Literature DB >> 19769576

Two different CC-NBS-LRR genes are required for Lr10-mediated leaf rust resistance in tetraploid and hexaploid wheat.

Caroline Loutre1, Thomas Wicker, Silvia Travella, Paolo Galli, Steve Scofield, Tzion Fahima, Catherine Feuillet, Beat Keller.   

Abstract

Comparative study of disease resistance genes in crop plants and their relatives provides insight on resistance gene function, evolution and diversity. Here, we studied the allelic diversity of the Lr10 leaf rust resistance gene, a CC-NBS-LRR coding gene originally isolated from hexaploid wheat, in 20 diploid and tetraploid wheat lines. Besides a gene in the tetraploid wheat variety 'Altar' that is identical to the hexaploid wheat Lr10, two additional, functional resistance alleles showing sequence diversity were identified by virus-induced gene silencing in tetraploid wheat lines. In contrast to most described NBS-LRR proteins, the N-terminal CC domain of LR10 was found to be under strong diversifying selection. A second NBS-LRR gene at the Lr10 locus, RGA2, was shown through silencing to be essential for Lr10 function. Interestingly, RGA2 showed much less sequence diversity than Lr10. These data demonstrate allelic diversity of functional genes at the Lr10 locus in tetraploid wheat, and these new genes can now be analyzed for agronomic relevance. Lr10-based resistance is highly unusual both in its dependence on two, only distantly, related CC-NBS-LRR proteins, as well as in the pattern of diversifying selection in the N-terminal domain. This indicates a new and complex molecular mechanism of pathogen detection and signal transduction.

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Year:  2009        PMID: 19769576     DOI: 10.1111/j.1365-313X.2009.04024.x

Source DB:  PubMed          Journal:  Plant J        ISSN: 0960-7412            Impact factor:   6.417


  49 in total

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Authors:  Peter N Dodds; John P Rathjen
Journal:  Nat Rev Genet       Date:  2010-06-29       Impact factor: 53.242

2.  Characterization of novel wheat NBS domain-containing sequences and their utilization, in silico, for genome-scale R-gene mining.

Authors:  Dhia Bouktila; Yosra Habachi-Houimli; Yosra Khalfallah; Maha Mezghani-Khemakhem; Mohamed Makni; Hanem Makni
Journal:  Mol Genet Genomics       Date:  2014-03-18       Impact factor: 3.291

Review 3.  NB-LRR proteins: pairs, pieces, perception, partners, and pathways.

Authors:  Timothy K Eitas; Jeffery L Dangl
Journal:  Curr Opin Plant Biol       Date:  2010-05-17       Impact factor: 7.834

4.  The NB-LRR proteins RGA4 and RGA5 interact functionally and physically to confer disease resistance.

Authors:  Stella Césari; Hiroyuki Kanzaki; Tadashi Fujiwara; Maud Bernoux; Véronique Chalvon; Yoji Kawano; Ko Shimamoto; Peter Dodds; Ryohei Terauchi; Thomas Kroj
Journal:  EMBO J       Date:  2014-07-14       Impact factor: 11.598

5.  The rice resistance protein pair RGA4/RGA5 recognizes the Magnaporthe oryzae effectors AVR-Pia and AVR1-CO39 by direct binding.

Authors:  Stella Cesari; Gaëtan Thilliez; Cécile Ribot; Véronique Chalvon; Corinne Michel; Alain Jauneau; Susana Rivas; Ludovic Alaux; Hiroyuki Kanzaki; Yudai Okuyama; Jean-Benoit Morel; Elisabeth Fournier; Didier Tharreau; Ryohei Terauchi; Thomas Kroj
Journal:  Plant Cell       Date:  2013-04-02       Impact factor: 11.277

6.  Host-induced gene silencing of wheat leaf rust fungus Puccinia triticina pathogenicity genes mediated by the Barley stripe mosaic virus.

Authors:  Vinay Panwar; Brent McCallum; Guus Bakkeren
Journal:  Plant Mol Biol       Date:  2013-02-17       Impact factor: 4.076

7.  The Pik-p resistance to Magnaporthe oryzae in rice is mediated by a pair of closely linked CC-NBS-LRR genes.

Authors:  Bin Yuan; Chun Zhai; Wenjuan Wang; Xiaoshan Zeng; Xiaoke Xu; Hanqiao Hu; Fei Lin; Ling Wang; Qinghua Pan
Journal:  Theor Appl Genet       Date:  2010-12-12       Impact factor: 5.699

8.  Haplotype variability and identification of new functional alleles at the Rdg2a leaf stripe resistance gene locus.

Authors:  Chiara Biselli; Simona Urso; Gianni Tacconi; Burkhard Steuernagel; Daniela Schulte; Alberto Gianinetti; Paolo Bagnaresi; Nils Stein; Luigi Cattivelli; Giampiero Valè
Journal:  Theor Appl Genet       Date:  2013-03-15       Impact factor: 5.699

9.  Comparative gene expression analysis of susceptible and resistant near-isogenic lines in common wheat infected by Puccinia triticina.

Authors:  Alagu Manickavelu; Kanako Kawaura; Kazuko Oishi; Tadasu Shin-I; Yuji Kohara; Nabila Yahiaoui; Beat Keller; Ayako Suzuki; Kentaro Yano; Yasunari Ogihara
Journal:  DNA Res       Date:  2010-04-01       Impact factor: 4.458

10.  The NLR-Annotator Tool Enables Annotation of the Intracellular Immune Receptor Repertoire.

Authors:  Burkhard Steuernagel; Kamil Witek; Simon G Krattinger; Ricardo H Ramirez-Gonzalez; Henk-Jan Schoonbeek; Guotai Yu; Erin Baggs; Agnieszka I Witek; Inderjit Yadav; Ksenia V Krasileva; Jonathan D G Jones; Cristobal Uauy; Beat Keller; Christopher J Ridout; Brande B H Wulff
Journal:  Plant Physiol       Date:  2020-03-17       Impact factor: 8.340

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