Afficher la notice abrégée

hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorSOREL, Maud
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorSVANELLA-DUMAS, Laurence
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorCANDRESSE, Thierry
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorACELIN, Guillaume
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorPITARCH, Anais
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorHOUVENAGHEL, Marie-Christine
hal.structure.identifierBiologie du fruit et pathologie [BFP]
dc.contributor.authorGERMAN-RETANA, Sylvie
dc.date.issued2014
dc.identifier.issn0894-0282
dc.description.abstractEnWe previously showed that allelic genes mo1(1) and mo1(2) used to protect lettuce crops against Lettuce mosaic virus (LMV) correspond to mutant alleles of the gene encoding the eukaryotic translation initiation factor 4E. LMV resistance-breaking determinants map not only to the main potyvirus virulence determinant, a genome-linked viral protein, but also to the C-terminal region of the cylindrical inclusion (CI), with a key role of amino acid at position 621. Here, we show that the propagation of several non-lettuce isolates of LMV in mo1(1) plants is accompanied by a gain of virulence correlated with the presence in the CI C terminus of a serine at position 617 and the accumulation of mutations at positions 602 or 627. Whole-genome sequencing of native and evolved isolates showed that no other mutation could be associated with adaptation to mo1 resistance. Site-directed mutagenesis pinpointed the key role in the virulence of the combination of mutations at positions 602 and 617, in addition to position 621. The impact of these mutations on the fitness of the virus was evaluated, suggesting that the durability of mo1 resistance in the field relies on the fitness cost associated with the resistance-breaking mutations, the nature of the mutations, and their potential antagonistic effects.
dc.language.isoen
dc.publisherAmerican Phytopathological Society
dc.title.enKey Mutations in the Cylindrical Inclusion Involved in <em>Lettuce mosaic virus</em> Adaptation to eIF4E-Mediated Resistance in Lettuce.
dc.typeArticle de revue
dc.identifier.doi10.1094/MPMI-04-14-0111-R
dc.subject.halSciences du Vivant [q-bio]/Autre [q-bio.OT]
bordeaux.journalMolecular Plant-Microbe Interactions
bordeaux.page1014-24
bordeaux.volume27
bordeaux.issue9
bordeaux.peerReviewedoui
hal.identifierhal-02632897
hal.version1
hal.popularnon
hal.audienceInternationale
hal.origin.linkhttps://hal.archives-ouvertes.fr//hal-02632897v1
bordeaux.COinSctx_ver=Z39.88-2004&amp;rft_val_fmt=info:ofi/fmt:kev:mtx:journal&amp;rft.jtitle=Molecular%20Plant-Microbe%20Interactions&amp;rft.date=2014&amp;rft.volume=27&amp;rft.issue=9&amp;rft.spage=1014-24&amp;rft.epage=1014-24&amp;rft.eissn=0894-0282&amp;rft.issn=0894-0282&amp;rft.au=SOREL,%20Maud&amp;SVANELLA-DUMAS,%20Laurence&amp;CANDRESSE,%20Thierry&amp;ACELIN,%20Guillaume&amp;PITARCH,%20Anais&amp;rft.genre=article


Fichier(s) constituant ce document

FichiersTailleFormatVue

Il n'y a pas de fichiers associés à ce document.

Ce document figure dans la(les) collection(s) suivante(s)

Afficher la notice abrégée