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首页> 外文期刊>Development >Automated cell tracking identifies mechanically oriented cell divisions during Drosophila axis elongation
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Automated cell tracking identifies mechanically oriented cell divisions during Drosophila axis elongation

机译:自动电池跟踪在果蝇轴伸长期间识别机械导向的细胞分裂

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摘要

Embryos extend their anterior-posterior (AP) axis in a conserved process known as axis elongation. Drosophila axis elongation occurs in an epithelial monolayer, the germband, and is driven by cell intercalation, cell shape changes, and oriented cell divisions at the posterior germband. Anterior germband cells also divide during axis elongation. We developed image analysis and pattern-recognition methods to track dividing cells from confocal microscopy movies in a generally applicable approach. Mesectoderm cells, forming the ventral midline, divided parallel to the AP axis, while lateral cells displayed a uniform distribution of division orientations. Mesectoderm cells did not intercalate and sustained increased AP strain before cell division. After division, mesectoderm cell density increased along the AP axis, thus relieving strain. We used laser ablation to isolate mesectoderm cells from the influence of other tissues. Uncoupling the mesectoderm from intercalating cells did not affect cell division orientation. Conversely, separating the mesectoderm from the anterior and posterior poles of the embryo resulted in uniformly oriented divisions. Our data suggest that mesectoderm cells align their division angle to reduce strain caused by mechanical forces along the AP axis of the embryo.
机译:胚胎在称为轴伸长的保守过程中延伸其前后(AP)轴。果蝇轴伸长率在上皮单层,生物带中发生,并且由细胞嵌入,细胞形状变化和后部生态带的导向细胞分裂驱动。前生物带电池也分裂在轴伸长期间。我们开发了图像分析和模式识别方法,以便以一般适用的方法从共聚焦显微镜电影跟踪分隔细胞。形成腹膜细胞,形成腹侧中线,平行于AP轴分开,而横向电池显示出均匀的分割取向分布。 Mesectoderm细胞未在细胞分裂前嵌入和持续增加的AP菌株。在分裂后,Mesectoderm细胞密度沿着AP轴增加,从而减轻应变。我们利用激光消融将Mesectoderm细胞与其他组织的影响分离。从插层细胞中解剖胚层的解耦不影响细胞分裂方向。相反,将Mesectoderm与胚胎的前杆和后极分离导致均匀定向的分裂。我们的数据表明,Mesectoderm细胞对准它们的分割角以降低由胚胎的AP轴的机械力引起的应变。

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