Title
Genome sequencing and mapping reveal loss of heterozygosity as a mechanism for rapid adaptation in the vegetable pathogen Phytophthora capsici
Date Issued
01 October 2012
Access level
open access
Resource Type
journal article
Author(s)
Lamour K.H.
Mudge J.
Gobena D.
Schmutz J.
Kuo A.
Miller N.A.
Rice B.J.
Raffaele S.
Cano L.M.
Bharti A.K.
Donahoo R.S.
Finley S.
Huitema E.
Hulvey J.
Platt D.
Salamov A.
Savidor A.
Sharma R.
Stam R.
Storey D.
Thines M.
Win J.
Haas B.J.
Dinwiddie D.L.
Jenkins J.
Knight J.R.
Affourtit J.P.
Han C.S.
Chertkov O.
Lindquist E.A.
Detter C.
Grigoriev I.V.
Kamoun S.
Kingsmore S.F.
Pioneer Hi-Bred International
Abstract
The oomycete vegetable pathogen Phytophthora capsici has shown remarkable adaptation to fungicides and new hosts. Like other members of this destructive genus, P. capsici has an explosive epidemiology, rapidly producing massive numbers of asexual spores on infected hosts. In addition, P. capsici can remain dormant for years as sexually recombined oospores, making it difficult to produce crops at infested sites, and allowing outcrossing populations to maintain significant genetic variation. Genome sequencing, development of a high-density genetic map, and integrative genomic or genetic characterization of P. capsici field isolates and intercross progeny revealed significant mitotic loss of heterozygosity (LOH) in diverse isolates. LOH was detected in clonally propagated field isolates and sexual progeny, cumulatively affecting >30% of the genome. LOH altered genotypes for more than 11,000 single-nucleotide variant sites and showed a strong association with changes in mating type and pathogenicity. Overall, it appears that LOH may provide a rapid mechanism for fixing alleles and may be an important component of adaptability for P. capsici. © 2012 The American Phytopathological Society.
Start page
1350
End page
1360
Volume
25
Issue
10
Language
English
OCDE Knowledge area
Genética, Herencia Ciencias de las plantas, Botánica
Scopus EID
2-s2.0-84865734218
PubMed ID
Source
Molecular Plant-Microbe Interactions
ISSN of the container
08940282
Sponsor(s)
National Center for Research Resources - P20RR016480.
Sources of information: Directorio de Producción Científica Scopus