Natural variation of potato allene oxide synthase 2 causes differential levels of jasmonates and pathogen resistance in Arabidopsis.

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Version: Final published version
License: CC BY-NC 4.0
Serval ID
serval:BIB_48207EA64800
Type
Article: article from journal or magazin.
Collection
Publications
Title
Natural variation of potato allene oxide synthase 2 causes differential levels of jasmonates and pathogen resistance in Arabidopsis.
Journal
Planta
Author(s)
Pajerowska-Mukhtar K.M., Mukhtar M.S., Guex N., Halim V.A., Rosahl S., Somssich I.E., Gebhardt C.
ISSN
0032-0935 (Print)
ISSN-L
0032-0935
Publication state
Published
Issued date
07/2008
Peer-reviewed
Oui
Volume
228
Number
2
Pages
293-306
Language
english
Notes
Publication types: Journal Article ; Research Support, Non-U.S. Gov't
Publication Status: ppublish
Abstract
Natural variation of plant pathogen resistance is often quantitative. This type of resistance can be genetically dissected in quantitative resistance loci (QRL). To unravel the molecular basis of QRL in potato (Solanum tuberosum), we employed the model plant Arabidopsis thaliana for functional analysis of natural variants of potato allene oxide synthase 2 (StAOS2). StAOS2 is a candidate gene for QRL on potato chromosome XI against the oömycete Phytophthora infestans causing late blight, and the bacterium Erwinia carotovora ssp. atroseptica causing stem black leg and tuber soft rot, both devastating diseases in potato cultivation. StAOS2 encodes a cytochrome P450 enzyme that is essential for biosynthesis of the defense signaling molecule jasmonic acid. Allele non-specific dsRNAi-mediated silencing of StAOS2 in potato drastically reduced jasmonic acid production and compromised quantitative late blight resistance. Five natural StAOS2 alleles were expressed in the null Arabidopsis aos mutant under control of the Arabidopsis AOS promoter and tested for differential complementation phenotypes. The aos mutant phenotypes evaluated were lack of jasmonates, male sterility and susceptibility to Erwinia carotovora ssp. carotovora. StAOS2 alleles that were associated with increased disease resistance in potato complemented all aos mutant phenotypes better than StAOS2 alleles associated with increased susceptibility. First structure models of 'quantitative resistant' versus 'quantitative susceptible' StAOS2 alleles suggested potential mechanisms for their differential activity. Our results demonstrate how a candidate gene approach in combination with using the homologous Arabidopsis mutant as functional reporter can help to dissect the molecular basis of complex traits in non model crop plants.
Keywords
Alleles, Amino Acid Sequence, Arabidopsis/immunology, Arabidopsis/metabolism, Arabidopsis/microbiology, Cyclopentanes/metabolism, Genetic Complementation Test, Genetic Variation, Host-Pathogen Interactions, Intramolecular Oxidoreductases/genetics, Intramolecular Oxidoreductases/metabolism, Models, Molecular, Molecular Sequence Data, Mutagenesis, Insertional, Oxylipins/metabolism, Pectobacterium carotovorum/physiology, Plants, Genetically Modified/immunology, Plants, Genetically Modified/metabolism, Plants, Genetically Modified/microbiology, Solanum tuberosum/enzymology, Solanum tuberosum/genetics
Pubmed
Web of science
Open Access
Yes
Create date
29/01/2021 16:25
Last modification date
29/04/2021 18:53
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