首页> 美国卫生研究院文献>Proceedings of the National Academy of Sciences of the United States of America >Construction of chimeric alleles with altered specificity at the b incompatibility locus of Ustilago maydis.
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Construction of chimeric alleles with altered specificity at the b incompatibility locus of Ustilago maydis.

机译:在Us草的b不相容位点具有改变的特异性的嵌合等位基因的构建。

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摘要

Multiallelic incompatibility systems found in many fungi and plants function to limit inbreeding by mediating self versus nonself recognition. The plant pathogenic fungus Ustilago maydis has a locus called b that governs incompatibility. Two multiallelic genes, bE and bW, are present at the b locus. Fusion of haploid strains carrying different alleles at bE and bW establishes an infectious dikaryon capable of pathogenesis on maize (Zea mays). Cells carrying a single type of b locus, whether haploid or dikaryotic, are nonpathogenic. To identify sequences within the bE gene that determine allelic specificity, targeted gene replacement was employed to produce a series of chimeras between the b1E and b2E alleles. Incompatibility tests with strains carrying the chimeric alleles identified a 30- to 48-amino acid region responsible for specificity. Suprisingly, the chimeras with recombination points within this region had a specificity different from both parent alleles. Overall, these results define an important domain in bE involved in self versus nonself recognition.
机译:在许多真菌和植物中发现的多等位基因不相容系统通过介导自我识别与非自我识别来限制近交繁殖。植物病原真菌Ustilago maydis具有一个称为b的基因座,它控制着不相容性。 b位点存在两个多等位基因bE和bW。在bE和bW处携带不同等位基因的单倍体菌株的融合建立了一种能够在玉米上致病的传染性双核体。携带单一类型b位点(单倍体或双核)的细胞是非致病性的。为了鉴定确定等位基因特异性的bE基因内的序列,采用靶向基因置换在b1E和b2E等位基因之间产生一系列嵌合体。与携带嵌合等位基因的菌株的不相容性测试确定了负责特异性的30至48个氨基酸区域。令人惊讶地,在该区域内具有重组点的嵌合体具有不同于两个亲本等位基因的特异性。总体而言,这些结果定义了自我识别与非自我识别中涉及的重要情感领域。

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