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首页> 外文期刊>Mechanisms of Development >Wingless signaling initiates mitosis of primordial germ cells during development in Drosophila.
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Wingless signaling initiates mitosis of primordial germ cells during development in Drosophila.

机译:果蝇发育过程中,无翅信号传导引发了原始生殖细胞的有丝分裂。

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摘要

The germline cells of Drosophila are derived from pole cells, which form at the posterior pole of the blastoderm and become primordial germ cells (PGCs). To elucidate the signal transduction pathways for the development of embryonic PGCs, we examined the effects of various growth factors on the proliferation of PGCs. Up- and down-regulation of Wingless (Wg) in both of soma and PGCs caused an increase and a decrease in the number of PGCs, respectively. The Wg/beta-catenin signaling pathway began to occur in PGCs at the same time as the PGCs began to divide during the embryonic stage in both sexes. In addition, PGCs were found to produce wg mRNA as they begin to divide. Thus, Wg functions as an autocrine factor to initiate mitosis in embryonic PGCs. Decapentaplegic affected the growth of PGCs from the end of the embryonic stage. The results indicate that these growth factors regulate the division of embryonic PGCs in a stage-specific manner.
机译:果蝇的生殖细胞来源于极细胞,其形成于胚盘的后极,并成为原始生殖细胞(PGC)。为了阐明胚胎PGCs发育的信号转导途径,我们研究了各种生长因子对PGCs增殖的影响。体细胞和PGC中无翅(Wg)的上调和下调分别导致PGC数量增加和减少。 Wg /β-catenin信号通路开始在PGCs中发生,而PGCs在两个性别的胚胎期开始分裂的同时。另外,发现PGC在开始分裂时会产生wg mRNA。因此,Wg用作引发胚胎PGC中有丝分裂的自分泌因子。从胚胎期末开始,十足瘫痪影响了PGC的生长。结果表明,这些生长因子以特定阶段的方式调节胚胎PGC的分裂。

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