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首页> 外文期刊>Development >The genetic control of the distinction between fat body and gonadal mesoderm in Drosophila.
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The genetic control of the distinction between fat body and gonadal mesoderm in Drosophila.

机译:果蝇脂肪体与性腺中胚层之间区别的遗传控制。

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摘要

The somatic muscles, the heart, the fat body, the somatic part of the gonad and most of the visceral muscles are derived from a series of segmentally repeated primordia in the Drosophila mesoderm. This work describes the early development of the fat body and its relationship to the gonadal mesoderm, as well as the genetic control of the development of these tissues. Segmentation and dorsoventral patterning genes define three regions in each parasegment in which fat body precursors can develop. Fat body progenitors in these regions are specified by different genetic pathways. Two regions require engrailed and hedgehog for their development while the third is controlled by wingless. decapentaplegic and one or more unknown genes determine the dorsoventral extent of these regions. In each of parasegments 10-12 one of these regions generates somatic gonadal precursors instead of fat body. The balance between fat body and somatic gonadal fate in these serially homologous cell clusters is controlled by at least five genes. We suggest a model in which tinman, engrailed and wingless are necessary to permit somatic gonadal develoment, while serpent counteracts the effects of these genes and promotes fat body development. The homeotic gene abdominalA limits the region of serpent activity by interfering in a mutually repressive feed back loop between gonadal and fat body development.
机译:躯体肌肉,心脏,脂肪,性腺的躯体部分和大部分内脏肌肉均来自果蝇中胚层中一系列分段重复的原基。这项工作描述了脂肪体的早期发育及其与性腺中胚层的关系,以及这些组织发育的遗传控制。分割和背腹模式基因在每个节段中定义了脂肪体前体可以发育的三个区域。这些地区的脂肪体祖细胞是通过不同的遗传途径确定的。有两个地区需要忙碌和刺猬来发展,而第三个地区则由无翼控制。十足瘫痪和一个或多个未知基因决定了这些区域的背腹范围。在分段10-12中的每一个中,这些区域之一产生体细胞性腺前体而不是脂肪体。在这些连续同源的细胞簇中,脂肪体与体细胞性腺命运之间的平衡由至少五个基因控制。我们建议一个模型,其中锡曼人,陷入困境和无翼的人必须允许体细胞性腺发育,而蛇则抵消了这些基因的作用并促进了脂肪的发育。同源基因abdominalA通过干扰性腺和脂肪体发育之间的相互抑制的反馈回路来限制蛇的活动区域。

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