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RNAi 介导的葡萄糖转运蛋白 4(Glut4)沉默抑制了蝗虫的卵巢发育,并增强了溴氰菊酯处理引起的能量耗竭。

RNAi-mediated glucose transporter 4 (Glut4) silencing inhibits ovarian development and enhances deltamethrin-treated energy depletion in Locusta migratoria.

机构信息

Key Laboratory of Zoological Systematics and Application of Hebei Province, Institute of Life Sciences and Green Development, College of Life Sciences, Hebei University, Baoding 071002, China.

Key Laboratory of Zoological Systematics and Application of Hebei Province, Institute of Life Sciences and Green Development, College of Life Sciences, Hebei University, Baoding 071002, China.

出版信息

Pestic Biochem Physiol. 2024 Aug;203:106014. doi: 10.1016/j.pestbp.2024.106014. Epub 2024 Jul 6.

Abstract

Energy metabolism is essential for insect development, reproduction and detoxification. Insects often reallocate energy and resources to manage external stress, balancing the demands of detoxification and reproduction. Glucose transport 4 (Glut4), a glucose transporter, is involved in glucose and lipid metabolism. However, the specific molecular mechanism of Glut4 in insect reproduction, and its role in the response to insecticide-induced oxidative stress remain unclear. In this study, LmGlut4 was identified and analyzed in Locusta migratoria. Silencing of LmGlut4 significantly reduced vitellogenin (Vg) biosynthesis in the fat body and Vg absorption by oocytes, ultimately hindering ovarian development and oocyte maturation. Knockdown of LmGlut4 also inhibited the biosynthesis of key insect hormones, such as juvenile hormone (JH), 20-hydroxyecdysone (20E) and insulin. Furthermore, LmGlut4 knockdown led to reduced triglyceride (TG) and glycogen content in the fat body and ovary, as well as decreased capacity for trehalose biosynthesis in adipocytes. Additionally, dsLmGlut4-treated locusts showed heightened sensitivity to deltamethrin, leading to increased triglyceride depletion during detoxification. This study sheds light on the biological function of LmGlut4 in the ovary and provides potential target genes for exploring biological pest management strategies.

摘要

能量代谢对于昆虫的发育、繁殖和解毒至关重要。昆虫经常重新分配能量和资源来应对外部压力,平衡解毒和繁殖的需求。葡萄糖转运蛋白 4(Glut4)是一种葡萄糖转运体,参与葡萄糖和脂质代谢。然而,Glut4 在昆虫繁殖中的具体分子机制及其在应对杀虫剂诱导的氧化应激中的作用尚不清楚。在本研究中,鉴定并分析了 Locusta migratoria 中的 LmGlut4。LmGlut4 的沉默显著降低了脂肪体中的卵黄蛋白原(Vg)生物合成和卵母细胞对 Vg 的吸收,最终阻碍了卵巢发育和卵母细胞成熟。LmGlut4 的敲低还抑制了关键昆虫激素如保幼激素(JH)、20-羟基蜕皮酮(20E)和胰岛素的生物合成。此外,LmGlut4 的敲低导致脂肪体和卵巢中的甘油三酯(TG)和糖原含量减少,以及脂肪细胞中海藻糖生物合成能力降低。此外,dsLmGlut4 处理的蝗虫对氯菊酯表现出更高的敏感性,导致解毒过程中 TG 耗竭增加。本研究揭示了 LmGlut4 在卵巢中的生物学功能,并为探索生物防治策略提供了潜在的靶基因。

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