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Evolution of copper resistance in the kiwifruit pathogen P seudomonas syringae pv. actinidiae through acquisition of integrative conjugative elements and plasmids

Elena Colombi; Christina Straub; Sven Künzel; Matthew D. Templeton; Honour C. McCann; Paul B. Rainey
Environmental Microbiology · Vol. 19, Issue 2 · pp. 819-832 · 2017

Abstract

Summary Horizontal gene transfer can precipitate rapid evolutionary change. In 2010 the global pandemic of kiwifruit canker disease caused by Pseudomonas syringae pv. actinidiae ( Psa ) reached New Zealand. At the time of introduction, the single clone responsible for the outbreak was sensitive to copper, however, analysis of a sample of isolates taken in 2015 and 2016 showed that a quarter were copper resistant. Genome sequences of seven strains showed that copper resistance – comprising czc / cusABC and copABCD systems – along with resistance to arsenic and cadmium, was acquired via uptake of integrative conjugative elements (ICEs), but also plasmids. Comparative analysis showed ICEs to have a mosaic structure, with one being a tripartite arrangement of two different ICEs and a plasmid that were isolated in 1921 (USA), 1968 (NZ) and 1988 (Japan), from P. syringae pathogens of millet, wheat and kiwifruit respectively. Two of the Psa ICEs were nearly identical to two ICEs isolated from kiwifruit leaf colonists prior to the introduction of Psa into NZ. Additionally, we show ICE transfer in vitro and in planta , analyze fitness consequences of ICE carriage, capture the de novo formation of novel recombinant ICEs, and explore ICE host‐range.

Bibliographic Information

JournalEnvironmental Microbiology
PublisherWiley
Publication Date2017-02-01
Publication Year2017
Volume19
Issue2
Pages819-832
Document TypeJournal Article
Print ISSN1462-2912
eISSN1462-2920
DOI10.1111/1462-2920.13662
SubjectMicrobial Ecology

Access Information

NARA Access Coverage1999-01-01~Current
Journal Homepagehttps://onlinelibrary.wiley.com/loi/14622920
Publisher PageOpen Publisher Page
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