and Immunology, University of Western Ontario, London, Ontario, Canada N6A 5C1

Abstract

ABSTRACT The bacterial cell envelope is of critical importance to the function and survival of the cell; it acts as a barrier against harmful toxins while allowing the flow of nutrients into the cell. It also serves as a point of physical contact between a bacterial cell and its host. Hence, the cell envelope of Rhizobium leguminosarum is critical to cell survival under both free-living and symbiotic conditions. Transposon mutagenesis of R. leguminosarum strain 3841 followed by a screen to isolate mutants with defective cell envelopes led to the identification of a novel conserved operon (RL3499-RL3502) consisting of a putative moxR -like AAA + ATPase, a hypothetical protein with a domain of unknown function (designated domain of unknown function 58), and two hypothetical transmembrane proteins. Mutation of genes within this operon resulted in increased sensitivity to membrane-disruptive agents such as detergents, hydrophobic antibiotics, and alkaline pH. On minimal media, the mutants retain their rod shape but are roughly 3 times larger than the wild type. On media containing glycine or peptides such as yeast extract, the mutants form large, distorted spheres and are incapable of sustained growth under these culture conditions. Expression of the operon is maximal during the stationary phase of growth and is reduced in a chvG mutant, indicating a role for this sensor kinase in regulation of the operon. Our findings provide the first functional insight into these genes of unknown function, suggesting a possible role in cell envelope development in Rhizobium leguminosarum . Given the broad conservation of these genes among the Alphaproteobacteria , the results of this study may also provide insight into the physiological role of these genes in other Alphaproteobacteria , including the animal pathogen Brucella .

Publisher

American Society for Microbiology

Subject

Molecular Biology,Microbiology

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