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Mapping the calcium signalsome during Drosophila wing development

机译:果蝇翅膀发育过程中绘制钙信号体图

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Second messengers such as calcium (Ca2+) play critical roles in signal integration for complex, multicellular processes. However, how components of Ca2+signaling regulates tissue development is poorly studied. Recently, we have discovered that perturbing Ca2+signaling differentially across the developingDrosophilawing results in three-dimensional distortions to the final wing architecture. This finding prompted us to pursue a comprehensive high-content screen for phenotypes generated by perturbing known calcium-related genes. The rapidly-expanding dataset includes deep coverage (~30 wings/perturbation) and a high-resolution dataset of over 7,000 fly wing images. Preliminary findings indicate that perturbation of Ca2+signaling leads to several classes of wing developmental phenotypes including thickening of veins, bifurcations, and wing crumpling. High-dimensional fingerprinting of these phenotypes revealed several clusters of genes, implying mechanistic interactions as well as novel roles for calcium-related genes in morphogenesis. Future work will focus on validation of interactions within gene clusters and identifying novel consequences of perturbation of Ca2+signaling on development.
机译:诸如钙(Ca2 +)之类的第二信使在复杂的多细胞过程的信号整合中起着至关重要的作用。但是,关于Ca2 +信号的成分如何调节组织发育的研究很少。最近,我们发现在整个果蝇加工过程中,不同程度地干扰Ca2 +信号会导致最终机翼结构的三维畸变。这一发现促使我们对通过扰动已知的钙相关基因而产生的表型进行全面的高内涵筛选。快速扩展的数据集包括深度覆盖(约30个机翼/扰动)和包含7,000多个机翼图像的高分辨率数据集。初步发现表明,Ca2 +信号的扰动会导致几类机翼发育表型,包括静脉增粗,分叉和机翼起皱。这些表型的高维指纹图谱揭示了几个基因簇,这暗示了机械相互作用以及钙相关基因在形态发生中的新作用。未来的工作将侧重于验证基因簇之间的相互作用,并确定Ca2 +信号扰动对发育的新影响。

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