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Asymmetric paralog evolution between the cryptic gene Bmp16 and its well-studied sister genes Bmp2 and Bmp4

机译:隐秘基因Bmp16及其经过深入研究的姐妹基因Bmp2和Bmp4之间的不对称旁系同源进化

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摘要

The vertebrate gene repertoire is characterized by “cryptic” genes whose identification has been hampered by their absence from the genomes of well-studied species. One example is the Bmp16 gene, a paralog of the developmental key genes Bmp2 and -4. We focus on the Bmp2/4/16 group of genes to study the evolutionary dynamics following gen(om)e duplications with special emphasis on the poorly studied Bmp16 gene. We reveal the presence of Bmp16 in chondrichthyans in addition to previously reported teleost fishes and reptiles. Using comprehensive, vertebrate-wide gene sampling, our phylogenetic analysis complemented with synteny analyses suggests that Bmp2, -4 and -16 are remnants of a gene quartet that originated during the two rounds of whole-genome duplication (2R-WGD) early in vertebrate evolution. We confirm that Bmp16 genes were lost independently in at least three lineages (mammals, archelosaurs and amphibians) and report that they have elevated rates of sequence evolution. This finding agrees with their more “flexible” deployment during development; while Bmp16 has limited embryonic expression domains in the cloudy catshark, it is broadly expressed in the green anole lizard. Our study illustrates the dynamics of gene family evolution by integrating insights from sequence diversification, gene repertoire changes, and shuffling of expression domains.
机译:脊椎动物基因库的特征是“隐秘”基因,其缺乏良好研究物种的基因组使其身份的识别受到阻碍。一个例子是Bmp16基因,它是发育关键基因Bmp2和-4的旁系同源物。我们专注于Bmp2 / 4/16基因组,以研究gen(om)重复后的进化动力学,特别着重于研究不足的Bmp16基因。除了先前报道的硬骨鱼类和爬行动物以外,我们还发现软骨鱼类中存在Bmp16。使用全面的脊椎动物范围内的基因采样,我们的系统发育分析与同构分析相辅相成,表明Bmp2,-4和-16是起源于脊椎动物早期两轮全基因组复制(2R-WGD)的基因四重奏的残余演化。我们确认Bmp16基因在至少三个谱系(哺乳动物,弓形虫和两栖动物)中独立丢失,并报告它们的序列进化速率提高。这一发现与他们在开发过程中更“灵活”的部署是一致的。虽然Bmp16在多云的猫鲨中具有有限的胚胎表达结构域,但在绿色的小蜥蜴中广泛表达。我们的研究通过整合来自序列多样化,基因库变化和表达域改组的见解来说明基因家族进化的动力学。

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