Literature DB >> 17668174

Detection, introgression and localization of genes conferring specific resistance to Leptosphaeria maculans from Brassica rapa into B. napus.

M Leflon1, H Brun, F Eber, R Delourme, M O Lucas, P Vallée, M Ermel, M H Balesdent, A M Chèvre.   

Abstract

Blackleg (stem canker) caused by the fungus Leptosphaeria maculans is one of the most damaging diseases of oilseed rape (Brassica napus). Crop relatives represent a valuable source of "new" resistance genes that could be used to diversify cultivar resistance. B. rapa, one of the progenitors of B. napus, is a potential source of new resistance genes. However, most of the accessions are heterozygous so it is impossible to directly detect the plant genes conferring specific resistance due to the complex patterns of avirulence genes in L. maculans isolates. We developed a strategy to simultaneously characterize and introgress resistance genes from B. rapa, by homologous recombination, into B. napus. One B. rapa plant resistant to one L. maculans isolate was used to produce B. rapa backcross progeny and a resynthesized B. napus plant from which a population of doubled haploid lines was derived after crossing with natural B. napus. We then used molecular analyses and resistance tests on these populations to identify and map the resistance genes and to characterize their introgression from B. rapa into B. napus. Three specific genes conferring resistance to L. maculans (Rlm1, Rlm2 and Rlm7) were identified in B. rapa. Comparisons of genetic maps showed that two of these genes were located on the R7 linkage group, in a region homologous to the region on linkage group N7 in B. napus, where these genes have been reported previously. The results of our study offer new perspectives for gene introgression and cloning in Brassicas.

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Year:  2007        PMID: 17668174     DOI: 10.1007/s00122-007-0616-z

Source DB:  PubMed          Journal:  Theor Appl Genet        ISSN: 0040-5752            Impact factor:   5.574


  20 in total

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2.  Identification of markers linked to disease-resistance genes by bulked segregant analysis: a rapid method to detect markers in specific genomic regions by using segregating populations.

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4.  Complexities of chromosome landing in a highly duplicated genome: toward map-based cloning of a gene controlling blackleg resistance in Brassica napus.

Authors:  Reinhold Mayerhofer; Kris Wilde; Marion Mayerhofer; Derek Lydiate; Vipan K Bansal; Allen G Good; Isobel A P Parkin
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5.  Breakdown of a Brassica rapa subsp. sylvestris Single Dominant Blackleg Resistance Gene in B. napus Rapeseed by Leptosphaeria maculans Field Isolates in Australia.

Authors:  H Li; K Sivasithamparam; M J Barbetti
Journal:  Plant Dis       Date:  2003-06       Impact factor: 4.438

6.  Identification and mapping of a third blackleg resistance locus in Brassica napus derived from B. rapa subsp. sylvestris.

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7.  Genetic Control and Host Range of Avirulence Toward Brassica napus Cultivars Quinta and Jet Neuf in Leptosphaeria maculans.

Authors:  M H Balesdent; A Attard; D Ansan-Melayah; R Delourme; M Renard; T Rouxel
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8.  Analysis of Leptosphaeria maculans Race Structure in a Worldwide Collection of Isolates.

Authors:  M H Balesdent; M J Barbetti; Hua Li; K Sivasithamparam; L Gout; T Rouxel
Journal:  Phytopathology       Date:  2005-09       Impact factor: 4.025

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Authors:  M H Balesdent; A Attard; M L Kühn; T Rouxel
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2.  Identification and mapping of a novel blackleg resistance locus LepR4 in the progenies from Brassica napus × B. rapa subsp. sylvestris.

Authors:  Fengqun Yu; Richard K Gugel; H Randy Kutcher; Gary Peng; S Roger Rimmer
Journal:  Theor Appl Genet       Date:  2012-06-26       Impact factor: 5.699

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5.  A new family of structurally conserved fungal effectors displays epistatic interactions with plant resistance proteins.

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6.  Genetic regulation of meiotic cross-overs between related genomes in Brassica napus haploids and hybrids.

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Review 7.  Using wild relatives and related species to build climate resilience in Brassica crops.

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8.  Co-localisation of the blackleg resistance genes Rlm2 and LepR3 on Brassica napus chromosome A10.

Authors:  Nicholas J Larkan; Derek J Lydiate; Fengqun Yu; S Roger Rimmer; M Hossein Borhan
Journal:  BMC Plant Biol       Date:  2014-12-31       Impact factor: 4.215

9.  Multi-environment QTL studies suggest a role for cysteine-rich protein kinase genes in quantitative resistance to blackleg disease in Brassica napus.

Authors:  Nicholas J Larkan; Harsh Raman; Derek J Lydiate; Stephen J Robinson; Fengqun Yu; Denise M Barbulescu; Rosy Raman; David J Luckett; Wayne Burton; Neil Wratten; Philip A Salisbury; S Roger Rimmer; M Hossein Borhan
Journal:  BMC Plant Biol       Date:  2016-08-24       Impact factor: 4.215

10.  Genetic and Epigenetic Alterations of Brassica nigra Introgression Lines from Somatic Hybridization: A Resource for Cauliflower Improvement.

Authors:  Gui-Xiang Wang; Jing Lv; Jie Zhang; Shuo Han; Mei Zong; Ning Guo; Xing-Ying Zeng; Yue-Yun Zhang; You-Ping Wang; Fan Liu
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