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斑马鱼hoxc13直系同源基因在表达模式和功能上的差异:Hoxc13b在早期胚胎中的作用招募

Differences in expression pattern and function between zebrafish hoxc13 orthologs: recruitment of Hoxc13b into an early embryonic role.

作者信息

Thummel Ryan, Li Li, Tanase Carmen, Sarras Michael P, Godwin Alan R

机构信息

Department of Molecular and Integrative Physiology, University of Kansas Medical Center, Kansas City, KS 66160, USA.

出版信息

Dev Biol. 2004 Oct 15;274(2):318-33. doi: 10.1016/j.ydbio.2004.07.018.

Abstract

Vertebrate Hox genes are generally believed to initiate expression at the primitive streak or early neural plate stages. The timing and spatial restrictions of the Hox expression patterns during these stages correlate well with their demonstrated role in axial patterning. Here we demonstrate that one zebrafish hoxc13 ortholog, hoxc13a, has an expression pattern in the developing tail bud that is consistent with the gene playing a role in axial patterning. However, the second hoxc13 ortholog, hoxc13b, is maternally expressed and is detectable in every cell of early cleavage embryos through gastrulae. In addition, both transcript and protein are detectable at these stages. At 19 h post fertilization (hpf), hoxc13b expression is up-regulated in the tail bud, becoming restricted to the tail bud by 24 hpf. Importantly, by 24 hpf, hoxc13b morphants show a specific developmental delay, which can be rescued by co-injecting synthetic capped hoxc13a or hoxc13b message. These data suggest some functional divergence due to altered expression patterns of the two hoxc13 orthologs after duplication. Further characterization of the hoxc13b morphant delay reveals that it is biphasic in nature, with the first phase of the delay occurring before gastrulation, suggesting a new role for vertebrate Hox genes before their conserved role in axial patterning. The extent of the delay does not change through 20 hpf; however, an additional delay emerges at this time. Notably, this second phase of the delay correlates with hoxc13b expression pattern becoming restricted to the tail bud.

摘要

脊椎动物的Hox基因通常被认为在原条或早期神经板阶段开始表达。在这些阶段,Hox表达模式的时间和空间限制与其在轴向模式形成中所起的作用密切相关。在这里,我们证明斑马鱼的一个hoxc13直系同源基因hoxc13a在发育中的尾芽中有表达模式,这与该基因在轴向模式形成中发挥作用一致。然而,第二个hoxc13直系同源基因hoxc13b是母源表达的,在早期卵裂胚胎的每个细胞中直至原肠胚都可检测到。此外,在这些阶段转录本和蛋白质都可检测到。在受精后19小时(hpf),hoxc13b在尾芽中的表达上调,到24 hpf时局限于尾芽。重要的是,到24 hpf时,hoxc13b morphants表现出特定的发育延迟,通过共注射合成的加帽hoxc13a或hoxc13b mRNA可挽救这种延迟。这些数据表明,复制后两个hoxc13直系同源基因表达模式的改变导致了一些功能差异。对hoxc13b morphants延迟的进一步表征表明,它本质上是双相的,延迟的第一阶段发生在原肠胚形成之前,这表明脊椎动物Hox基因在其在轴向模式形成中的保守作用之前有一个新的作用。延迟的程度在20 hpf之前没有变化;然而,此时出现了额外的延迟。值得注意的是,延迟的第二阶段与hoxc13b表达模式局限于尾芽相关。

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