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澳大利亚小麦品种‘库克’(Triticum aestivum 'Cook')对条锈病和叶锈病持久抗性的遗传及数量性状位点分析

Inheritance and QTL analysis of durable resistance to stripe and leaf rusts in an Australian cultivar, Triticum aestivum 'Cook'.

作者信息

Navabi A, Tewari J P, Singh R P, McCallum B, Laroche A, Briggs K G

机构信息

Department of Agricultural, Food, and Nutritional Science, University of Alberta, Edmonton, Canada.

出版信息

Genome. 2005 Feb;48(1):97-107. doi: 10.1139/g04-100.

Abstract

An F4-derived F6 recombinant inbred line population (n = 148) of a cross between the durable stripe (yellow) rust (caused by Puccinia striiformis) and leaf (brown) rust (caused by Puccinia triticina) resistant cultivar, Triticum aestivum 'Cook', and susceptible genotype Avocet-YrA was phenotyped at several locations in Canada and Mexico under artificial epidemics of leaf or stripe rusts and genotyped using amplified fragment length polymorphism (AFLP) and microsatellite markers. Durable adult plant resistance to stripe and leaf rusts in 'Cook' is inherited quantitatively and was based on the additive interaction of linked and (or) pleiotropic slow-rusting genes Lr34 and Yr18 and the temperature-sensitive stripe rust resistance gene, YrCK, with additional genetic factors. Identified QTLs accounted for 18% to 31% of the phenotypic variation in leaf and stripe rust reactions, respectively. In accordance with the high phenotypic associations between leaf and stripe rust resistance, some of the identified QTLs appeared to be linked and (or) pleiotropic for both rusts across tests. Although a QTL was identified on chromosome 7D with significant effects on both rusts at some testing locations, it was not possible to refine the location of Lr34 or Yr18 because of the scarcity of markers in this region. The temperature-sensitive stripe rust resistance response, conditioned by the YrCK gene, significantly contributed to overall resistance to both rusts, indicating that this gene also had pleiotropic effects.

摘要

一个由持久抗条锈病(黄色)(由条形柄锈菌引起)和叶锈病(褐色)(由小麦叶锈菌引起)的普通小麦品种“库克”与感病基因型“Avocet - YrA”杂交产生的F4衍生F6重组自交系群体(n = 148),在加拿大和墨西哥的多个地点,于叶锈病或条锈病的人工流行条件下进行了表型分析,并使用扩增片段长度多态性(AFLP)和微卫星标记进行了基因分型。“库克”对条锈病和叶锈病的持久成株抗性是数量遗传的,基于连锁和(或)多效性慢锈基因Lr34和Yr18以及温度敏感型条锈病抗性基因YrCK与其他遗传因子的加性互作。鉴定出的数量性状位点(QTL)分别占叶锈病和条锈病反应表型变异的18%至31%。根据叶锈病和条锈病抗性之间的高度表型关联,在不同测试中,一些鉴定出的QTL似乎对两种锈病都具有连锁和(或)多效性。尽管在7D染色体上鉴定出一个QTL,在某些测试地点对两种锈病都有显著影响,但由于该区域标记稀少,无法精确确定Lr34或Yr18的位置。由YrCK基因决定的温度敏感型条锈病抗性反应对两种锈病的总体抗性有显著贡献,表明该基因也具有多效性作用。

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