Molecular Characterization of Copper Resistance Genes from Xanthomonas citri subsp. citri and Xanthomonas alfalfae subsp. citrumelonis

Author:

Behlau Franklin1,Canteros Blanca I.2,Minsavage Gerald V.1,Jones Jeffrey B.1,Graham James H.3

Affiliation:

1. Department of Plant Pathology, University of Florida, Gainesville, Florida 32611

2. Instituto Nacional de Tecnología Agropecuaria, Estación Experimental Agropecuaria, Bella Vista, Corrientes, Argentina

3. Soil and Water Science Department, University of Florida, Lake Alfred, Florida 33850

Abstract

ABSTRACT Copper sprays have been widely used for control of endemic citrus canker caused by Xanthomonas citri subsp. citri in citrus-growing areas for more than 2 decades. Xanthomonas alfalfae subsp. citrumelonis populations were also exposed to frequent sprays of copper for several years as a protective measure against citrus bacterial spot (CBS) in Florida citrus nurseries. Long-term use of these bactericides has led to the development of copper-resistant (Cu r ) strains in both X. citri subsp. citri and X. alfalfae subsp. citrumelonis , resulting in a reduction of disease control. The objectives of this study were to characterize for the first time the genetics of copper resistance in X. citri subsp. citri and X. alfalfae subsp. citrumelonis and to compare these organisms to other Cu r bacteria. Copper resistance determinants from X. citri subsp. citri strain A44(pXccCu2) from Argentina and X. alfalfae subsp. citrumelonis strain 1381(pXacCu2) from Florida were cloned and sequenced. Open reading frames (ORFs) related to the genes copL , copA , copB , copM , copG , copC , copD , and copF were identified in X. citri subsp. citri A44. The same ORFs, except copC and copD , were also present in X. alfalfae subsp. citrumelonis 1381. Transposon mutagenesis of the cloned copper resistance determinants in pXccCu2 revealed that copper resistance in X. citri subsp. citri strain A44 is mostly due to copL , copA , and copB , which are the genes in the cloned cluster with the highest nucleotide homology (≥92%) among different Cu r bacteria.

Publisher

American Society for Microbiology

Subject

Ecology,Applied Microbiology and Biotechnology,Food Science,Biotechnology

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