功能性环蛾性信息素腺体的发育

Juliet D. Tang, Walter A. Wolf, Wendell L. Roelofs, Douglas C. Knipple
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引用次数: 26

摘要

与某些飞蛾不同,毛蛾的信息素产生不受信息素激活神经肽的调节。相反,产生信息素的能力显然与变态后期发生的表皮类固醇滴度的变化有关。与成虫信息素腺体相比,成虫羽化前2天的腺体是不正常的,并且(1)信息素、(Z)-7-十二烯乙酸酯和信息素特异性中间体的水平无法检测到,(2)在脂肪酸合成酶、Δ11去饱和酶和乙酰转移酶的酶测定中,放射性标记的底物很少或根本没有转化为产物,(3)在腺体培养中不能将放射性标记的乙酸转化为信息素。成虫羽化前1天腺体显示出低滴度的信息素和中间体(Z)-11-十六烯酸酯,并且在腺体培养中显示出低水平的放射性标记乙酸掺入到信息素中。到成年羽化时,腺体完全有能力。在成虫羽化前2天去头、去胸,可诱导信息素腺体能力发育过早。这种效果似乎是由于蜕皮激素的减少,因为它被20-羟基蜕皮激素的施用所阻断。这种控制信息素腺发育的能力被限制在一个关键时期,因为从年轻的蛹中去除头部和胸部并不能诱导信息素腺的能力,并且给药20-羟基蜕皮素也不能阻止其发生。除了能力上的差异,早期pharate和成年腺体在以下方面也存在差异:(1)腺体培养中合成的蛋白质类型,(2)体外mRNA翻译的蛋白质类型。
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Development of functionally competent cabbage looper moth sex pheromone glands

Unlike some moths, pheromone production in Trichoplusia ni is not regulated by a pheromone activating neuropeptide. Rather, competency to produce pheromone apparently is linked with changes in the ecdysteroid titer that occur late in metamorphosis. In contrast to adult pheromone glands, glands from pharate adults 2 days before eclosion were non-competent, and (1) had undetectable levels of the pheromone, (Z)-7-dodecenyl acetate, and pheromone-specific intermediates, (2) showed little or no conversion of radiolabeled substrate to product in enzyme assays of fatty acid synthetase, Δ11 desaturase, and acetyltransferase, and (3) failed to incorporate radiolabeled acetate into pheromone in gland culture. Glands 1 day before adult eclosion exhibited low titers of pheromone and the intermediate, (Z)-11-hexadecenoate, and showed low levels of radiolabeled acetate incorporation into pheromone in gland culture. By the time of adult eclosion, the gland was fully competent. Precocious development of pheromone gland competency was induced by removing the head and thorax from pupae 2 days before adult eclosion. This effect appears to result from the reduction of ecdysteroid, since it was blocked by the administration of 20-hydroxyecdysone. This ability to manipulate the development of the pheromone gland was restricted to a critical period, since removal of head and thorax from younger pupae did not induce pheromone gland competency, and administration of 20-hydroxyecdysone to older pupae did not block its onset. In addition to differences in competency, early pharate and adult glands exhibited dissimilarities with respect to (1) the types of proteins synthesized in gland culture, and (2) the types of proteins translated from mRNA in vitro.

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