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首页> 外文期刊>Journal of Applied Genetics >Postulation of rust resistance genes in Nordic spring wheat genotypes and identification of widely effective sources of resistance against the Australian rust flora
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Postulation of rust resistance genes in Nordic spring wheat genotypes and identification of widely effective sources of resistance against the Australian rust flora

机译:北欧春小麦基因型中的抗锈基因的推测以及对澳大利亚锈菌区系的广泛有效抗性来源的鉴定

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Wild relatives, landraces and cultivars from different geographical regions have been demonstrated as the sources of genetic variation for resistance to rust diseases. This study involved assessment of diversity for resistance to three rust diseases among a set of Nordic spring wheat cultivars. These cultivars were tested at the seedling stage against several pathotypes of three rust pathogens in the greenhouse. All stage stem rust resistance genes Sr7b, Sr8a, Sr12, Sr15, Sr17, Sr23 and Sr30, and leaf rust resistance genes Lr1, Lr3a, Lr13, Lr14a, Lr16 and Lr20 were postulated either singly or in different combinations among these cultivars. A high proportion of cultivars were identified to carry linked rust resistance genes Sr15 and Lr20. Although 51 cultivars showed variation against Puccinia striiformis f. sp. tritici (Pst) pathotypes used in this study, results were not clearly contrasting to enable postulation of stripe rust resistance genes in these genotypes. Stripe rust resistance gene Yr27 was postulated in four cultivars and Yr1 was present in cultivar Zebra. Cultivar Tjalve produced low stripe rust response against all Pst pathotypes indicating the presence either of a widely effective resistance gene or combination of genes with compensating pathogenic specificities. Several cultivars carried moderate to high level of APR to leaf rust and stripe rust. Seedling stem rust susceptible cultivar Aston exhibited moderately resistant to moderately susceptible response, whereas other cultivars belonging to this class were rated moderately susceptible or higher. Molecular markers linked with APR genes Yr48, Lr34/Yr18/Sr57, Lr68 and Sr2 detected the presence of these genes in some genotypes.
机译:来自不同地理区域的野生近缘种,地方品种和栽培品种已被证明是抵抗锈病的遗传变异来源。这项研究涉及评估一组北欧春小麦品种对三种锈病的抗性多样性。在苗期对这些品种的温室中三种锈病病原体的几种病原体进行了测试。这些品种单独或以不同组合假定了所有阶段的茎锈病抗性基因Sr7b,Sr8a,Sr12,Sr15,Sr17,Sr23和Sr30,以及叶锈病抗性基因Lr1,Lr3a,Lr13,Lr14a,Lr16和Lr20。鉴定出高比例的品种带有连锁的抗锈基因Sr15和Lr20。尽管有51个品种对条锈菌(Puccinia striiformis f)有变异。 sp。本研究中使用的小麦(Pst)致病型,结果与这些基因型中的条锈病抗性基因的假定没有明显的对比。条纹锈病抗性基因Yr27被假定在四个品种中,Yr1存在于斑马品种中。品种Tjalve对所有Pst病态型产生的条纹锈病响应低,表明存在广泛有效的抗性基因或具有补偿病原特异性的基因组合。几个品种对叶锈病和条锈病的APR水平中等至较高。易受幼苗锈病影响的品种Aston对中敏感反应具有中等抵抗力,而属于该类别的其他品种被评为中敏感或更高。与APR基因Yr48,Lr34 / Yr18 / Sr57,Lr68和Sr2相关的分子标记检测到了某些基因型中这些基因的存在。

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