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A Mutation in fat2 Uncouples Tissue Elongation from Global Tissue Rotation

机译:fat2突变使组织伸长与整体组织旋转解耦

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Global tissue rotation was proposed as a morphogenetic mechanism controlling tissue elongation. In Drosophila ovaries, global tissue rotation of egg chambers coincides with egg chamber elongation. Egg chamber rotation was put forward to result in circumferential alignment of extracellular fibers. These fibers serve as molecular corsets to restrain growth of egg chambers perpendicular to the anteroposterior axis, thereby leading to the preferential egg chamber elongation along this axis. The atypical cadherin Fat2 is required for egg chamber elongation, rotation, and the circumferential alignment of extracellular fibers. Here, we have generated a truncated form of Fat2 that lacks the entire intracellular region. fat2 mutant egg chambers expressing this truncated protein fail to rotate yet display normal extracellular fiber alignment and properly elongate. Our data suggest that global tissue rotation, even though coinciding with tissue elongation, is not a necessary prerequisite for elongation.
机译:提出了整体组织旋转作为控制组织伸长的形态发生机制。在果蝇卵巢中,卵腔的整体组织旋转与卵腔的伸长相吻合。提出了卵室旋转以导致细胞外纤维的周向排列。这些纤维充当分子紧身胸衣,以限制垂直于前后轴的蛋腔的生长,从而导致沿该轴的优先蛋腔伸长。非典型钙粘蛋白Fat2是卵室延长,旋转和细胞外纤维周向排列所必需的。在这里,我们已经生成了缺失整个细胞内区域的截短形式的Fat2。表达此截短蛋白的fat2突变体卵室无法旋转,但显示正常的细胞外纤维排列并适当伸长。我们的数据表明,即使与组织伸长一致,整体组织旋转也不是伸长的必要先决条件。

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