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Comprehensive Analysis of Gene Expression Profiles of the Beet Armyworm Spodoptera exigua Larvae Challenged with Bacillus thuringiensis Vip3Aa Toxin

机译:苏云金芽孢杆菌Vip3Aa毒素攻击甜菜夜蛾夜蛾幼虫基因表达谱的综合分析

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摘要

Host-pathogen interactions result in complex relationship, many aspects of which are not completely understood. Vip proteins, which are Bacillus thuringensis (Bt) insecticidal toxins produced during the vegetative stage, are selectively effective against specific insect pests. This new group of Bt proteins represents an interesting alternative to the classical Bt Cry toxins because current data suggests that they do not share the same mode of action. We have designed and developed a genome-wide microarray for the beet armyworm Spodoptera exigua, a serious lepidopteran pest of many agricultural crops, and used it to better understand how lepidopteran larvae respond to the treatment with the insecticidal protein Vip3Aa. With this approach, the goal of our study was to evaluate the changes in gene expression levels caused by treatment with sublethal doses of Vip3Aa (causing 99% growth inhibition) at 8 and 24 h after feeding. Results indicated that the toxin provoked a wide transcriptional response, with 19% of the microarray unigenes responding significantly to treatment. The number of up- and down-regulated unigenes was very similar. The number of genes whose expression was regulated at 8 h was similar to the number of genes whose expression was regulated after 24 h of treatment. The up-regulated sequences were enriched for genes involved in innate immune response and in pathogen response such as antimicrobial peptides (AMPs) and repat genes. The down-regulated sequences were mainly unigenes with homology to genes involved in metabolism. Genes related to the mode of action of Bt Cry proteins were found, in general, to be slightly overexpressed. The present study is the first genome-wide analysis of the response of lepidopteran insects to Vip3Aa intoxication. An insight into the molecular mechanisms and components related to Vip intoxication will allow designing of more effective management strategies for pest control.
机译:宿主与病原体的相互作用导致复杂的关系,其中许多方面尚未完全了解。 Vip蛋白是营养阶段产生的苏云金芽孢杆菌(Bt)苏云金芽孢杆菌杀虫毒素,对特定的害虫具有选择性的有效作用。这组新的Bt蛋白代表了经典Bt Cry毒素的有趣替代品,因为当前数据表明它们不具有相同的作用方式。我们已经为甜菜夜蛾甜菜夜蛾(Spodoptera exigua)设计并开发了全基因组微阵列,甜菜夜蛾是许多农作物的一种严重的鳞翅目害虫,并用它来更好地了解鳞翅目幼虫对杀虫蛋白Vip3Aa的反应。通过这种方法,我们的研究目标是评估在喂食后8和24小时内使用亚致死剂量的Vip3Aa处理(引起99%的生长抑制)引起的基因表达水平的变化。结果表明,该毒素引起了广泛的转录反应,其中19%的微阵列unigene对治疗反应显着。上调和下调的单基因的数量非常相似。在24小时后表达被调节的基因数目与在24小时后表达被调节的基因数目相似。上调的序列富集了与先天免疫应答和病原体应答有关的基因,例如抗菌肽(AMPs)和repat基因。下调的序列主要是与代谢相关基因具有同源性的单基因。通常,发现与Bt Cry蛋白作用方式有关的基因略有过表达。本研究是鳞翅目昆虫对Vip3Aa中毒反应的第一个全基因组分析。对与Vip中毒有关的分子机制和成分的深入了解将有助于设计更有效的害虫控制管理策略。

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