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Identification and mapping of leaf stem and stripe rust resistance quantitative trait loci and their interactions in durum wheat

机译:硬粒小麦叶片茎和条抗锈性数量性状位点的鉴定定位及其相互作用

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摘要

Leaf rust (Puccinia triticina Eriks.), stripe rust (Puccinia striiformis f. tritici Eriks.) and stem rust (Puccinia graminis f. sp. tritici) cause major production losses in durum wheat (Triticum turgidum L. var. durum). The objective of this research was to identify and map leaf, stripe and stem rust resistance loci from the French cultivar Sachem and Canadian cultivar Strongfield. A doubled haploid population from Sachem/Strongfield and parents were phenotyped for seedling reaction to leaf rust races BBG/BN and BBG/BP and adult plant response was determined in three field rust nurseries near El Batan, Obregon and Toluca, Mexico. Stripe rust response was recorded in 2009 and 2011 nurseries near Toluca and near Njoro, Kenya in 2010. Response to stem rust was recorded in field nurseries near Njoro, Kenya, in 2010 and 2011. Sachem was resistant to leaf, stripe and stem rust. A major leaf rust quantitative trait locus (QTL) was identified on chromosome 7B at Xgwm146 in Sachem. In the same region on 7B, a stripe rust QTL was identified in Strongfield. Leaf and stripe rust QTL around DArT marker wPt3451 were identified on chromosome 1B. On chromosome 2B, a significant leaf rust QTL was detected conferred by Strongfield, and at the same QTL, a Yr gene derived from Sachem conferred resistance. Significant stem rust resistance QTL were detected on chromosome 4B. Consistent interactions among loci for resistance to each rust type across nurseries were detected, especially for leaf rust QTL on 7B. Sachem and Strongfield offer useful sources of rust resistance genes for durum rust breeding.
机译:叶锈病(Puccinia triticina Eriks。),条锈病(Puccinia striiformis f。tritici Eriks。)和茎锈病(Puccinia graminis f.sp.tritici)引起硬质小麦(Triticum turgidum L. var。durum)的主要生产损失。这项研究的目的是鉴定和绘制法国Sachem品种和加拿大Strongfield品种的叶片,条纹和茎部抗锈基因座。对来自萨赫姆/斯特朗菲尔德和亲本的双倍单倍体种群进行表型分析,以分析其对叶锈菌BBG / BN和BBG / BP的幼苗反应,并在墨西哥奥布雷贡和托卢卡的埃尔巴坦附近的三个田间锈病苗圃确定了成年植物的反应。 2009年和2010年在肯尼亚的托卢卡附近和Njoro附近的苗圃中记录了条锈病的响应。2010年和2011年,在肯尼亚的Njoro附近的田间苗圃中记录了对茎锈的响应。Sachem对叶,条和茎锈病有抵抗力。在萨赫姆(Sachem)Xgwm146的7B号染色体上鉴定出主要的叶锈病数量性状基因座(QTL)。在7B的同一区域中,在Strongfield中发现了条锈病QTL。在染色体1B上鉴定了DArT标记wPt3451周围的叶锈病和条锈病QTL。在2B号染色体上,Strongfield赋予了显着的叶锈病QTL,而在同一QTL处,Sachem产生的Yr基因赋予了抗性。在4B号染色体上检测到显着的茎锈病抗性QTL。各个育苗间对每种锈病类型的抗性位点之间的相互作用均得到了检测,尤其是7B上的叶锈病QTL。萨赫姆(Sachem)和斯特朗菲尔德(Strongfield)为杜伦铁锈育种提供了有用的抗锈基因来源。

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