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Influence of ovarian muscle contraction and oocyte growth on egg chamber elongation in Drosophila

机译:果蝇卵巢肌肉收缩和卵母细胞生长对卵腔伸长的影响

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摘要

Organs are formed from multiple cell types that make distinct contributions to their shape. The Drosophila egg chamber provides a tractable model to dissect such contributions during morphogenesis. Egg chambers consist of 16 germ cells (GCs) surrounded by a somatic epithelium. Initially spherical, these structures elongate as they mature. This morphogenesis is thought to occur through a 'molecular corset' mechanism, whereby structural elements within the epithelium become circumferentially organized perpendicular to the elongation axis and resist the expansive growth of the GCs to promote elongation. Whether this epithelial organization provides the hypothesized constraining force has been difficult to discern, however, and a role for GC growth has not been demonstrated. Here, we provide evidence for this mechanism by altering the contractile activity of the tubular muscle sheath that surrounds developing egg chambers. Muscle hypo-contraction indirectly reduces GC growth and shortens the egg, which demonstrates the necessity of GC growth for elongation. Conversely, muscle hyper-contraction enhances the elongation program. Although this is an abnormal function for this muscle, this observation suggests that a corset-like force from the egg chamber's exterior could promote its lengthening. These findings highlight how physical contributions from several cell types are integrated to shape an organ.
机译:器官是由多种细胞类型形成的,这些细胞类型对其形状做出了独特的贡献。果蝇卵室提供了一个易于处理的模型,以剖析形态发生过程中的这种贡献。卵室由被上皮包围的16个生殖细胞(GC)组成。这些结构最初是球形的,随着它们的成熟而伸长。这种形态发生被认为是通过“分子紧身胸衣”机制发生的,通过这种机制,上皮内的结构元件沿垂直于伸长轴的方向沿周向组织,并抵抗了GC的膨胀生长以促进伸长。然而,尚不清楚该上皮组织是否提供了假设的约束力,并且尚未证明其对GC生长的作用。在这里,我们通过改变围绕发育中的卵腔的管状肌肉鞘的收缩活动,为这种机制提供了证据。肌肉收缩不足间接降低了GC的生长并缩短了卵,这证明了GC的生长需要延长。相反,肌肉过度收缩会增强伸长程序。尽管这是该肌肉的异常功能,但该观察结果表明,来自蛋腔外部的紧身胸衣样力可能会促进其伸长。这些发现凸显了如何将几种细胞类型的物理作用整合在一起以塑造器官。

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