Literature DB >> 24283472

High-density genome-wide association mapping implicates an F-box encoding gene in Medicago truncatula resistance to Aphanomyces euteiches.

Maxime Bonhomme1,2, Olivier André1,2, Yacine Badis1,2, Joëlle Ronfort3, Concetta Burgarella3, Nathalie Chantret3, Jean-Marie Prosperi3, Roman Briskine4, Joann Mudge5, Frédéric Debéllé6, Hélène Navier7, Henri Miteul7, Ahmed Hajri7, Alain Baranger7, Peter Tiffin8, Bernard Dumas1,2, Marie-Laure Pilet-Nayel7, Nevin D Young8,9, Christophe Jacquet1,2.   

Abstract

• The use of quantitative disease resistance (QDR) is a promising strategy for promoting durable resistance to plant pathogens, but genes involved in QDR are largely unknown. To identify genetic components and accelerate improvement of QDR in legumes to the root pathogen Aphanomyces euteiches, we took advantage of both the recently generated massive genomic data for Medicago truncatula and natural variation of this model legume. • A high-density (≈5.1 million single nucleotide polymorphisms (SNPs)) genome-wide association study (GWAS) was performed with both in vitro and glasshouse phenotyping data collected for 179 lines. • GWAS identified several candidate genes and pinpointed two independent major loci on the top of chromosome 3 that were detected in both phenotyping methods. Candidate SNPs in the most significant locus (σ(A)²= 23%) were in the promoter and coding regions of an F-box protein coding gene. Subsequent qRT-PCR and bioinformatic analyses performed on 20 lines demonstrated that resistance is associated with mutations directly affecting the interaction domain of the F-box protein rather than gene expression. • These results refine the position of previously identified QTL to specific candidate genes, suggest potential molecular mechanisms, and identify new loci explaining QDR against A. euteiches.
© 2013 The Authors. New Phytologist © 2013 New Phytologist Trust.

Entities:  

Keywords:  Aphanomyces euteiches; F-box protein; Genome-wide association study; Medicago truncatula; oomycete; partial resistance; root

Mesh:

Substances:

Year:  2013        PMID: 24283472     DOI: 10.1111/nph.12611

Source DB:  PubMed          Journal:  New Phytol        ISSN: 0028-646X            Impact factor:   10.151


  30 in total

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7.  Naturally occurring diversity helps to reveal genes of adaptive importance in legumes.

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10.  Genome-Wide Association Studies of Seed Performance Traits in Response to Heat Stress in Medicago truncatula Uncover MIEL1 as a Regulator of Seed Germination Plasticity.

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