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Live Imaging of Cleavage Variability and Vesicle Flow Dynamics in Dextral and Sinistral Spiralian Embryos

机译:探测仪和尖锐螺旋胚胚胚胚胚胚胚胎胚胎胚胎的实时成像

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Spiral cleavage is a mode of embryonic cell division found in species from several Phyla, including molluscs, annelids and flatworms. It reflects a tilting in the direction of spindle orientation and cell division at the 4 to 8-cell stage, which may be dextral or sinistral, and propagates into later organismal asymmetry. Genetic analysis in a small number of gastropod molluscs shows the direction of spiral cleavage is determined by maternal genotype, though whether this is also the case more generally for spiralians, and whether spiral cleavage at the 4-8 cell stage is preceded by earlier internal chirality in any spiralian species, is unknown. Here we study the early cleavage stages of two equal-cleaving spiralians, the dextral annelid Spirobranchus lamarcki and the sinistral mollusc Biomphalaria glabrata, using light sheet microscopy to image subcellular vesicles in live embryos and asking if chirality of movement is identifiable. We observe variability in the early cleavage of S. lamarcki, including a viable 3-cell stage. Image data are analysed by both particle tracking and particle image velocimetry. Neither finds evidence for chiral movement in 1-, 2-, 3-, or 4-cell embryos, nor do we detect consistent differences between the embryos of the dextral and sinistral species. The methodological and evolutionary implications of this are discussed.
机译:螺旋切割是一种胚胎细胞分裂模式,来自几种Phyla,包括软体动物,环形和扁虫。它反映了在4至8个细胞阶段的轴向方向和细胞分裂方向上的倾斜,其可以是右旋或尖锐的,并且繁殖到后后的有机体不对称。少数胃肠杆菌Mollusc的遗传分析表明螺旋切割的方向由母体基因型确定,虽然这种情况也更普遍地用于螺纹,以及4-8个细胞阶段的螺旋裂解是否在早期的内部性儿在任何烈性物种中,都是未知的。在这里,我们研究了两种平等螺旋的早期裂解阶段,右塞内尔·螺螺旋桨拉巴基和窦中莫尔斯康生物骨盆菌,使用光薄片显微镜,在活胚胎中的图像亚细胞囊泡,并询问是否可识别运动性能。我们观察S. Lamarcki早期切割的可变性,包括可行的3细胞阶段。通过粒子跟踪和粒子图像VENOCIMETRY分析图像数据。既不发现1-,2-,3-或4细胞胚胎中手性运动的证据,也没有检测到右旋和尖锐物种的胚胎之间的一致差异。讨论了这一点的方法论和进化意义。

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