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Evolutionary and developmental analysis reveals KANK genes were co-opted for vertebrate vascular development

机译:进化和发育分析表明KANK基因被选作脊椎动物血管发育

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摘要

Gene co-option, usually after gene duplication, in the evolution of development is found to contribute to vertebrate morphological innovations, including the endothelium-based vascular system. Recently, a zebrafish kank gene was found expressed in the vascular vessel primordium, suggesting KANK genes are a component of the developmental tool kit for the vertebrate vascular system. However, how the KANK gene family is involved in vascular vessel development during evolution remains largely unknown. First, we analyzed the molecular evolution of the KANK genes in metazoan, and found that KANK1, KANK2, KANK3 and KANK4 emerged in the lineage of vertebrate, consistent with the two rounds of vertebrate whole-genome duplications (WGD). Moreover, KANK genes were further duplicated in teleosts through the bony-fish specific WGD, while only kank1 and kank4 duplicates were retained in some of the examined fish species. We also found all zebrafish kank genes, except kank1b, are primarily expressed during embryonic vascular development. Compared to invertebrate KANK gene expression in the central nervous system, the vascular expression of zebrafish kank genes suggested KANK genes were co-opted for vertebrate vascular development. Given the cellular roles of KANK genes, our results suggest that this co-option may facilitate the evolutionary origin of vertebrate vascular vessels.
机译:人们发现,通常在基因复制后,在发育过程中进行基因共选有助于脊椎动物的形态学创新,包括基于内皮的血管系统。最近,发现斑马鱼kank基因在血管原基中表达,表明KANK基因是脊椎动物血管系统开发工具套件的组成部分。然而,在进化过程中,KANK基因家族如何参与血管发育尚不清楚。首先,我们分析了后生动物中KANK基因的分子进化,发现KANK1,KANK2,KANK3和KANK4出现在脊椎动物的谱系中,与两轮脊椎动物全基因组重复(WGD)一致。此外,KANK基因通过骨鱼特异性WGD在硬骨鱼中进一步复制,而在某些受检鱼类中仅保留kank1和kank4重复。我们还发现,除kank1b外,所有斑马鱼的kank基因主要在胚胎血管发育过程中表达。与中枢神经系统中的无脊椎动物KANK基因表达相比,斑马鱼kank基因的血管表达表明KANK基因被选作脊椎动物的血管发育。考虑到 KANK 基因的细胞作用,我们的研究结果表明,这种共同选择可能有助于脊椎动物血管的进化起源。

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