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Functional Conservation of Wheat and Rice Mlo Orthologs in Defense Modulation to the Powdery Mildew Fungus

机译:小麦和水稻Mlo直系同源物在白粉病真菌防御调控中的功能保守性。

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Homologs of barley Mlo are found in syntenic positions in all three genomes of hexaploid bread wheat, Triticum aestivum, and in rice, Oryza sativa. Candidate wheat orthologs, designated TaMlo-A1, TaMlo-B1, and TaMlo-D1, encode three distinct but highly related proteins that are 88% identical to barley MLO and appear to originate from the three diploid ancestral genomes of wheat. TaMlo-B1 and the rice ortholog, OsMlo2, are able to complement powdery mildew-resistant barley mlo mutants at the single-cell level. Overexpression of TaMlo-B1 or barley Mlo leads to super-susceptibility to the appropriate powdery mildew formae speciales in both wild-type barley and wheat. Surprisingly, overexpression of either Mlo or TaMlo-B1 also mediates enhanced fungal development to tested inappropriate formae speciales. These results underline a regulatory role for MLO and its wheat and rice orthologs in a basal defense mechanism that can interfere with forma specialis resistance to powdery mildews.
机译:大麦Mlo的同系物存在于六倍体小麦,小麦和水稻Oryza sativa的所有三个基因组的同基因位置中。候选小麦直系同源基因,命名为TaMlo-A1,TaMlo-B1和TaMlo-D1,编码三种不同但高度相关的蛋白质,与大麦MLO的同源性为88%,似乎起源于小麦的三个二倍体祖先基因组。 TaMlo-B1和水稻直系同源基因OsMlo2能够在单细胞水平上补充抗白粉病的大麦mlo突变体。 TaMlo-B1或大麦Mlo的过表达导致对野生型大麦和小麦中合适的白粉病菌特别敏感。出人意料的是,Mlo或TaMlo-B1的过表达也介导了真菌生长增强,从而测试了不适当的福美特。这些结果强调了MLO及其小麦和水稻直系同源物在基础防御机制中的调控作用,该机制可能会干扰特殊形式对白粉病的抵抗力。

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