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Amino Acids and TOR Signaling Promote Prothoracic Gland Growth and the Initiation of Larval Molts in the Tobacco Hornworm Manduca sexta

机译:氨基酸和TOR信号促进前胸腺生长和幼虫蜕皮的烟草天蛾幼虫烟草天蛾的启动

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摘要

Molting in arthropods is orchestrated by a series of endocrine changes that occur towards the end of an instar. However, little is understood about the mechanisms that trigger these endocrine changes. Here, nutritional inputs were manipulated to investigate the minimal nutritional inputs required for a Manduca sexta larva to initiate a molt. Amino acids were found to be necessary for a larva to molt, indicating the involvement of an amino acid sensitive pathway. Feeding rapamycin, an inhibitor of the target of rapamycin (TOR) signaling, delayed the onset of a molt and resulted in abnormally larger larvae. Rapamycin also suppressed the growth of the prothoracic glands relative to the whole body growth, and this was accompanied by suppression of ecdysone production and secretion. Higher doses of rapamycin also slowed the growth rate, indicating that TOR signaling also plays a role in systemic growth. TOR signaling therefore couples the nutritional status of the larva to the endocrine system to regulate the timing of a molt.
机译:节肢动物的蜕皮是由一龄期刚结束时发生的一系列内分泌变化所控制的。但是,对于触发这些内分泌变化的机制了解甚少。在这里,对营养投入进行了研究,以调查曼杜卡六倍体幼虫开始蜕皮所需的最低营养投入。发现氨基酸是幼虫蜕皮所必需的,表明氨基酸敏感途径的参与。饲喂雷帕霉素(雷帕霉素(TOR)信号转导的靶标抑制剂)会延迟蜕皮的发生,并导致幼虫异常大。雷帕霉素还抑制了相对于全身生长的胸腺的生长,并且伴随着对蜕皮激素产生和分泌的抑制。雷帕霉素的高剂量也减慢了生长速度,表明TOR信号传导也在全身性生长中起作用。因此,TOR信号转导将幼虫的营养状况耦合到内分泌系统,以调节蜕皮的时间。

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