Pilet-Nayel M-L, Prospéri J-M, Hamon C, Lesné A, Lecointe R, Le Goff I, Hervé M, Deniot G, Delalande M, Huguet T, Jacquet C, Baranger A
INRA, Agrocampus Ouest, Université Rennes I, UMR118, Amélioration des Plantes et Biotechnologies Végétales, Plant Genetics and Biotechnology, OUEST-genopole, Domaine de la Motte, BP35327, 35653 Le Rheu, France.
Phytopathology. 2009 Feb;99(2):203-8. doi: 10.1094/PHYTO-99-2-0203.
Aphanomyces euteiches is a major soilborne oomycete pathogen that infects various legume species, including pea and alfalfa. The model legume Medicago truncatula has recently emerged as a valuable genetic system for understanding the genetic basis of resistance to A. euteiches in leguminous crops. The objective of this study was to identify genetic determinants of resistance to a broad host-range pea-infecting strain of A. euteiches in M. truncatula. Two M. truncatula segregating populations of 178 F(5) recombinant inbred lines and 200 F(3) families from the cross F83005.5 (susceptible) x DZA045.5 (resistant) were screened for resistance to A. euteiches. Phenotypic distributions observed suggested a dominant monogenic control of resistance. A major locus associated with resistance to A. euteiches, namely AER1, was mapped by bulk segregant analysis to a terminal end of chromosome 3 in M. truncatula and explained 88% of the phenotypic variation. AER1 was identified in a resistance-gene-rich region, where resistance gene analogs and genes associated with disease resistance phenotypes have been identified. Discovery of AER1 opens up new prospects for improving resistance to A. euteiches in cultivated legumes using a comparative genomics approach.
豌豆疫霉是一种主要的土传卵菌病原体,可感染包括豌豆和苜蓿在内的多种豆科植物。模式豆科植物蒺藜苜蓿最近已成为一种有价值的遗传系统,用于理解豆科作物对豌豆疫霉抗性的遗传基础。本研究的目的是在蒺藜苜蓿中鉴定对广泛寄主范围的感染豌豆的豌豆疫霉菌株抗性的遗传决定因素。对两个蒺藜苜蓿分离群体进行了豌豆疫霉抗性筛选,一个群体有178个F(5)重组自交系,另一个群体有200个来自F83005.5(感病)×DZA045.5(抗病)杂交的F(3)家系。观察到的表型分布表明抗性受显性单基因控制。通过混合分组分析法将一个与豌豆疫霉抗性相关的主要基因座,即AER1,定位到蒺藜苜蓿第3号染色体的末端,该基因座解释了88%的表型变异。AER1在一个富含抗性基因的区域中被鉴定出来,在该区域已鉴定出抗性基因类似物和与抗病表型相关的基因。AER1的发现为利用比较基因组学方法提高栽培豆科植物对豌豆疫霉的抗性开辟了新前景。