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首页> 外文期刊>PLoS Genetics >Precocious Metamorphosis in the Juvenile Hormone–Deficient Mutant of the Silkworm, Bombyx mori
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Precocious Metamorphosis in the Juvenile Hormone–Deficient Mutant of the Silkworm, Bombyx mori

机译:幼体激素不足的家蚕突变体 Bombyx mori 的早熟性变态

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Insect molting and metamorphosis are intricately governed by two hormones, ecdysteroids and juvenile hormones (JHs). JHs prevent precocious metamorphosis and allow the larva to undergo multiple rounds of molting until it attains the proper size for metamorphosis. In the silkworm, Bombyx mori , several “moltinism” mutations have been identified that exhibit variations in the number of larval molts; however, none of them have been characterized molecularly. Here we report the identification and characterization of the gene responsible for the dimolting ( mod ) mutant that undergoes precocious metamorphosis with fewer larval–larval molts. We show that the mod mutation results in complete loss of JHs in the larval hemolymph and that the mutant phenotype can be rescued by topical application of a JH analog. We performed positional cloning of mod and found a null mutation in the cytochrome P450 gene CYP15C1 in the mod allele. We also demonstrated that CYP15C1 is specifically expressed in the corpus allatum, an endocrine organ that synthesizes and secretes JHs. Furthermore, a biochemical experiment showed that CYP15C1 epoxidizes farnesoic acid to JH acid in a highly stereospecific manner. Precocious metamorphosis of mod larvae was rescued when the wild-type allele of CYP15C1 was expressed in transgenic mod larvae using the GAL4/UAS system. Our data therefore reveal that CYP15C1 is the gene responsible for the mod mutation and is essential for JH biosynthesis. Remarkably, precocious larval–pupal transition in mod larvae does not occur in the first or second instar, suggesting that authentic epoxidized JHs are not essential in very young larvae of B. mori . Our identification of a JH–deficient mutant in this model insect will lead to a greater understanding of the molecular basis of the hormonal control of development and metamorphosis. Author Summary The number of larval instars in insects varies greatly across insect taxa and can even vary at the intraspecific level. However, little is known about how the number of larval instars is fixed in each species or modified by the environment. The silkworm, Bombyx mori , provides a unique bioresource for investigating this question, as there are several “moltinism” strains that exhibit variations in the number of larval molts. The present study describes the first positional cloning of a moltinism gene. We performed genetic and biochemical analyses on the dimolting ( mod ) mutant, which shows precocious metamorphosis with fewer larval–larval molts. We found that mod is a juvenile hormone (JH)–deficient mutant that is unable to synthesize JH, a hormone that prevents precocious metamorphosis and allows the larvae to undergo multiple rounds of larval–larval molts. This JH–deficient mutation is the first described to date in any insect species and, therefore, the mod strain will serve as a useful model for elucidating the molecular mechanism of JH action. Remarkably, precocious larval–pupal transition in mod larvae does not occur in the first or second instar, suggesting that morphostatic action of JH is not necessary for young larvae of B. mori .
机译:昆虫蜕皮和变态受两种激素(蜕皮类固醇和幼年激素(JHs))的控制很复杂。 JH可防止性早熟变态,并使幼虫经历多轮蜕皮,直到达到适合变态的大小。在家蚕中,已经鉴定出几种“变种”突变,它们表现出幼虫蜕皮数量的变化。然而,它们都没有分子特征。在这里,我们报告了负责蜕变(mod)突变体的基因的鉴定和表征,该突变体发生了早熟变态,幼虫-幼虫的蜕皮较少。我们表明,mod突变导致幼虫血淋巴JHs的完全丢失,并且可以通过JH类似物的局部应用来挽救突变表型。我们进行了mod的位置克隆,并在mod等位基因中发现了细胞色素P450基因CYP15C1中的无效突变。我们还证明了CYP15C1在Allcorp体中特异性表达,allatum是一种合成和分泌JHs的内分泌器官。此外,生化实验表明,CYP15C1以高度立体定向方式将法呢酸环氧化为JH酸。当使用GAL4 / UAS系统在转基因mod幼虫中表达CYP15C1的野生型等位基因时,可以挽救mod幼虫的早熟变态。因此,我们的数据显示CYP15C1是负责mod突变的基因,并且是JH生物合成所必需的。值得注意的是,在第一龄或第二龄幼虫中不会发生幼虫到–的早熟转变,这表明真正的环氧化JH在家蚕的幼虫中不是必需的。我们对这种模型昆虫中JH缺陷型突变体的鉴定将导致人们对激素控制发育和变态的分子基础有更深入的了解。作者摘要昆虫幼虫幼虫的数量在昆虫类群中变化很大,甚至在种内水平也可能变化。但是,关于每个物种中幼虫幼虫的数量如何固定或如何被环境改变的知之甚少。家蚕(Bombyx mori)为研究这个问题提供了独特的生物资源,因为有几种“变种”菌株表现出幼虫蜕皮数量的变化。本研究描述了moltinism基因的第一个位置克隆。我们对dimolting(mod)突变体进行了遗传和生化分析,该突变体显示早熟性变态,幼虫-幼虫的蜕皮较少。我们发现mod是一种少年激素(JH)缺陷型突变体,无法合成JH,JH是一种防止性早熟变态并允许幼虫经历多轮幼虫-幼虫蜕变的激素。这种JH缺陷突变是迄今为止在任何昆虫物种中首次描述的突变,因此,该mod菌株将成为阐明JH作用的分子机制的有用模型。值得注意的是,在第一龄或第二龄幼虫中没有发生幼虫到pu的早熟转变,这表明JH的形态抑制作用对于家蚕的幼虫不是必需的。

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