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Cloning of the wheat Yr15 resistance gene sheds light on the plant tandem kinase-pseudokinase family

机译:小麦Yr15抗性基因的克隆为植物串联激酶-假激酶家族提供了启示

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摘要

Yellow rust, caused by Puccinia striiformis f. sp. tritici (Pst), is a devastating fungal disease threatening much of global wheat production. Race-specific resistance (R)-genes are used to control rust diseases, but the rapid emergence of virulent Pst races has prompted the search for a more durable resistance. Here, we report the cloning of Yr15, a broad-spectrum R-gene derived from wild emmer wheat, which encodes a putative kinase-pseudokinase protein, designated as wheat tandem kinase 1, comprising a unique R-gene structure in wheat. The existence of a similar gene architecture in 92 putative proteins across the plant kingdom, including the barley RPG1 and a candidate for Ug8, suggests that they are members of a distinct family of plant proteins, termed here tandem kinase-pseudokinases (TKPs). The presence of kinase-pseudokinase structure in both plant TKPs and the animal Janus kinases sheds light on the molecular evolution of immune responses across these two kingdoms.
机译:黄锈病,由条锈菌引起。 sp。 Tritici(Pst)是一种破坏性真菌病,威胁着全球小麦的大部分生产。种族特异性抗性(R)基因用于控制锈病,但是有毒的Pst种族的迅速出现促使人们寻求更持久的抗性。在这里,我们报道了Yr15的克隆,它是一种来自野生Emmer小麦的广谱R基因,其编码一个推定的激酶-假激酶蛋白,称为小麦串联激酶1,其在小麦中具有独特的R基因结构。在整个植物界的92个推定蛋白质中都存在相似的基因结构,包括大麦RPG1和Ug8候选基因,这表明它们是植物蛋白质家族的成员,在这里被称为串联激酶-假激酶(TKP)。植物TKPs和动物Jan​​us激酶中激酶-假激酶结构的存在揭示了跨越这两个王国的免疫应答的分子进化。

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