首页> 外文期刊>Marine biotechnology >The Molecular Differentiation of Anatomically Paired Left and Right Mantles of the Pacific Oyster Emphasis Type='Italic'>Crassostrea gigas/Emphasis>
【24h】

The Molecular Differentiation of Anatomically Paired Left and Right Mantles of the Pacific Oyster Emphasis Type='Italic'>Crassostrea gigas/Emphasis>

机译:分子牡蛎的解剖左右罩和右侧罩的分子分化。强调=“斜体”> Crassostrea Gigas& /重点>

获取原文
获取原文并翻译 | 示例
           

摘要

Left-right (L-R) asymmetry is controlled by gene regulation pathways for the L-R axis, and in vertebrates, the gene Pitx2 in TGF?β signaling pathway plays important roles in the asymmetrical formation of organs. However, less is known about the asymmetries of anatomically identical paired organs, as well as the transcriptional regulation mechanism of the gene Pitx in invertebrates. Here, we report the molecular biological differences between the left and right mantles of an invertebrate, the Pacific oyster Crassostrea gigas , and propose one possible mechanism underlying those differences. RNA sequencing (RNA-seq) analysis indicated that the paired organs showed different gene expression patterns, suggesting possible functional differences in shell formation, pheromone signaling, nerve conduction, the stress response, and other physiological processes. RNA-seq and real-time qPCR analysis indicated high right-side expression of the Pitx homolog ( cgPitx ) in oyster mantle, supporting a conserved role for Pitx in controlling asymmetry. Methylation-dependent restriction-site associated DNA sequencing (MethylRAD) identified a methylation site in the promoter region of cgPitx and showed significantly different methylation levels between the left and right mantles. This is the first report, to our knowledge, of such a difference in methylation in spiralians, and it was further confirmed in 18 other individuals by using a pyrosequencing assay. The miRNome analysis and the TGF-β receptor/Smad inhibition experiment further supported that several genes in TGF?β signaling pathway may be related with the L/R asymmetry of oyster mantles. These results suggested that the molecular differentiation of the oyster’s paired left and right mantles is significant, TGF?β signaling pathway could be involved in establishing or maintaining the asymmetry, and the cgPitx gene as one of genes in this pathway; the different methylation levels in its promoter regions between L/R mantles was the one of possible mechanisms regulating the left-right functional differentiation.
机译:左右(L-R)不对称由L-R轴的基因调节途径控制,并且在脊椎动物中,TGF中的基因pitx2在Organs的不对称地层中起重要作用。然而,关于解剖学相同的配对器官的不对称性的较少,以及无脊椎动物中基因PITX的转录调节机制。在这里,我们报告了无脊椎动物,太平洋牡蛎鲫鱼的左右式露头之间的分子生物学差异,并提出了一种可能的机制差异。 RNA测序(RNA-SEQ)分析表明,配对器官显示出不同的基因表达模式,表明壳体形成,信息素信号,神经传导,应力反应和其他生理过程可能的功能差异。 RNA-SEQ和实时QPCR分析表明牡蛎幔皮质子同源物(CGPitx)的高右侧表达,支持对控制不对称的PITX的保守作用。甲基化依赖性限制性位点相关的DNA测序(甲基rad)鉴定了CGPitx的启动子区中的甲基化位点,在左右式罩之间显示出显着不同的甲基化水平。这是我们知识的第一份报告,对螺旋体中甲基化的这种差异,通过使用焦点测定法在18个其他个体中进一步证实。 MiRNOME分析和TGF-β受体/ Smad抑制实验进一步支持TGFα中的几个基因β信号通路可以与牡蛎幔的L / R不对称有关。这些结果表明,牡蛎配对左右碎片的分子分化是显着的,TGFα信号传导途径可以参与建立或维持不对称性,以及CGPitx基因作为该途径中的基因之一; L / R幔之间的促进剂区域中的不同甲基化水平是调节左右官能分化的可能机制之一。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号