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A Sorghum MYB Transcription Factor Induces 3-Deoxyanthocyanidins and Enhances Resistance against Leaf Blights in Maize

机译:高粱MYB转录因子诱导3-脱氧花青素并增强玉米对叶枯病的抗性

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摘要

Sorghum responds to the ingress of the fungal pathogen Colletotrichum sublineolum through the biosynthesis of 3-deoxyanthocyanidin phytoalexins at the site of primary infection. Biosynthesis of 3-deoxyanthocyanidins in sorghum requires a MYB transcription factor encoded by yellow seed1 (y1), an orthologue of the maize gene pericarp color1 (p1). Maize lines with a functional p1 and flavonoid structural genes do not produce foliar 3-deoxyanthocyanidins in response to fungal ingress. To perform a comparative metabolic analysis of sorghum and maize 3-deoxyanthocyanidin biosynthetic pathways, we developed transgenic maize lines expressing the sorghum y1 gene. In maize, the y1 transgene phenocopied p1-regulated pigment accumulation in the pericarp and cob glumes. LC-MS profiling of fungus-challenged Y1-maize leaves showed induction of 3-deoxyanthocyanidins, specifically luteolinidin. Y1-maize plants also induced constitutive and higher levels of flavonoids in leaves. In response to Colletotrichum graminicola, Y1-maize showed a resistance response.
机译:高粱通过在原发感染部位生物合成3-deoxyanthocyanidin phytoalexins对真菌病原体Colletotrichum sublineolum的入侵做出反应。高粱中3-脱氧花青素的生物合成需要由黄色种子1(y1)编码的MYB转录因子,该种子是玉米基因果皮color1(p1)的直系同源物。具有功能性p1和类黄酮结构基因的玉米品系不会响应真菌的入侵而产生叶状3-deoxyanthocyanidins。为了进行高粱和玉米3-脱氧花青素生物合成途径的比较代谢分析,我们开发了表达高粱y1基因的转基因玉米品系。在玉米中,y1转基因表皮调节p1调节果皮和穗轴颖中的色素积聚。真菌攻击的Y1-玉米叶片的LC-MS分析显示诱导了3-脱氧花青素,特别是木犀草素。 Y1型玉米植物还诱导了叶中组成型和较高水平的黄酮类化合物。对Graletotrichum graminicola的响应,Y1-玉米表现出抗性响应。

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