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Barley Stem Rust Resistance Genes: Structure and Function

机译:大麦茎锈病抗性基因:结构与功能

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Rusts are biotrophic pathogens that attack many plant species but are particularly destructive on cereal crops. The stem rusts (caused by Puccinia graminis) have historically caused severe crop losses and continue to threaten production today. Barley (Hordeum vulgare L.) breeders have controlled major stem rust epidemics since the 1940s with a single durable resistance gene Rpg1. As new epidemics have threatened, additional resistance genes were identified to counter new rust races, such as the rpg4/Rpg5 complex locus against races QCCJ and TTKSK. To understand how these genes work, we initiated research to clone and characterize them. The Rpg1 gene encodes a unique protein kinase with dual kinase domains, an active kinase, and a pseudokinase. Function of both domains is essential to confer resistance. The rpg4 and Rpg5 genes are closely linked and function coordinately to confer resistance to several wheat (Triticum aestivum L.) stem rust races, including the race TTKSK (also called Ug99) that threatens the world's barley and wheat crops. The Rpg5 gene encodes typical resistance gene domains NBS, LRR, and protein kinase but is unique in that all three domains reside in a single gene, a previously unknown structure among plant disease resistance genes. The rpg4 gene encodes an actin depolymerizing factor that functions in cytoskeleton rearrangement.
机译:锈是生物营养型病原体,会攻击许多植物,但对谷物作物尤其具有破坏性。历史上,茎锈病(由小麦锈菌引起)造成了严重的农作物损失,并继续威胁到今天的生产。自1940年代以来,大麦(Hordeum vulgare L.)育种者已经通过一个单一的持久抗性基因Rpg1控制了主要的茎锈病流行。随着新流行病的威胁,已鉴定出其他抗性基因来对抗新的锈菌种族,例如针对QCCJ和TTKSK种族的rpg4 / Rpg5复杂基因座。为了了解这些基因是如何工作的,我们启动了克隆和表征它们的研究。 Rpg1基因编码具有双激酶结构域,活性激酶和假激酶的独特蛋白激酶。两个域的功能对于赋予抗性都是必不可少的。 rpg4和Rpg5基因紧密联系并协调发挥功能,以赋予对数种小麦(Triticum aestivum L.)茎锈病的抗性,其中包括威胁世界大麦和小麦作物的TTKSK(也称为Ug99)。 Rpg5基因编码典型的抗性基因域NBS,LRR和蛋白激酶,但独特之处在于所有三个域都位于单个基因中,而该基因是植物抗病基因中以前未知的结构。 rpg4基因编码在细胞骨架重排中起作用的肌动蛋白解聚因子。

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