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首页> 外文期刊>Scientific reports. >Brachypodium distachyon T-DNA insertion lines: a model pathosystem to study nonhost resistance to wheat stripe rust
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Brachypodium distachyon T-DNA insertion lines: a model pathosystem to study nonhost resistance to wheat stripe rust

机译:BroChypodium distachyon T-DNA插入线:研究小麦条纹锈病的非健康抗性的模型

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Wheat stripe rust, caused by Puccinia striiformis f. sp. tritici (PST), is one of the most destructive diseases and can cause severe yield losses in many regions of the world. Because of the large size and complexity of wheat genome, it is difficult to study the molecular mechanism of interaction between wheat and PST. Brachypodium distachyon has become a model system for temperate grasses' functional genomics research. The phenotypic evaluation showed that the response of Brachypodium distachyon to PST was nonhost resistance (NHR), which allowed us to present this plant-pathogen system as a model to explore the immune response and the molecular mechanism underlying wheat and PST. Here we reported the generation of about 7,000 T-DNA insertion lines based on a highly efficient Agrobacterium-mediated transformation system. Hundreds of mutants either more susceptible or more resistant to PST than that of the wild type Bd21 were obtained. The three putative target genes, Bradi5g17540, BdMYB102 and Bradi5g11590, of three T-DNA insertion mutants could be involved in NHR of Brachypodium distachyon to wheat stripe rust. The systemic pathologic study of this T-DNA mutants would broaden our knowledge of NHR, and assist in breeding wheat cultivars with durable resistance.
机译:小麦条纹锈,由Puccinia striformis f引起。 sp。 Tritici(PST)是最具破坏性的疾病之一,可能导致世界许多地区的严重产量损失。由于小麦基因组的大尺寸和复杂性,因此难以研究小麦和PST之间的相互作用的分子机制。 BroChypodium distachyon已成为温带草型功能基因组学研究的模型系统。表型评价表明,汽油型蒸馏菌至PST的响应是非强抗性(NHR),其使我们将该植物 - 病原体系统作为模型探讨小麦和PST下面的分子机制。在这里,我们报告了基于高效的农杆菌介导的转化系统产生了大约7,000个T-DNA插入线的产生。获得数百个突变体,比获得比野生型BD21更敏感或更耐受。三个推定的靶基因,BRADI5G17540,BDMYB102和BRADI5G11590,其中三个T-DNA插入突变体可参与丘脑肌肌的NHR到小麦条纹生锈。该T-DNA突变体的全身病理研究将扩大我们对NHR的了解,并有助于培育具有耐用性的小麦品种。

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