TheMaGene for Complete-Spectrum Resistance toMeloidogyneSpecies inPrunusIs a TNL with a Huge Repeated C-Terminal Post-LRR Region

Author:

Claverie Michel1,Dirlewanger Elisabeth1,Bosselut Nathalie1,Van Ghelder Cyril1,Voisin Roger1,Kleinhentz Marc1,Lafargue Bernard1,Abad Pierre1,Rosso Marie-Noëlle1,Chalhoub Boulos1,Esmenjaud Daniel1

Affiliation:

1. INRA, UMR Interactions Biotiques et Santé Végétale INRA 1301, CNRS, UMR CNRS 6243, and Université de Nice Sophia-Antipolis, F–06903 Sophia-Antipolis, France (M.C., N.B., C.V.G., R.V., P.A., M.-N.R., D.E.); INRA, Unité de Recherche sur les Espèces Fruitières, UR 419, F–33883 Villenave d'Ornon cedex, France (E.D., M.K., B.L.); INRA, UMR de Génomique Végétale, UMR INRA 1165, UMR CNRS 8114, and Unive

Abstract

AbstractRoot-knot nematode (RKN) Meloidogyne species are major polyphagous pests of most crops worldwide, and cultivars with durable resistance are urgently needed because of nematicide bans. The Ma gene from the Myrobalan plum (Prunus cerasifera) confers complete-spectrum, heat-stable, and high-level resistance to RKN, which is remarkable in comparison with the Mi-1 gene from tomato (Solanum lycopersicum), the sole RKN resistance gene cloned. We report here the positional cloning and the functional validation of the Ma locus present at the heterozygous state in the P.2175 accession. High-resolution mapping totaling over 3,000 segregants reduced the Ma locus interval to a 32-kb cluster of three Toll/Interleukin1 Receptor-Nucleotide Binding Site-Leucine-Rich Repeat (LRR) genes (TNL1–TNL3), including a pseudogene (TNL2) and a truncated gene (TNL3). The sole complete gene in this interval (TNL1) was validated as Ma, as it conferred the same complete-spectrum and high-level resistance (as in P.2175) using its genomic sequence and native promoter region in Agrobacterium rhizogenes-transformed hairy roots and composite plants. The full-length cDNA (2,048 amino acids) of Ma is the longest of all Resistance genes cloned to date. Its TNL structure is completed by a huge post-LRR (PL) sequence (1,088 amino acids) comprising five repeated carboxyl-terminal PL exons with two conserved motifs. The amino-terminal region (213 amino acids) of the LRR exon is conserved between alleles and contrasts with the high interallelic polymorphisms of its distal region (111 amino acids) and of PL domains. The Ma gene highlights the importance of these uncharacterized PL domains, which may be involved in pathogen recognition through the decoy hypothesis or in nuclear signaling.

Publisher

Oxford University Press (OUP)

Subject

Plant Science,Genetics,Physiology

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