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姜烯酚暴露后赤拟谷盗生物降解和代谢基因的响应。

Response of xenobiotic biodegradation and metabolic genes in Tribolium castaneum following eugenol exposure.

机构信息

Jiangsu Key Laboratory for Biodiversity and Biotechnology, College of Life Sciences, Nanjing Normal University, Nanjing, 210023, China.

College of Biology and Food Engineering, Anyang Institute of Technology, Anyang, 455000, China.

出版信息

Mol Genet Genomics. 2022 May;297(3):801-815. doi: 10.1007/s00438-022-01890-6. Epub 2022 Apr 13.

Abstract

Eugenol, a plant-derived component possessing small side effects, has an insecticidal activity to Tribolium castaneum; however, the underlying molecular mechanisms of eugenol acting on T. castaneum are currently unclear. Here, a nerve conduction carboxylesterase and a detoxifying glutathione S-transferase were significantly inhibited after eugenol exposure, resulting in the paralysis or death of beetles. Then, RNA-sequencing of eugenol-exposed and control samples identified 362 differentially expressed genes (DEGs), containing 206 up-regulated and 156 down-regulated genes. RNA-seq data were validated further by qRT-PCR. GO analysis revealed that DEGs were associated with 1308 GO terms of which the most enriched GO terms were catalytic activity, and integral component of membrane; KEGG pathway analysis showed that these DEGs were distributed in 151 different pathways, of which some pathways associated with metabolism of xenobiotics or drug were significantly enriched, which indicated that eugenol most likely disturbed the processes of metabolism, and detoxication. Moreover, several DEGs including Hexokinase type 2, Isocitrate dehydrogenase, and Cytochrome b-related protein, might participate in the respiratory metabolism of eugenol-exposed beetles. Some DEGs encoding CYP, UGT, GST, OBP, CSP, and ABC transporter were involved in the xenobiotic or drug metabolism pathway, which suggested that these genes of T. castaneum participated in the response to eugenol exposure. Additionally, TcOBPC11/ TcGSTs7, detected by qRT-PCR and RNA-interference against these genes, significantly increased the mortality of eugenol-treated T. castaneum, providing further evidence for the involvement of OBP/GST in eugenol metabolic detoxification in T. castaneum. These results aid eugenol insecticidal mechanisms and provide the basis of insect control.

摘要

丁香酚是一种植物衍生成分,副作用小,对赤拟谷盗具有杀虫活性;然而,丁香酚作用于赤拟谷盗的潜在分子机制尚不清楚。在这里,神经传导羧酸酯酶和解毒谷胱甘肽 S-转移酶在丁香酚暴露后显著受到抑制,导致甲虫瘫痪或死亡。然后,对丁香酚暴露和对照样本进行 RNA 测序,鉴定出 362 个差异表达基因(DEGs),其中 206 个上调,156 个下调。RNA-seq 数据通过 qRT-PCR 进一步验证。GO 分析显示,DEGs 与 1308 个 GO 术语相关,其中最富集的 GO 术语是催化活性和膜的完整成分;KEGG 通路分析显示,这些 DEGs 分布在 151 个不同的通路中,其中一些与外源物或药物代谢相关的通路显著富集,这表明丁香酚很可能干扰了代谢和解毒过程。此外,包括己糖激酶 2、异柠檬酸脱氢酶和细胞色素 b 相关蛋白在内的几个 DEGs 可能参与了丁香酚暴露甲虫的呼吸代谢。一些 DEGs 编码 CYP、UGT、GST、OBP、CSP 和 ABC 转运体,参与了外源物或药物代谢途径,这表明这些赤拟谷盗基因参与了对丁香酚暴露的反应。此外,通过 qRT-PCR 和针对这些基因的 RNA 干扰检测到的 TcOBPC11/TcGSTs7,显著增加了丁香酚处理的赤拟谷盗的死亡率,为 OBP/GST 参与赤拟谷盗丁香酚代谢解毒提供了进一步证据。这些结果有助于了解丁香酚的杀虫机制,并为昆虫防治提供基础。

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