首页> 外文期刊>Current Science: A Fortnightly Journal of Research >Cytochrome P450 isoforms transcriptional, larval growth and development responses to host allelochemicals in the generalist herbivore, Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae)
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Cytochrome P450 isoforms transcriptional, larval growth and development responses to host allelochemicals in the generalist herbivore, Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae)

机译:细胞色素P450异型转录,幼虫生长和发育反应,以适应通配食草动物棉铃虫(Hubner)(鳞翅目:夜蛾科)中的寄主化感物质。

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摘要

Helicoverpa armigera (Hubner) is a polyphagous pest causing severe yield loss in many important crops. Host plants produce allelochemicals to deter insect pests and in response, insects deploy cytochrome P450 monooxygenases (P450s) to detoxify allelochemicals. Understanding the response of P450s to allelochemical exposure is key to effective pest management. We studied the response of seven H. armigera P450 isoforms to different concentrations of three allelochemicals (gossypol, tomatine and xanthotoxin) and their effects on insect growth and survival. Allelochemicals strongly induced overexpression of some P450s. CYP6AE14 exhibited the highest overexpression in gossypol treatment. CYP6AE14 and CYP6B7 exhibited higher overexpression in xanthotoxin treatment and CYP6B7 showed the highest overexpression in tomatine treatment. Overall, CYP6AE14 and CYP6B7 were induced by all three allelochemicals. Higher (0.5 and 1.0 mu g) concentrations of allelochemicals caused significant larval growth retardation. Interestingly, gossypol showed a hormetic effect, i.e. larval weight was approximately 10% higher at lower (0.025 mu g) concentration. Highest larval mortality (53%) was observed in tomatine treatment. These findings would help in identifying suitable P450 isoforms in the management of H. armigera.
机译:棉铃虫(Hubner)是一种多食性害虫,在许多重要农作物中造成严重的单产下降。寄主植物会产生化感物质来阻止害虫,并且昆虫会相应地部署细胞色素P450单加氧酶(P450)来对化感物质进行解毒。了解P450对化感物质暴露的反应是有效防治害虫的关键。我们研究了七个棉铃虫P450亚型对三种浓度的不同化感物质(棉酚,番茄素和黄腐毒素)的响应及其对昆虫生长和存活的影响。化感物质强烈诱导某些P450的过度表达。 CYP6AE14在棉酚治疗中表现出最高的过表达。 CYP6AE14和CYP6B7在黄嘌呤毒素处理中表现出较高的过表达,而CYP6B7在番茄素处理中表现出最高的过表达。总体而言,CYP6AE14和CYP6B7由所有三种化感物质诱导。较高(0.5和1.0μg)的化感物质浓度会导致幼虫的明显发育迟缓。有趣的是,棉酚显示出抑制作用,即,在较低浓度(0.025μg)下,幼虫体重增加约10%。在番茄素治疗中观察到最高的幼虫死亡率(53%)。这些发现将有助于在棉铃虫的管理中鉴定合适的P450同工型。

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