首页> 外文期刊>South African Journal of Plant and Soil >Detection of rust resistance in selected Zimbabwean and ICARDA bread wheat (Triticum aestivum) germplasm using conventional and molecular techniques
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Detection of rust resistance in selected Zimbabwean and ICARDA bread wheat (Triticum aestivum) germplasm using conventional and molecular techniques

机译:使用常规和分子技术检测所选津巴布韦和ICARDA面包小麦(Triticum Aestivum)种质的耐防锈性

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摘要

Host resistance is the most effective and economical method to minimise yield losses caused by rusts. The aim of this study was to detect the presence of resistance in 75 wheat genotypes. The presence of the genes Sr2, Sr24, Lr34, Lr37, Lr46 and Lr68was investigated using simple sequence repeat and sequence tagged site markers. Quantitative aspects of resistance to leaf rust were assessed through infection response, disease severity, coefficient of infection (Ci), disease incidence (Dl), leaf tip necrosis (Ltn) and area under disease progress curve (AUDPC) under natural epidemics. Highly significant (p < 0.001) differences were observed among the genotypes for CI, Dl, AUDPC and relative AUDPC (rAUDPC). Twenty genotypes exhibited high levels of adult-plant resistance, showing CI less than 20% and AUDPC less than 300%, with moderately susceptible to susceptible reactions. The most frequently occurring gene was Lr46 (21%), followed by Lr68 (20%), Lr34 (19%), Lr37 (11%), and Sr24 (0%). Selection for Lr34 and Lr46 based on Ltn alone can sometimes be misleading because of its variable expression in different genetic backgrounds. Cultivars grown in Zimbabwe lacked important rust resistance genes.
机译:宿主抗性是最有效且经济的方法,以最大限度地减少生锈引起的产量损失。本研究的目的是检测75个小麦基因型中抗性的存在。使用简单的序列重复和序列标记的位点标记来研究基因SR2,SR24,LR34,LR37,LR46和LR68Was的存在。通过在天然流行病下的感染反应,疾病发生率,疾病进展曲线(AUDPC)下的感染反应,疾病严重程度,感染系数(CI),疾病发病率(DL),叶尖坏死(LTN)和面积进行评估对叶片生锈的抗性的定量方面。在CI,DL,AUDPC和相对AUDPC(RaudPC)的基因型中观察到非常重要(P <0.001)差异。二十个基因型表现出高水平的成人植物抗性,显示出低于20%的CI和低于300%的AUDPC,具有易感反应的适度易感。最常发生的基因是LR46(21%),其次是LR68(20%),LR34(19%),LR37(11%)和SR24(0%)。仅基于LTN的LR34和LR46的选择有时会因其不同遗传背景中的可变表达而产生误导性。在津巴布韦种植的栽培品种缺乏重要的防锈基因。

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