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Hormonal regulation and developmental role of Krüppel homolog 1, a repressor of metamorphosis, in the silkworm Bombyx mori.

机译:Krüppel同源物的激素调节和发育作用1,在蚕蛹莫里的变态阻遏物。

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摘要

Juvenile hormone (JH) has an ability to repress the precocious metamorphosis of insects during their larval development. Krüppel homolog 1 (Kr-h1) is an early JH-inducible gene that mediates this action of JH; however, the fine hormonal regulation of Kr-h1 and the molecular mechanism underlying its antimetamorphic effect are little understood. In this study, we attempted to elucidate the hormonal regulation and developmental role of Kr-h1. We found that the expression of Kr-h1 in the epidermis of penultimate-instar larvae of the silkworm Bombyx mori was induced by JH secreted by the corpora allata (CA), whereas the CA were not involved in the transient induction of Kr-h1 at the prepupal stage. Tissue culture experiments suggested that the transient peak of Kr-h1 at the prepupal stage is likely to be induced cooperatively by JH derived from gland(s) other than the CA and the prepupal surge of ecdysteroid, although involvement of unknown factor(s) could not be ruled out. To elucidate the developmental role of Kr-h1, we generated transgenic silkworms overexpressing Kr-h1. The transgenic silkworms grew normally until the spinning stage, but their development was arrested at the prepupal stage. The transgenic silkworms from which the CA were removed in the penultimate instar did not undergo precocious pupation or larval-larval molt but fell into prepupal arrest. This result demonstrated that Kr-h1 is indeed involved in the repression of metamorphosis but that Kr-h1 alone is incapable of implementing normal larval molt. Moreover, the expression profiles and hormonal responses of early ecdysone-inducible genes (E74, E75, and Broad) in transgenic silkworms suggested that Kr-h1 is not involved in the JH-dependent modulation of these genes, which is associated with the control of metamorphosis.
机译:青少年激素(JH)在幼虫发育过程中有能力压制昆虫的早熟变态。 Krüppel同源物1(KR-H1)是一种早期的JH-诱导基因,介导JH的这种作用;然而,Kr-H1的细荷尔蒙调节和其抗致象色效应的分子机制很少被理解。在这项研究中,我们试图阐明KR-H1的激素调节和发育作用。我们发现,由Corpora Allata(CA)分泌的JH诱导蚕板植物血管幼虫的倒数二龄幼虫表达的KR-H1表达,而CA没有参与KR-H1的瞬态诱导预备阶段。组织培养实验表明,预备阶段的KR-H1的瞬态峰可能通过腺体和蜕皮的预备浪涌来协同诱导,虽然未知因素可以参与没有被排除在外。为了阐明KR-H1的发育作用,我们产生过表达KR-H1的转基因蚕。转基因蚕在旋转阶段之前涌现,但它们的发展在预备阶段被捕。在倒数第二龄血液中除去Ca的转基因蚕没有经过早熟的蛹化或幼虫 - 幼虫蜕皮,但陷入预备逮捕。该结果证明KR-H1确实涉及变态的抑制,但单独的KR-H1不能实施正常的幼虫蜕皮。此外,转基因家蚕早期蜕皮型诱导基因(E74,E75和宽)的表达谱和激素反应表明KR-H1不参与这些基因的JH依赖性调节,这与控制相关变态。

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