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豌豆中新的一致 QTL 与多种法国和美国环境中对 Aphanomyces euteiches 的部分抗性相关。

New consistent QTL in pea associated with partial resistance to Aphanomyces euteiches in multiple French and American environments.

机构信息

Université de Rennes 1, Amélioration des Plantes et Biotechnologies Végétales, Rennes, France.

出版信息

Theor Appl Genet. 2011 Jul;123(2):261-81. doi: 10.1007/s00122-011-1582-z. Epub 2011 Apr 11.

DOI:10.1007/s00122-011-1582-z
PMID:21479935
Abstract

Partial resistances, often controlled by quantitative trait loci (QTL), are considered to be more durable than monogenic resistances. Therefore, a precursor to developing efficient breeding programs for polygenic resistance to pathogens should be a greater understanding of genetic diversity and stability of resistance QTL in plants. In this study, we deciphered the diversity and stability of resistance QTL to Aphanomyces euteiches in pea towards pathogen variability, environments and scoring criteria, from two new sources of partial resistance (PI 180693 and 552), effective in French and USA infested fields. Two mapping populations of 178 recombinant inbred lines each, derived from crosses between 552 or PI 180693 (partially resistant) and Baccara (susceptible), were used to identify QTL for Aphanomyces root rot resistance in controlled and in multiple French and USA field conditions using several resistance criteria. We identified a total of 135 additive-effect QTL corresponding to 23 genomic regions and 13 significant epistatic interactions associated with partial resistance to A. euteiches in pea. Among the 23 additive-effect genomic regions identified, five were consistently detected, and showed highly stable effects towards A. euteiches strains, environments, resistance criteria, condition tests and RIL populations studied. These results confirm the complexity of inheritance of partial resistance to A. euteiches in pea and provide good bases for the choice of consistent QTL to use in marker-assisted selection schemes to increase current levels of resistance to A. euteiches in pea breeding programs.

摘要

部分抗性,通常由数量性状位点 (QTL) 控制,被认为比单基因抗性更持久。因此,开发针对病原体多基因抗性的有效育种计划的前提是,应更好地了解植物中抗性 QTL 的遗传多样性和稳定性。在这项研究中,我们从两个新的部分抗性来源(PI 180693 和 552)中破译了豌豆对 Aphanomyces euteiches 的抗性 QTL 的多样性和稳定性,这两个来源在法国和美国受感染的田间具有抗性。使用几种抗性标准,从 552 或 PI 180693(部分抗性)和 Baccara(易感)之间的杂交中衍生出的两个包含 178 个重组自交系的作图群体,用于在受控和多个法国和美国田间条件下鉴定对 Aphanomyces 根腐病的抗性 QTL。我们总共鉴定了 135 个加性效应 QTL,对应于 23 个基因组区域和 13 个与豌豆对 A. euteiches 的部分抗性相关的显著上位性互作。在所鉴定的 23 个加性效应基因组区域中,有五个被一致检测到,并且对 A. euteiches 菌株、环境、抗性标准、条件测试和研究的 RIL 群体表现出高度稳定的效应。这些结果证实了豌豆对 A. euteiches 的部分抗性的遗传复杂性,并为选择一致的 QTL 提供了良好的基础,以用于标记辅助选择方案,从而提高豌豆育种计划中对 A. euteiches 的现有抗性水平。

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