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首页> 外文期刊>Pesticide Biochemistry and Physiology >Transcriptome profiling reveals differential gene expression of detoxification enzymes in Sitophilus zeamais responding to terpinen-4-ol fumigation
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Transcriptome profiling reveals differential gene expression of detoxification enzymes in Sitophilus zeamais responding to terpinen-4-ol fumigation

机译:转录组分析揭示了Zeamais响应Terpinen-4-OL熏蒸中的沥青中解毒酶的差异基因表达

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摘要

Plant essential oils with high bioactivity provide environmental friendly alternatives for synthetic pesticides Melaleuca alternifolia essential oil and its main constituent terpinen-4-ol have high insecticidal activity to Sitophilus zeamais Motschulsky. Terpmen-4-ol may be metabolized by human and insect cytochrome P450s. However, little is known about how insects systemically respond to terpinen-4-ol. In this study, we used an RNA-seq approach to evaluate the global gene expression of S. zeamais after terpinen-4-ol fumigation. Duplicates of fumigated and control groups, for a total of four libraries, were collected for sequencing. A total of 36,117 unigenes with an average length of 1036 bp were generated m the de novo assembled transcriptome. Comparative analysis of S. zeamais libraries identified 592 differentially expressed genes (DEGs), of which 308 and 284 genes were up- and down-regulated in response to terpmen-4-ol fumigation, respectively. GO and KEGG functional analyses were performed for up and downregulated DEGs separately, showing these DEGs were enriched for terms related to catalytic activity, carbohydrate metabolism, and xenobiotics biodegradation and metabolism DEGs encoding enzymes for detoxification were detected, including sixteen cytochrome P450s (P450s), eight glutathione S-transferase (GSTs), fourteen esterase (ESTs), ten UDP-glucuronosyltransferase (UGTs), and two ATP-binding cassette transporter (ABC transporter) genes Real-time quantitative PCR confirmed that ten P450s, three GSTs and one EST were up-regulated dramatically after exposure to terpmen-4-ol at different concentrations and over a time course. The results provided a transcriptional overview of the changes in a stored grain pest in response to terpinen-4-ol fumigation. The analysis revealed the expression levels of detoxification genes were altered, especially for P450s, and provided candidate genes for understanding systemic metabolic responses to terpinen-4-ol in insects.
机译:具有高生物活性的植物精油为合成杀虫剂Melaleuca allyifolia精油及其主要成分Terpinen-4-Ol具有高杀虫剂活性的环境友好替代品为SieSphilus Zeamais Motschulsky具有高杀虫活性。 Terpmen-4-OL可以由人和昆虫细胞色素P450S代谢。然而,关于昆虫如何自身回应Terpinen-4-OL的情况毫无疑问。在这项研究中,我们使用了RNA-SEQ方法来评估Terpinen-4-OL熏蒸后S.Zeamais的全球基因表达。收集熏蒸和对照组的复制物,总共收集四个文库进行测序。在DE Novo组装的转录组中产生总长度为1036bp的36,117个ungenes。 Zeamais文库的比较分析鉴定了592个差异表达基因(DEGS),其中308和284个基因分别响应Terpmen-4-OL熏蒸而上调。再分别进行GO和Kegg功能分析,分别进行上调和下调的次数,富集这些DEG用于与催化活性有关的术语,检测到碳水化合物代谢和异种酶生物降解和编码解毒酶的代谢参数,包括六个细胞色素P450s(P450s),八个谷胱甘肽S-转移酶(GSTS),十四酯酶(ESTS),十个UDP-葡糖醛糖基转移酶(UGTS)和两个ATP结合盒式转运蛋白(ABC转运蛋白)基因实时定量PCR确认了10个P450s,三种GST和一个EST在暴露于不同浓度的Terpmen-4-OL之后,在不同浓度和时间课程后急剧上调。结果提供了响应于Terpinen-4-OL熏蒸的储存谷物害虫的变化的转录概述。分析揭示了解毒基因的表达水平改变,特别是对于P450s,并提供了候选基因,用于了解对昆虫的萜烯-4-醇的全身代谢反应。

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