Transcriptional response of Erwinia amylovora to copper shock: in vivo role of the copA gene.

Begoña Águila-Clares, Luisa F Castiblanco, José Miguel Quesada, Ramón Penyalver, Juan Carbonell, María M López, Ester Marco-Noales, George W Sundin

Journal: Molecular plant pathology 2018;19(1):169-179

PMID: 27862834

Abstract

Fire blight is a devastating plant disease caused by the bacterium Erwinia amylovora, and its control is frequently based on the use of copper-based compounds whose mechanisms of action are not well known. Consequently, in this article, we investigate the response of E. amylovora to copper shock by a whole-genome microarray approach. Transcriptional analyses showed that, in the presence of copper, 23 genes were increased in expression; these genes were classified mainly into the transport and stress functional categories. Among them, the copA gene was strongly induced and regulated in a finely tuned manner by copper. Mutation of copA, soxS, arcB, yjcE, ygcF, yhhQ, galF and EAM_3469 genes revealed that tolerance to copper in E. amylovora can be achieved by complex physiological mechanisms, including: (i) the control of copper homeostasis through, at least, the extrusion of Cu(I) by a P-type ATPase efflux pump CopA; and (ii) the overcoming of copper toxicity caused by oxidative stress by the expression of several reactive oxygen species (ROS)-related genes, including the two major transcriptional factors SoxS and ArcB. Furthermore, complementation analyses demonstrated the important role of copA for copper tolerance in E. amylovora, not only in vitro, but also in inoculated pear shoots.

© 2016 BSPP AND JOHN WILEY & SONS LTD.

Address: Instituto Valenciano de Investigaciones Agrarias Moncada, Centro de Protección Vegetal y Biotecnología, Valencia, 46113, Spain.; Department of Plant, Soil, and Microbial Sciences, Michigan State University, East Lansing, MI, 48824, USA.; Department of Plant, Soil, and Microbial Sciences, Michigan State University, East Lansing, MI, 48824, USA.; Department of Environmental Protection, Estación Experimental del Zaidín, CSIC, Granada, 18008, Spain.; Instituto Valenciano de Investigaciones Agrarias Moncada, Centro de Protección Vegetal y Biotecnología, Valencia, 46113, Spain.; Instituto de Biologia Molecular y Celular de Plantas (IBMCP), University of Valencia, Valencia, Spain.

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