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Independent evolution of functional Pm3 resistance genes in wild tetraploid wheat and domesticated bread wheat

机译:四倍体野生小麦和家制面包小麦中功能性Pm3抗性基因的独立进化

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摘要

The Pm3 alleles of cultivated bread wheat confer gene for gene resistance to the powdery mildew fungus. They represent a particular case of plant disease resistance gene evolution, because of their recent origin and possible evolution after the formation of hexaploid wheat. The Pm3 locus is conserved in tetraploid wheat, thereby allowing the comparative evolutionary study of the same resistance locus in a domesticated species and in one of its wild ancestors. We have identified 61 Pm3 allelic sequences from wild and domesticated tetraploid wheat subspecies. The Pm3 sequences corresponded to 24 different haplotypes. They showed low sequence diversity, differing by only a few polymorphic sequence blocks that were further reshuffled between alleles by gene conversion and recombination. Polymorphic sequence blocks are different from the blocks found in functional Pm3 alleles of hexaploid wheat, indicating an independent evolution of the Pm3 loci in the two species. A new functional gene was identified in a wild wheat accession from Syria. This gene, Pm3k, conferred intermediate race-specific resistance to powdery mildew, and consists of a mosaic of gene segments derived from non-functional alleles. This demonstrates that Pm3-based resistance is not very frequent in wild tetraploid wheat, and that the evolution of functional resistance genes occurred independently in wild tetraploid and bread wheat. The Pm3 sequence variability and geographic distribution indicated that diversity was higher in wild emmer wheat from the Levant area, compared with the accessions from Turkey. Further screens for Pm3 functional genes in wild wheat should therefore focus on accessions from the Levant region.
机译:栽培面包小麦的Pm3等位基因赋予了对白粉病真菌的基因抗性。它们代表植物抗病基因进化的一个特例,因为它们的起源近来以及六倍体小麦形成后可能的进化。 Pm3基因座在四倍体小麦中是保守的,因此可以对驯化物种及其野生祖先之一中相同抗性基因座进行比较进化研究。我们从野生和驯养的四倍体小麦亚种中鉴定出61个Pm3等位基因序列。 Pm3序列对应于24种不同的单倍型。他们显示出低的序列多样性,仅相差几个多态性序列块,这些序列通过基因转化和重组在等位基因之间进一步改组。多态性序列块不同于六倍体小麦的功能性Pm3等位基因中发现的块,表明这两个物种中Pm3基因座的独立进化。在叙利亚的一个野生小麦中鉴定了一个新的功能基因。该基因Pm3k赋予了中等种族对白粉病的特异性抗性,由源自非功能性等位基因的基因片段组成。这证明基于Pm3的抗性在野生四倍体小麦中不是很常见,并且功能抗性基因的进化独立于野生四倍体和面包小麦中发生。 Pm3序列的变异性和地理分布表明,与来自土耳其的种相比,来自黎凡特地区的野生Emmer小麦的多样性更高。因此,进一步筛选野生小麦中Pm3功能基因的重点应放在黎凡特地区。

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