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Knockdown of SKN-1 and the Wnt effector TCF/POP-1 reveals differences in endomesoderm specification in C. briggsae as compared with C. elegans

机译:击倒SKN-1和Wnt效应子TCF / POP-1揭示了秀丽隐杆线虫与秀丽隐杆线虫的内膜中膜规格差异

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摘要

In the nematode, C. elegans, the bZIP/homeodomain transcription factor SKN-1 and the Wnt effector TCF/POP-1 are central to the maternal specification of the endomesoderm prior to gastrulation. The 8-cell stage blastomere MS is primarily a mesodermal precursor, giving rise to cells of the pharynx and body muscle among others, while its sister E clonally generates the entire endoderm (gut). In C. elegans, loss of SKN-1 results in the absence of MS-derived tissues all of the time, and loss of gut most of the time, while loss of POP-1 results in a mis-specification of MS as an E-like cell, resulting in ectopic gut. We show that in C. briggsae, RNAi of skn-1 results in a stronger E defect but no apparent MS defect, while RNAi of pop-1 results in loss of gut and an apparent E to MS transformation, the opposite of the pop-1 knockdown phenotype seen in C. elegans. The difference in pop-1(−) phenotypes correlates with changes in how the endogenous endoderm-specifying end genes are regulated by POP-1 in the two species. Our results suggest that integration of Wnt-dependent and Wnt-independent cell fate specification pathways within the Caenorhabditis genus can occur in different ways.
机译:在线虫秀丽隐杆线虫中,bZIP /同源结构域转录因子SKN-1和Wnt效应子TCF / POP-1对胃胚形成之前内膜的母体规格至关重要。 8细胞阶段的卵裂球MS主要是中胚层的前体,会产生咽部和身体肌肉等细胞,而其姊妹E会克隆产生整个内胚层(内脏)。在秀丽隐杆线虫中,SKN-1的丢失导致始终不存在MS衍生的组织,并且大部分时间都缺乏肠道,而POP-1的丢失导致MS作为E的错误指定样细胞,导致异位肠。我们显示在C. briggsae中,skn-1的RNAi导致更强的E缺陷,但没有明显的MS缺陷,而pop-1的RNAi导致肠道损失和表观的E向MS转化,这与pop-在秀丽隐杆线虫中观察到1种敲低表型。 pop-1(-)表型的差异与这两种物种中内源性内胚层特异性末端基因如何受POP-1调控的方式变化有关。我们的结果表明,Caenorhabditis属内Wnt依赖性和Wnt依赖性细胞命运规范途径的整合可能以不同的方式发生。

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