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烟草天蛾翅成虫盘生长与分化的调控

The control of growth and differentiation of the wing imaginal disks of Manduca sexta.

作者信息

Nijhout H Frederik, Smith Wendy A, Schachar Ira, Subramanian Srikanth, Tobler Alexandra, Grunert Laura W

机构信息

Department of Biology, Duke University, Durham, NC 27705, USA.

出版信息

Dev Biol. 2007 Feb 15;302(2):569-76. doi: 10.1016/j.ydbio.2006.10.023. Epub 2006 Oct 21.

Abstract

During the larval feeding period, the growth of the wing imaginal disks of Lepidoptera is dependent on continuous feeding. Feeding and nutrition exert their effect via the secretion of bombyxin, the lepidopteran insulin-like hormone. When larvae stop feeding and enter the wandering stage in preparation for metamorphosis, the control of imaginal disk growth becomes feeding and nutrition-independent. Growth of the wing imaginal disks of non-feeding wandering stage Manduca sexta can be stopped by removal of the brain, indicating that a brain-derived factor is required for continued disk growth. Isolated wing disk growth in vitro requires both 20-hydroxyecdysone (20E) and either brain extract or bombyxin to achieve normal growth. In vitro, brain extracts and synthetic bombyxin have little or no effect in stimulating disk growth, but they greatly enhance the effect of 20E, indicating that 20E and bombyxin act synergistically to modulate growth of the imaginal disk. Brain extract and bombyxin induce a suite of insulin-response events in cultured wing disks, which indicate that bombyxin and 20E act through separate and synergistic pathways. The dose-response to 20E reaches a plateau at about 0.1 microg/ml. Tracheal differentiation of the wing disks can be induced to initiate in vitro by a low concentration of 20E, whereas higher concentrations of 20E only stimulate growth.

摘要

在幼虫取食期,鳞翅目昆虫翅成虫盘的生长依赖于持续取食。取食和营养通过分泌家蚕素(一种鳞翅目昆虫胰岛素样激素)发挥作用。当幼虫停止取食并进入准备变态的漫游期时,成虫盘生长的控制变得不依赖于取食和营养。不取食的漫游期烟草天蛾翅成虫盘的生长可通过摘除脑来停止,这表明持续的盘生长需要一种脑源因子。离体培养的翅成虫盘生长需要20-羟基蜕皮酮(20E)以及脑提取物或家蚕素才能实现正常生长。在体外,脑提取物和合成家蚕素对刺激成虫盘生长几乎没有作用,但它们能大大增强20E的作用,这表明20E和家蚕素协同作用来调节成虫盘的生长。脑提取物和家蚕素在培养的翅成虫盘中诱导一系列胰岛素反应事件,这表明家蚕素和20E通过不同的协同途径起作用。对20E的剂量反应在约0.1微克/毫升时达到平台期。低浓度的20E可在体外诱导翅成虫盘的气管分化启动,而较高浓度的20E仅刺激生长。

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