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Jing WANG, Guang LI, Guang-Hui QIAN, Jun-Hao HUA, Yi-Quan WANG. 2016: 文昌鱼Wnt/β-catenin信号通路中8个基因的表达分析. 动物学研究, 37(3): 136-143. DOI: 10.13918/j.issn.2095-8137.2016.3.136
引用本文: Jing WANG, Guang LI, Guang-Hui QIAN, Jun-Hao HUA, Yi-Quan WANG. 2016: 文昌鱼Wnt/β-catenin信号通路中8个基因的表达分析. 动物学研究, 37(3): 136-143. DOI: 10.13918/j.issn.2095-8137.2016.3.136
Jing WANG, Guang LI, Guang-Hui QIAN, Jun-Hao HUA, Yi-Quan WANG. 2016. Expression analysis of eight amphioxus genes involved in the Wnt/β-catenin signaling pathway. Zoological Research, 37(3): 136-143. DOI: 10.13918/j.issn.2095-8137.2016.3.136
Citation: Jing WANG, Guang LI, Guang-Hui QIAN, Jun-Hao HUA, Yi-Quan WANG. 2016. Expression analysis of eight amphioxus genes involved in the Wnt/β-catenin signaling pathway. Zoological Research, 37(3): 136-143. DOI: 10.13918/j.issn.2095-8137.2016.3.136

文昌鱼Wnt/β-catenin信号通路中8个基因的表达分析

Expression analysis of eight amphioxus genes involved in the Wnt/β-catenin signaling pathway

  • 摘要: Wnt/β-catenin信号通路是后口动物胚胎发育的重要参与者,该通路在很多模式生物中都有过较为深入的研究,但其在原始脊索动物文昌鱼中功能的研究较少。为获取文昌鱼Wnt/β-catenin信号通路中详细的基础数据以便进一步的功能分析,我们鉴定分离了佛罗里达文昌鱼该信号通路中7个基因(Lrp5/6, Dvl, APC, CkIα, CkIδ, Gsk3β和Gro),系统进化分析表明文昌鱼基因组中这些基因家族中同源基因数目比脊椎动物中的少。整胚原位杂交分析结果表明这7个基因和该信号通路中另1成员Axin在文昌鱼受精卵中均有母源性表达,而且分布广泛;在早期分裂球至囊胚期间,Dvl基因的表达呈极性分布,主要位于动物极,而其余基因在各分裂球中的分布无明显差异;在原肠胚中期,这些基因均集中在预定中内胚层表达,但相互间的表达区域却不尽相同;待胚胎发育至神经胚时,它们的表达主要集中在轴旁体节或尾牙处;随着胚胎的发育,这些基因总的表达量均逐渐下降,在早期幼体时基因的表达只保留在咽区或者尾牙处。上述结果暗示,文昌鱼的Wnt/β-catenin信号通路可能涉及体节的形成、后部的生长,但没有参与中内胚层的分化。

     

    Abstract: The Wnt/β-catenin signaling pathway plays a crucial role in the embryonic development of metazoans. Although the pathway has been studied extensively in many model animals, its function in amphioxus, the most primitive chordate, remains largely uncharacterized. To obtain basic data for functional analysis, we identified and isolated seven genes (Lrp5/6, Dvl, APC, CkIα, CkIδ, Gsk3β, and Gro) of the Wnt/β-catenin signaling pathway from the amphioxus (Branchiostoma floridae) genome. Phylogenetic analysis revealed that amphioxus had fewer members of each gene family than that found in vertebrates. Whole-mount in situ hybridization showed that the genes were maternally expressed and broadly distributed throughout the whole embryo at the cleavage and blastula stages. Among them, Dvl was expressed asymmetrically towards the animal pole, while the others were evenly distributed in all blastomeres. At the mid-gastrula stage, the genes were specifically expressed in the primitive endomesoderm, but displayed different patterns. When the embryo developed into the neurula stage, the gene expressions were mainly detected in either paraxial somites or the tail bud. With the development of the embryo, the expression levels further decreased gradually and remained only in some pharyngeal regions or the tail bud at the larva stage. Our results suggest that the Wnt/β-catenin pathway might be involved in amphioxus somite formation and posterior growth, but not in endomesoderm specification.

     

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