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The insulin/TOR signal transduction pathway is involved in the nutritional regulation of juvenile hormone synthesis in Aedes aegypti

机译:胰岛素/ TOR信号转导通路参与埃及伊蚊幼体激素合成的营养调控

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摘要

Juvenile hormone (JH) levels must be modulated to permit the normal progress of development and reproductive maturation in mosquitoes. JH is part of a transduction system that assesses nutritional information and controls reproduction in mosquitoes. Adult female Aedes aegypti show nutritionally-dependent dynamic changes in corpora allata (CA) JH biosynthetic activities. A coordinated expression of most JH biosynthetic enzymes has been described in female pupae and adult mosquitoes; increases or decreases in transcript levels for all the enzymes were concurrent with increases or decreases in JH synthesis; suggesting that transcriptional changes are at least partially responsible for the dynamic changes of JH biosynthesis. The goal of the present study is to identify signaling network components responsible for the nutritional-dependent changes of JH synthesis in the CA of mosquitoes. The insulin/TOR signaling network plays a central role in the transduction of nutritional signals that regulate cell growth and metabolism in insects. These pathways have also been suggested as a link between nutritional signals and JH synthesis regulation in the CA of cockroaches and flies. We used a combination of in vitro studies and in vivo genetic knockdown experiments to explore nutritional signaling pathways in the CA. Our results suggest that the insulin/TOR pathway plays a role in the transduction of the nutritional information that regulates JH synthesis in mosquitoes. Transcriptional regulation of the genes encoding JH biosynthetic enzymes is at least partially responsible for these nutritionally modulated changes of JH biosynthesis
机译:必须调节少年激素(JH)的水平,以使蚊子正常发育和生殖成熟。 JH是转导系统的一部分,该系统评估营养信息并控制蚊子的繁殖。成年雌性埃及伊蚊在全集(CA)JH生物合成活动中显示营养相关的动态变化。在雌性up和成年蚊子中,已经描述了大多数JH生物合成酶的协同表达。所有酶的转录水平增加或减少与JH合成的增加或减少同时发生;提示转录变化至少部分负责JH生物合成的动态变化。本研究的目的是确定负责蚊子CA中JH合成的营养依赖性变化的信号网络组件。胰岛素/ TOR信号网络在调节昆虫细胞生长和代谢的营养信号的转导中起着核心作用。这些途径还被认为是蟑螂和果蝇CA中营养信号与JH合成调控之间的联系。我们结合了体外研究和体内基因敲低实验,探索了CA中的营养信号传导途径。我们的结果表明,胰岛素/ TOR途径在调节蚊子JH合成的营养信息的转导中起作用。 JH生物合成酶编码基因的转录调控至少部分负责这些营养调节的JH生物合成变化

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