首页> 外文期刊>Entomologia Experimentalis et Applicata >Transcriptional analysis of physiological pathways in a generalist herbivore: responses to different host plants and plant structures by the cotton bollworm, Helicoverpa armigera
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Transcriptional analysis of physiological pathways in a generalist herbivore: responses to different host plants and plant structures by the cotton bollworm, Helicoverpa armigera

机译:普通草食动物生理途径的转录分析:棉铃虫对棉铃虫对不同寄主植物和植物结构的反应

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The generalist cotton bollworm, Helicoverpa armigera (Hubner) (Lepidoptera: Noctuidae), can consume host plants in more than 40 families, and often utilizes several tissues of a single plant. It is believed that generalists owe their success to the deployment of various members of multigene families of detoxification and digestive enzymes, a strategy that may also be responsible for rapid evolution of insecticide resistance. However, studies of generalist adaptations have been limited to specific genes or gene families, and an overview of how these adaptations are orchestrated at the transcriptional level is lacking. We used Drosophila melanogaster Meigen gene homology to H. armigera-expressed sequence tags to identify key groups of genes and pathways differentially regulated in the gut of fifth instars after 2 days of feeding on a variety of food sources. A series of microarray hybridizations was performed following two alternating loop designs, one comparing the gut gene expression upon feeding on various hosts (cotton, bean, tobacco, and chickpea) and two artificial diets (pinto bean and wheat germ-based), whereas the second design compared the gut expression toward feeding on various plant structures within cotton (leaf, square, and boll). The transcriptional responses toward bean and tobacco feeding treatments were more closely related in comparison with the rest of the diets, whereas the gene expression profiles toward cotton leaf and square-feeding were highly similar. We furthermore found significant changes in several pathways not directly responsible for detoxification mechanisms. Genes involved in primary and secondary metabolism, environmental information processing, and cellular processes were found to be differentially expressed. In addition, regulation of xenobiotic metabolism and the extracellular matrix-receptor pathways appeared differentially regulated across feeding treatments. Three cytochrome P450 genes CYP6AE17, CYP6B6, and CYP9A17 grouped as part of a xenobiotic metabolism pathway, were up-regulated in the bean-feeding treatment, and down-regulated in both tobacco and cotton-feeding treatments. CYP4L11, CYP4L5, and CYP4S13 were differentially expressed upon feeding on different cotton plant structures. The present work provides host plant and plant structure-specific transcriptional responses in a lepidopteran herbivore, including pathways and gene candidates for future studies of H. armigera physiology under a more integrative ecologically meaningful framework.
机译:多面手棉铃虫Helicoverpa armigera(Hubner)(鳞翅目:夜蛾科)可以消耗40多个科的寄主植物,并且经常利用单株植物的多个组织。相信通才的成功归功于排毒和消化酶的多基因家族的各个成员的部署,该策略也可能导致杀虫剂抗性的快速发展。但是,对通才适应性的研究仅限于特定的基因或基因家族,并且缺乏在转录水平上如何协调这些适应性的概述。我们使用果蝇的果蝇Meigen基因同源性与棉铃虫表达的序列标签进行了同源性鉴定,以鉴定在以多种食物为食2天后第五龄幼虫的肠道中差异调节的关键基因和途径。根据两个交替环设计,进行了一系列微阵列杂交,其中一个比较了饲喂各种宿主(棉花,大豆,烟草和鹰嘴豆)和两种人工饮食(以斑豆和小麦胚芽为基础)时肠道基因的表达,而第二种设计比较了肠道表达对棉花(叶,方和铃)内各种植物结构的取食。与其余饮食相比,对豆类和烟草喂养处理的转录反应更为紧密相关,而对棉叶和方养的基因表达谱则高度相似。我们还发现了不直接影响排毒机制的几种途径的显着变化。发现涉及初级和次级代谢,环境信息处理和细胞过程的基因是差异表达的。此外,异种生物代谢和细胞外基质受体途径的调节在整个喂养过程中似乎受到不同的调节。作为异源生物代谢途径一部分的三个细胞色素P450基因CYP6AE17,CYP6B6和CYP9A17在豆类喂养处理中被上调,而在烟草和棉花喂养处理中被下调。 CYP4L11,CYP4L5和CYP4S13在以不同棉花植物为食后差异表达。本工作提供了鳞翅目草食动物中宿主植物和植物结构的特异性转录应答,包括在更综合的,具有生态意义的框架下对棉铃虫生理学进行进一步研究的途径和候选基因。

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