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Spatiotemporal characterization of dynamic epithelial filopodia during zebrafish epiboly

机译:斑马鱼截肢中动态上皮覆盖绦虫的时尚特征

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Abstract Background During zebrafish epiboly, the embryonic cell mass, or blastoderm, spreads to enclose the yolk cell. The blastoderm consists of an outer epithelial sheet, the enveloping layer (EVL), and the underlying deep cell layer (DEL). Studies have provided insights into the mechanisms of EVL and deep cell epiboly, but little is known about the interactions between the two cell layers and what role they may play during epiboly. Results We used live imaging to examine EVL basal protrusions. We identified them as filopodia based on f‐actin content and localization of fluorescently tagged filopodial markers. A spatiotemporal analysis revealed that the largest number of EVL filopodia were present during early epiboly at the animal pole. In functional studies, expression of a constitutively active actin‐bundling protein resulted in increased filopodial length and delayed gastrulation. Conclusions We identified protrusions on the basal surface of EVL cells as filopodia and showed that they are present throughout the EVL during epiboly. The largest number of filopodia was at the animal pole during early epiboly, which is when and where deep cell radial intercalations occur to the greatest extent. These findings suggest that EVL filopodia may function during epiboly to promote deep cell rearrangements during epiboly initiation.
机译:在斑马鱼组合,胚胎细胞质量或胚乳中,涂抹蛋黄细胞的抽象背景。胚泡由外层上皮片,包膜层(EVL)和下面的深细胞层(Del)组成。研究已经为EVL和深细胞组合的机制提供了见解,但是关于两种细胞层之间的相互作用很少,并且它们在遗产期间可能发挥的作用。结果我们使用实时成像来检查EVL基础突起。我们根据F-actin含量和荧光标记的剥离覆盖标记物定位确定它们作为氟肽。时尚分析表明,在动物杆的早期表现期间存在最大数量的EVL Filopodia。在功能性研究中,组成型活性肌动蛋白嵌入蛋白的表达导致偏渗量增加和延迟脱气。结论我们将EVL细胞基底表面鉴定为氟胶质型,并显示出在杂皮草期间在整个EVL中存在它们。在早期表现结婚期间,最多的氟胶质型在动物杆上,这是在最大程度上发生深细胞径向嵌段的何时何时何种。这些发现表明EVL Filopodia可以在遗产期间起作用,以促进遗产杂种中的遗传结合期间的深细胞重排。

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