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首页> 外文期刊>The Journal of Comparative Neurology >Gene expression analysis of developing cell groups in the pretectal region of Xenopus laevis
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Gene expression analysis of developing cell groups in the pretectal region of Xenopus laevis

机译:葛根省南宫南宫市改防地区发展细胞基因的基因表达分析

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Our previous analysis of progenitor domains in the pretectum of Xenopus revealed three molecularly distinct anteroposterior subdivisions, identified as precommissural (PcP), juxtacommissural (JcP), and commissural (CoP) histogenetic domains (Morona et al. [2011] J Comp Neurol 519:1024-1050). Here we analyzed at later developmental stages the nuclei derived from these areas, attending to their gene expression patterns and histogenesis. Transcription-factor gene markers were used to selectively map derivatives of each domain: Pax7 and Pax6 (CoP); Foxp1 and Six3 (JcP); and Xiro1, VGlut2, Ebf1, and Ebf3 (PcP). Additional genoarchitectural information was provided by the expression of Gbx2, NPY, Lhx1, and Lhx9. This allowed both unambiguous characterization of the anuran pretectal nuclei with regard to their origin in the three early anteroposterior progenitor domains, and their comparison with counterparts in the chick and mouse pretectum. Our observations demonstrated a molecular conservation, during practically all the stages analyzed, for most of the main markers used to define genoarchitecturally the main derivatives of each pretectal domain. We found molecular evidence to propose homologous derivatives from the CoP (olivary pretectal, parvocellular, and magnocellular posterior commissure and lateral terminal nuclei), JcP (spiriformis lateral and lateral terminal nuclei), and PcP (anterior pretectal nucleus) to those described in avian studies. These results represent significant progress in the comprehension of the diencephalic region of Xenopus and show that the organization of the pretectum possesses many features shared with birds. J. Comp. Neurol. 525:715-752, 2017. (c) 2016 Wiley Periodicals, Inc.
机译:我们以前对Xenopus的预备祖的祖域分析显示出三个分子不同的前后细胞,鉴定为备管(PCP),JUXTACASURALURY(JCP)和外遗工组织遗传学域(MORONA等人。[2011] J JO COMP NEUROL 519: 1024-1050)。在这里,我们在后期发育阶段分析了来自这些区域的核,参加了它们的基因表达模式和组织血症。转录因子基因标志物用于选择性地图每个结构域的衍生物:pax7和pax6(cop); Foxp1和Six3(JCP);和Xiro1,Vglut2,EBF1和EBF3(PCP)。通过GBX2,NPY,LHX1和LHX9的表达提供了额外的基础建筑信息。这允许在三个早期前期前剂量祖域中的原始血管核域中明确表征阳离子防护核,以及它们与小鸡和小鼠防范的对应物的比较。我们的观察结果证明了分子保护,在实际上分析的所有阶段,对于用于定义每个防护结构域的主要衍生物的大多数主要标记物。我们发现分子证据提出来自COP(橄榄树防护,宫细胞和甲型粒细胞和横向末端核),JCP(Spiriformis横向末端核细胞核)和PCP(前卫防护细胞核)的同源衍生物到禽类研究中所述的那些。这些结果代表了对外爪市的皮肤病地区的理解的重大进展,并表明,预补的组织具有许多与鸟类共享的特征。 J. Comp。神经醇。 525:715-752,2017。(c)2016年Wiley期刊,Inc。

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