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Association of lignification and callose deposition with host cultivar resistance and induced systemic resistance in pearl millet to Sclerospora graminicola

机译:木质化和愈伤组织沉积与珍珠小米对硬核孢菌的寄主品种抗性和诱导的全身抗性的关系

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Histochemical studies on pearl millet (Pennisetum glaucum) seedlings responding to invasion by the downy mildew pathogen Sclerospora graminicola strongly suggested that lignin and callose deposition were host structural responses for cultivar resistance. A time-course study showed that the accumulation of the polymers in cell walls of resistant (cv. IP 18293) seedlings was rapid and localised around the pathogen, apparently to restrict pathogen entry. Regression analysis indicated a longer time requirement for such cell wall deposition in seedlings (cv. HB3) susceptible to the downy mildew pathogen. Interestingly, susceptible pearl millet seedlings induced for systemic resistance against S. graminicola using aqueous leaf extract of Datura metel also showed host reactions similar to that observed in seedlings showing cultivar resistance to the pathogen. These results suggested a similarity in the structural resistance responses in induced systemic resistance and host cultivar resistance of pearl millet against the downy mildew pathogen.
机译:珍珠小米(Pennisetum glaucum)幼苗对霜霉病病原菌Sclerospora graminicola的入侵响应的组织化学研究强烈表明,木质素和call质的沉积是宿主对品种抗性的结构反应。一项时程研究表明,抗药性(cv。IP 18293)幼苗的细胞壁中聚合物的积累迅速且位于病原体周围,这显然限制了病原体的进入。回归分析表明,在需要霜霉病病原体的幼苗(cv。HB3)中这种细胞壁沉积需要更长的时间。有趣的是,使用曼陀罗水叶提取物诱导的对粟米链霉菌的系统抗性的易感珍珠粟幼苗也显示出与在幼苗中观察到的对病原体具有抗性的宿主反应相似的宿主反应。这些结果表明,珍珠小米对霜霉病病原体的诱导的系统抗性和宿主品种抗性的结构抗性响应相似。

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