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首页> 外文期刊>Indian Journal of Agricultural Biochemistry >Physico-Chemical Mechanism of Resistance to Shoot F [Atherigona Soccata (Rondani)] in Sorghum
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Physico-Chemical Mechanism of Resistance to Shoot F [Atherigona Soccata (Rondani)] in Sorghum

机译:高粱抗射击抗性的物理化学机制

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摘要

Host plant resistance is one of the important components for minimizing the losses caused by sorghum shoot fly, Atherigona soccata (Diptera: Muscidae) attack. Studies were undertaken to study the physico-chemical mechanism of resistance against shootfly, Atherigona soccata (Rondani) in sorghum and to identify lines with diverse mechanism of resistance to shoot fly to strengthen host plant resistance for sustainable crop production. Twenty sorghum genotypes with different levels of resistance to A. Soccata were evaluated to identify lines with diverse mechanism of resistance. There was significant variation in leaf surface wetness, leaf glossiness, trichome density, seedling vigour. In Sorghum genotypes high trichome density, total phenols and highenzyme activity showed resistance to shoot fly. Sorghum genotypes with high amounts of total sugars, soluble proteins, more leaf surface wetness and higher seedling vigour and glossiness scale were susceptible to shoot fly.
机译:宿主植物阻力是最大限度地减少高粱射击蝇造成的损失的重要组成部分之一,atherigona soccata(Diptera:muscidae)攻击。 研究了研究,研究了高粱Atherigona Soccata(Rondani)抗射击抗性的物理化学机制,并鉴定了抗抗抗抗抗血液机制的线条,以加强可持续作物生产的宿主植物抵抗力。 评估了具有不同水平的耐含量水平的二十升高粱基因型,以鉴定具有多种抗性机制的线。 叶面湿度,叶片光泽,胎儿密度,幼苗活力存在显着变化。 在高粱基因型中,高胎体密度,总酚类和效果活性的抗性抗性。 具有大量总糖,可溶性蛋白质,更多的叶片表面湿度和更高的幼苗活力以及光泽度易受射击的高粱基因型。

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