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首页> 外文期刊>Gene: An International Journal Focusing on Gene Cloning and Gene Structure and Function >Comparative genomics approach to the expression of figalpha, one of the earliest marker genes of oocyte differentiation in medaka (Oryzias latipes).
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Comparative genomics approach to the expression of figalpha, one of the earliest marker genes of oocyte differentiation in medaka (Oryzias latipes).

机译:比较基因组学方法来研究无花果的发育,无花果是在青中卵母细胞分化的最早标记基因之一。

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We analyzed molecular cascades of sex differentiation in medaka gonads by examining the transcriptional regulation of the oocyte-expressed gene, figalpha. We first confirmed that figalpha is one of the earliest marker genes of oocyte differentiation by quantitative RT-PCR and in situ hybridization. Expression of putative figalpha target genes, zpc4 and zpb, followed that of figalpha. A meiosis-specific gene, scp3, showed expression temporally and spatially similar to figalpha. To characterize the cis-regulatory sequences of figalpha, we compared genomic organizations of vertebrate figalpha genes. Both number and sequence homology of the C-terminal exons showed divergence, suggesting their less important roles. In the frog, Xenopus tropicalis, and in many teleosts, figalpha is located between hexokinase 2 and beta-adducin. We compared this genomic region for potential cis-regulatory elements and found no DNA stretches with high homology. In spite of this lack of sequence similarities, fluorescent protein transgenes surrounded with figalpha flanking sequences from the compact genomes of fugu or Tetraodon faithfully reproduced the endogenous expression of figalpha in the medaka oocytes, indicating conserved regulatory mechanisms.
机译:我们通过检查卵母细胞表达的基因figalpha的转录调控,分析了高aka性腺中性别分化的分子级联。我们首先通过定量RT-PCR和原位杂交证实figalpha是卵母细胞分化的最早标记基因之一。假定的figalpha靶基因zpc4和zpb的表达紧随figalpha之后。减数分裂特异性基因scp3在时间和空间上均与figalpha相似。为了表征Figalpha的顺式调控序列,我们比较了脊椎动物Figalpha基因的基因组组织。 C末端外显子的数量和序列同源性均显示出差异,表明它们的重要性较低。在青蛙,热带非洲爪蟾和许多硬骨鱼中,Figalpha位于己糖激酶2和β-adducin之间。我们比较了该基因组区域的潜在顺式调控元件,未发现具有高度同源性的DNA片段。尽管缺乏序列相似性,但荧光蛋白转基因被来自fugu或Tetraodon紧凑基因组的figalpha侧翼序列所包围,忠实地再现了花aka卵母细胞中figalpha的内源性表达,表明保守的调节机制。

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