Magnaporthe grisea causes the most damaging fungal disease of rice, blast. Resistant rice cultivars are typically dependent on the presence of one, or a few, '/> The avirulence gene AVR2-MARA of the pathogenic fungus Magnaporthe grisea.
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The avirulence gene AVR2-MARA of the pathogenic fungus Magnaporthe grisea.

机译:致病性真菌稻瘟病菌Magnaporthe的无毒基因AVR2-MARA。

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摘要

'The ascomycetal fungus Magnaporthe grisea causes the most damaging fungal disease of rice, blast. Resistant rice cultivars are typically dependent on the presence of one, or a few, major genes that are effective only toward particular M. grisea isolates. These isolates have avirulence genes that correspond to specific rice resistance genes, in a gene-for-gene relationship. Results presented here show the genetic identification of AVR2-MARA, a M. grisea a gene that confers avirulence toward the rice cultivar Maratelli. Two techniques were used for determining the chromosomal location of AVR2-MARA, restriction fragment length polymorphism analysis (RFLP), and bulked segregant analysis. Through RFLP analysis AVR2-MARA was mapped to Chromosome 7, between markers cos196 and cos209. Bacterial Artificial Chromosome (BAC) clones, as well as cosmids, were utilized in chromosome walking to the locus. Walks were initiated from markers on both sides of the locus, allowing the identification of sequences that were inseparable from AVR2-MARA. However, I was unable to clone the complete locus. In contrast, avr2-MARA , the virulent locus, was isolated from the virulent parental strain O-135. Sequence analysis of markers inseparable from the AVR2-MARA locus showed a higher AT content than typically observed in the M. grisea genome. Sequence analysis of a fragment inseparable from the AVR2-MARA locus also revealed a putative open-reading-frame (ORF) with significant homology to AVR-Pita.; During this study I found that the segregation of avirulence on Maratelli corresponded with the segregation of avirulence towards the rice cultivars M-103 and M-201. AVR-M201, conferring avirulence toward the rice cultivar M-201, was identified several years ago (Valent et al. 1991), but never mapped. In our mapping cross, consisting of 65 progeny, AVR2-MARA and AVR-M201 are inseparable. Furthermore, we isolated two virulent mutants of AVR2-MARA via UV mutagenesis and both had also gained virulence on cultivars M-103 and M-201. This suggests that AVR2-MARA, AVR-M201 (and AVR-M103) are the same avirulence gene. Because AVR2-MARA originated in a finger millet isolate, and confers avirulence toward several different rice cultivars, it may represent a host-species-specificity factor. Such rice cultivars may be guarded from infection by finger millet isolates due to recognition of the AVR2-MARA gene product.
机译:子囊真菌 Magnaporthe grisea 引起稻瘟病最具破坏性的真菌病。抗性水稻品种通常取决于仅对特定的有效的一种或几种主要基因的存在。稻瘟病菌。这些分离株具有无害基因,以基因对基因的关系对应于特定的水稻抗性基因。此处显示的结果显示了 AVR2-MARA M)的遗传鉴定。 grisea 基因赋予水稻品种Maratelli无毒力。两种技术分别用于确定 AVR2-MARA 的染色体位置,限制性片段长度多态性分析(RFLP)和大量分离物分析。通过RFLP分析,将 AVR2-MARA 映射到染色体7,位于标记cos196和cos209之间。细菌人工染色体(BAC)克隆以及粘粒被用于染色体向位点的行走。从位点两侧的标记开始步行,从而鉴定出与 AVR2-MARA 不可分离的序列。但是,我无法克隆完整的基因座。相比之下, avr2-MARA (有毒的基因座)是从有毒的亲本菌株O-135中分离出来的。与 AVR2-MARA 基因座不可分离的标记序列分析显示,AT含量高于 grisea 基因组中通常观察到的AT含量。对与 AVR2-MARA 位点不可分离的片段进行序列分析,还发现了一个推定的开放阅读框(ORF),该读框与 AVR-Pita 具有显着的同源性。在这项研究中,我发现马拉特利的无毒力隔离与对水稻品种M-103和M-201的无毒力隔离相对应。赋予水稻品种M-201无毒力的 AVR-M201 于几年前被发现(Valent等,1991),但从未作图。在由65个子代组成的我们的作图杂交中, AVR2-MARA AVR-M201 是不可分割的。此外,我们通过紫外线诱变分离了两个 AVR2-MARA 的强毒突变体,并且都对M-103和M-201品种产生了毒力。这表明 AVR2-MARA,AVR-M201 (和 AVR-M103 )是相同的无毒力基因。由于 AVR2-MARA 起源于小米分离株,并且赋予几种不同的水稻品种以无毒力,因此它可能代表宿主物种特异性因子。由于识别了 AVR2-MARA 基因产物,可以防止这种水稻品种受到手指小米分离物的感染。

著录项

  • 作者

    Harper, Travis Mark.;

  • 作者单位

    The University of Arizona.;

  • 授予单位 The University of Arizona.;
  • 学科 Agriculture Plant Pathology.; Biology Molecular.; Biology Genetics.
  • 学位 Ph.D.
  • 年度 2001
  • 页码 264 p.
  • 总页数 264
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物病理学;分子遗传学;遗传学;
  • 关键词

  • 入库时间 2022-08-17 11:47:10

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