Genomics Spurs Rapid Advances in Our Understanding of the Biology of Vascular Wilt Pathogens in the Genus Verticillium

Author:

Klimes Anna1,Dobinson Katherine F.2,Thomma Bart P.H.J.3,Klosterman Steven J.4

Affiliation:

1. Department of Physical and Biological Sciences, Western New England University, Springfield, Massachusetts 01119;

2. Department of Biology, University of Western Ontario, London, Ontario, Canada N6A 5B7;

3. Laboratory of Phytopathology, Wageningen University, 6700 AA Wageningen, The Netherlands;

4. United States Department of Agriculture-Agricultural Research Service, Salinas, California 93905;

Abstract

The availability of genomic sequences of several Verticillium species triggered an explosion of genome-scale investigations of mechanisms fundamental to the Verticillium life cycle and disease process. Comparative genomics studies have revealed evolutionary mechanisms, such as hybridization and interchromosomal rearrangements, that have shaped these genomes. Functional analyses of a diverse group of genes encoding virulence factors indicate that successful host xylem colonization relies on specific Verticillium responses to various stresses, including nutrient deficiency and host defense–derived oxidative stress. Regulatory pathways that control responses to changes in nutrient availability also appear to positively control resting structure development. Conversely, resting structure development seems to be repressed by pathways, such as those involving effector secretion, which promote responses to host defenses. The genomics-enabled functional characterization of responses to the challenges presented by the xylem environment, accompanied by identification of novel virulence factors, has rapidly expanded our understanding of niche adaptation in Verticillium species.

Publisher

Annual Reviews

Subject

Plant Science

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