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首页> 外文期刊>Molecular Biology Reports >Expression profiles of glutathione S-transferase genes in larval midgut of Bombyx mori exposed to insect hormones
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Expression profiles of glutathione S-transferase genes in larval midgut of Bombyx mori exposed to insect hormones

机译:暴露于昆虫激素的家蚕幼虫中肠中谷胱甘肽S-转移酶基因的表达谱

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摘要

Glutathione S-transferases (GSTs) are believed to play a role in the detoxification of xenobiotics, resistance to insect viruses and pesticides, intracellular transport, biosynthesis of hormones and protection against oxidative stress. In this study, we used quantitative real time RT-PCR to examine expression profiles of the silkworm Bombyx mori GST-Sigma (BmGSTS2) and GST-Delta (BmGSTD2) genes in the larval midgut of the silkworm after exposure to 2-hydroxyecdysone (20E) and juvenile hormone analog (JHA). In concentration-course study, 20E at higher concentrations (1.0 and 2.0 μg/μl) caused significant upregulation of BmGSTD2, and all concentrations (0.5–2.0 μg/μl) of 20E caused significant upregulation of BmGSTS2. However, JHA in all concentrations downregulated the expression of BmGSTD2 and BmGSTS2. When exposed to either 20E (2.0 μg/μl) or JHA (2.0 μg/μl) on the third day of the fifth instar, the silkworm had higher BmGSTD2 at later time points: 15, 18, and 24 h for 20E and 24 h for JHA. BmGSTS2 expression was downregulated within 24 h after exposure to JHA and showed a time-dependent response after exposure to 20E. We also did a stage-dependent study, in which JHA downregulated BmGSTD2 expression and upregulated BmGSTS2 expression significantly at both day 1 and day 3 of the fifth instar. 20E upregulated the expression of BmGSTD2 and BmGSTS2 at the two stages. These findings imply that hormones have an important role in the regulation of basal GST expression. However, further validation and field trials should be carried out on the regulatory elements relevant to BmGSTD2 and BmGSTS2 gene expression.
机译:谷胱甘肽S-转移酶(GST)被认为在异种生物的解毒,对昆虫病毒和杀虫剂的抗性,细胞内运输,激素的生物合成以及对氧化应激的保护中起作用。在这项研究中,我们使用定量实时RT-PCR检查家蚕幼虫中肠暴露于2-羟基蜕皮激素(20E)后家蚕GST-Sigma(BmGSTS2)和GST-Delta(BmGSTD2)基因的表达谱)和少年激素类似物(JHA)。在浓度过程研究中,较高浓度的20E(1.0和2.0μg/μl)导致BmGSTD2显着上调,所有浓度的20E(0.5–2.0μg/μl)导致BmGSTS2显着上调。但是,JHA在所有浓度下均下调BmGSTD2和BmGSTS2的表达。当在第五龄第三天暴露于20E(2.0μg/μl)或JHA(2.0μg/μl)时,家蚕在随后的时间点具有较高的BmGSTD2:20E和24 h分别为15、18和24 h对于JHA。暴露于JHA后24小时内BmGSTS2表达下调,暴露于20E后BmGSTS2表达呈时间依赖性。我们还进行了阶段依赖性研究,其中JHA在第五龄幼虫的第1天和第3天均显着下调BmGSTD2表达并上调BmGSTS2表达。 20E在两个阶段上调了BmGSTD2和BmGSTS2的表达。这些发现暗示激素在基础GST表达的调节中具有重要作用。但是,应该对与BmGSTD2和BmGSTS2基因表达相关的调控元件进行进一步的验证和现场试验。

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