首页> 外文期刊>Genetic Resources and Crop Evolution >Transfer of leaf rust and stripe rust resistance from Aegilops umbellulata Zhuk. to bread wheat (Triticum aestivum L.)
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Transfer of leaf rust and stripe rust resistance from Aegilops umbellulata Zhuk. to bread wheat (Triticum aestivum L.)

机译:伞形草(Aegilops umbellulata Zhuk)叶片抗锈性和条锈性的转移。面包小麦(Triticum aestivum L.)

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Aegilops umbellulata acc. 3732, an excellent source of resistance to major wheat diseases, was used for transferring leaf rust and stripe rust resistance to cultivated wheat. An amphiploid between Ae. umbellulata acc. 3732 and Triticum durum cv. WH890 was crossed with cv. Chinese Spring Ph I to induce homoeologous pairing between Ae. umbellulata and wheat chromosomes. The F was crossed to the susceptible Triticum aestivum cv. 'WL711' and leaf rust and stripe rust resistant plants were selected among the backcross progenies. Homozygous lines were selected and screened against six Puccinia triticina and four Puccinia striiformis f. sp. tritici pathotypes at the seedling stage and a mixture of prevalent pathotypes of both rust pathogens at the adult plant stage. Genomic in situ hybridization in some of the selected introgression lines detected two lines with complete Ae. umbellulata chromosomes. Depending on the rust reactions and allelism tests, the introgression lines could be classified into two groups, comprising of lines with seedling leaf rust resistance gene Lr9 and with new seedling leaf rust and stripe rust resistance genes. Inheritance studies detected an additional adult plant leaf rust resistance gene in one of the introgression lines. A minimum of three putatively new genes--two for leaf rust resistance (LrU1 and LrU2) and one for stripe rust resistance (YrU1) have been introgressed into wheat from Ae. umbellulata. Two lines with no apparent linkage drag have been identified. These lines could serve as sources of resistance to leaf rust and stripe rust in breeding programs.
机译:伞形草3732是抵抗重大小麦疾病的极好来源,可用于将叶锈病和条锈病抗性转移至栽培小麦。 Ae之间的二倍体。伞形公司3732和Triticum durum cv。 WH890与简历混为一谈。中国春季Ph I诱导Ae之间的同源配对。伞形和小麦染色体。 F与易感普通小麦杂交。在回交后代中选择了“ WL711”和抗叶锈病和条锈病植物。选择纯合品系,并针对6个小麦锈菌和4个小麦条锈菌进行筛选。 sp。小麦苗期的三态病原体和成年期两种锈病病原体的流行病原体的混合物。在一些选择的渗入系中的基因组原位杂交检测到两条具有完整Ae的系。伞形染色体。根据锈病​​反应和等位性试验,渗入系可以分为两组,包括具有幼苗叶锈病抗性基因Lr9和具有新的幼苗叶锈病和条锈病抗性基因的系。遗传研究在其中一个渗入系中检测到另外的成年植物叶片防锈基因。至少三个推定的新基因-两个抗叶锈病基因(LrU1和LrU2)和一个抗条锈病基因(YrU1)已从Ae导入小麦。雨伞已经确定了两条没有明显连锁阻力的线。这些品系可以作为育种计划中抗叶锈病和条锈病的来源。

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