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Flavonoid Phytoalexin-Dependent Resistance to Anthracnose Leaf Blight Requires a Functional yellow seed1 in Sorghum bicolor

机译:黄酮类植物抗毒素对炭疽病的抗性要求在双色高粱中具有功能性黄色seed1

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摘要

In Sorghum bicolor, a group of phytoalexins are induced at the site of infection by Colletotrichum sublineolum, the anthracnose fungus. These compounds, classified as 3-deoxyanthocyanidins, have structural similarities to the precursors of phlobaphenes. Sorghum yellow seed1 (y1) encodes a MYB transcription factor that regulates phlobaphene biosynthesis. Using the candystripe1 transposon mutagenesis system in sorghum, we have isolated functional revertants as well as loss-of-function alleles of y1. These near-isogenic lines of sorghum show that, compared to functionally revertant alleles, loss of y1 lines do not accumulate phlobaphenes. Molecular characterization of two null y1 alleles shows a partial internal deletion in the y1 sequence. These null alleles, designated as y1-ww1 and y1-ww4, do not accumulate 3-deoxyanthocyanidins when challenged with the nonpathogenic fungus Cochliobolus heterostrophus. Further, as compared to the wild-type allele, both y1-ww1 and y1-ww4 show greater susceptibility to the pathogenic fungus C. sublineolum. In fungal-inoculated wild-type seedlings, y1 and its target flavonoid structural genes are coordinately expressed. However, in y1-ww1 and y1-ww4 seedlings where y1 is not expressed, steady-state transcripts of its target genes could not be detected. Cosegregation analysis showed that the functional y1 gene is genetically linked with resistance to C. sublineolum. Overall results demonstrate that the accumulation of sorghum 3-deoxyanthocyanidin phytoalexins and resistance to C. sublineolum in sorghum require a functional y1 gene.
机译:在双色高粱中,炭疽菌真菌炭疽菌(Colletotrichum sublineolum)在感染部位诱导了一组植物抗毒素。这些化合物被归类为3-脱氧花青素,其结构与邻苯二酚的前体相似。高粱黄种子1(y1)编码一种MYB转录因子,该因子调节氟苯酚的生物合成。使用高粱中的candystripe1转座子诱变系统,我们分离了y1的功能性回复子和功能丧失的等位基因。高粱的这些近等基因系表明,与功能回复等位基因相比,y1系的丢失不会积累氟苯酚。两个无效的y1等位基因的分子表征显示y1序列中的部分内部缺失。这些无效等位基因,分别命名为y1-ww1和y1-ww4,在用非致病性真菌异曲霉Cochliobolus heterostrophus攻击时不会积聚3-deoxyanthocyanidins。此外,与野生型等位基因相比,y1-ww1和y1-ww4均显示出对致病性真菌C. sublineolum的较高敏感性。在真菌接种的野生型幼苗中,y1及其靶标类黄酮结构基因被协调表达。但是,在未表达 y1 y1-ww1 y1-ww4 幼苗中,无法检测到其靶基因的稳态转录本。聚合分析表明,功能性 y1 基因与对 C的抗性遗传相关。 总体结果表明,高粱3-deoxyanthocyanidin植物抗毒素的积累和对 C的抗性。高粱中的sublineolum 需要一个功能性的 y1 基因。

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