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Unexpected complexity of the Wnt gene family in a sea anemone

机译:海葵中Wnt基因家族的异常复杂性

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The Wnt gene family encodes secreted signalling molecules that control cell fate in animal development and human diseases. Despite its significance, the evolution of this metazoan-specific protein family is unclear. In vertebrates, twelve Wnt subfamilies were defined, of which only six have counterparts in Ecdysozoa (for example, Drosophila and Caenorhabditis). Here, we report the isolation of twelve Wnt genes from the sea anemone Nema-tostella vectensis, a species representing the basal group within cnidarians. Cnidarians are diploblastic animals and the sister-group to bilaterian metazoans. Phylogenetic analyses of N. vectensis Wnt genes reveal a thus far unpredicted ancestral diversity within the Wnt family. Cnidarians and bilaterians have at least eleven of the twelve known Wnt gene subfamilies in common; five subfamilies appear to be lost in the protostome lineage. Expression patterns of Wnt genes during N. vectensis embryogenesis indicate distinct roles of Wnts in gastrulation, resulting in serial overlapping expression domains along the primary axis of the planula larva. This unexpectedly complex inventory of Wnt family signalling factors evolved in early multi-cellular animals about 650 million years (Myr) ago, predating the Cambrian explosion by at least 100 Myr (refs 5, 8). It emphasizes the crucial function of Wnt genes in the diversification of eumetazoan body plans.
机译:Wnt基因家族编码在动物发育和人类疾病中控制细胞命运的分泌信号分子。尽管具有重要意义,但尚不清楚该后生动物特异性蛋白家族的进化。在脊椎动物中,定义了12个Wnt亚科,其中只有6个在Ecdysozoa中具有对等亚科(例如,果蝇和秀丽隐杆线虫)。在这里,我们报告了十二种Wnt基因从海葵Nema-tostella vectensis的分离,该物种代表cnidarians中的基础群体。头颅动物是双叶动物,是双生后生动物的姐妹群。对N. vectensis Wnt基因的系统进化分析显示,Wnt家族中迄今为止尚无法预测的祖先多样性。在十二个已知的Wnt基因亚家族中,念头动物和双语者至少有11个相同。在原蛋白质谱系中似乎丢失了五个亚科。 Wnt基因在N. vectensis胚发生过程中的表达模式表明Wnts在促胃中有不同的作用,导致沿扁平幼虫主轴的一系列重叠的表达域。 Wnt家族信号因子的这一出乎意料的复杂清单是在大约6.5亿年前(米尔)的早期多细胞动物中进化的,比寒武纪爆发至少早了100 Myr(参考文献5、8)。它强调了Wnt基因在杜鹃花人体计划多样化中的关键功能。

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