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首页> 外文期刊>Development >The retinoic-like juvenile hormone controls the looping of left-right asymmetric organs in Drosophila.
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The retinoic-like juvenile hormone controls the looping of left-right asymmetric organs in Drosophila.

机译:维甲酸样少年激素控制果蝇中左右不对称器官的循环。

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摘要

In vertebrate development, the establishment of left-right asymmetry is essential for sidedness and the directional looping of organs like the heart. Both the nodal pathway and retinoic acid play major and conserved regulatory roles in these processes. We carried out a novel screen in Drosophila to identify mutants that specifically affect the looping of left-right asymmetric organs. We report the isolation of spin, a novel mutant in which the looping of the genitalia and spermiduct are incomplete; under-rotation of the genitalia indicates that spin controls looping morphogenesis but not direction, thus uncoupling left-right asymmetry and looping morphogenesis. spin is a novel, rotation-specific allele of the fasciclin2 (Fas2) gene, which encodes a cell-adhesion protein involved in several aspects of neurogenesis. In spin mutants, the synapses connecting specific neurosecretory cells to the corpora allata are affected. The corpus allatum is part of the ring gland and is involved in the control of juvenile hormone titers during development. Our genetic and pharmacological results indicate that Fas2(spin) rotation defects are linked to an abnormal endocrine function and an elevated level of juvenile hormone. As juvenile hormone is an insect sesquiterpenoid related to retinoic acid, these results establish a new genetic model for studying organ looping and demonstrate an evolutionarily conserved role for terpenoids in this process.
机译:在脊椎动物的发育中,左右不对称的建立对于侧面和器官(如心脏)的定向循环至关重要。节点途径和视黄酸在这些过程中均起主要和保守的调节作用。我们在果蝇中进行了新的筛选,以鉴定特异性影响左右不对称器官环的突变体。我们报告了自旋的分离,这是一种新的突变体,其中生殖器和精子的环不完整。生殖器旋转不足表示旋转控制循环形态发生,但不控制方向,因此解开左右不对称性和循环形态发生。 spin是fasciclin2(Fas2)基因的新型,旋转特异性等位基因,其编码涉及神经发生几个方面的细胞粘附蛋白。在自旋突变体中,将特定的神经分泌细胞连接到体集的突触受到影响。 Allatum体是环腺的一部分,在发育过程中参与了幼体激素效价的控制。我们的遗传和药理结果表明Fas2(spin)旋转缺陷与内分泌功能异常和少年激素水平升高有关。由于少年激素是一种与视黄酸有关的昆虫倍半萜,这些结果建立了一个新的遗传模型,用于研究器官循环,并证明了该过程中萜类在进化上的保守作用。

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