斑马鱼胚胎中植物定位的背系和生殖系决定因素的皮质深度和差异运输

E. Welch, F. Pelegri
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引用次数: 14

摘要

在斑马鱼胚胎中,参与轴诱导和原始生殖细胞(PGC)发育的因子都定位于卵的植物极。然而,在卵子激活轴诱导因子经历不对称的偏离中心的移动,而PGC因子经历对称的动物定向运动。我们研究了提出的背侧基因wnt8a和grip2a与植物皮质PGC因子dazl之间的空间关系。我们发现这些基因的RNA定位于不同的皮层深度,与轴诱导因子相比,PGC因子的RNA定位于更深的皮层水平。此外,与微管在背侧决定因子的远程运输中的作用相反,我们发现种系决定因子的运输依赖于肌动蛋白细胞骨架。我们的研究结果支持一个模型,在这个模型中,植物皮层的差异RNA运输行为是由RNA沿皮层深度定位和与皮层运输的差异耦合促进的。
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Cortical depth and differential transport of vegetally localized dorsal and germ line determinants in the zebrafish embryo
ABSTRACT In zebrafish embryos, factors involved in both axis induction and primordial germ cell (PGC) development are localized to the vegetal pole of the egg. However, upon egg activation axis induction factors experience an asymmetric off-center shift whereas PGC factors undergo symmetric animally-directed movement. We examined the spatial relationship between the proposed dorsal genes wnt8a and grip2a and the PGC factor dazl at the vegetal cortex. We find that RNAs for these genes localize to different cortical depths, with the RNA for the PGC factor dazl at a deeper cortical level than those for axis-inducing factors. In addition, and in contrast to the role of microtubules in the long-range transport of dorsal determinants, we find that germ line determinant transport depends on the actin cytoskeleton. Our results support a model in which vegetal cortex differential RNA transport behavior is facilitated by RNA localization along cortical depth and differential coupling to cortical transport.
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