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GATA family of transcription factors of vertebrates: phylogenetics and chromosomal synteny

机译:脊椎动物转录因子GATA家族:系统发育和染色体同构

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GATA genes are an evolutionarily conserved family, which encode a group of important transcription factors involved in the regulation of diverse processes including the development of the heart, haematopoietic system and sex gonads. However, the evolutionary history of the GATA family has not been completely understood. We constructed a complete phylogenetic tree with functional domain information of the GATA genes of both vertebrates and several invertebrates, and mapped the GATA genes onto relevant chromosomes. Conserved synteny was observed around the GATA loci on the chromosomes. GATAs have a tendency to segregate onto different chromosomes during evolution. The phylogenetic tree is consistent with the relevant functions of GATA members. Analysis of the zinc finger domain showed that the domain tends to be duplicated during evolution from invertebrates to vertebrates. We propose that the balance between duplications of zinc finger domains and GATA members should be maintained to exert their physiological roles in each evolutionary stage. Therefore, evolutionary pressure on the GATAs must exist to maintain the balance during evolution from invertebrates to vertebrates. These results reveal the evolutionary characteristics of the GATA family and contribute to a better understanding of the relationship between evolution and biological functions of the gene family, which will help to uncover the GATAs' biological roles, evolution and their relationship with associated diseases.
机译:GATA基因是一个进化保守的家族,其编码一组重要的转录因子,参与调控心脏,造血系统和性腺的发育等多种过程。但是,尚未完全了解GATA家族的进化史。我们用脊椎动物和一些无脊椎动物的GATA基因的功能域信息构建了完整的系统发育树,并将GATA基因定位到相关染色体上。在染色体上的GATA基因座周围观察到保守的同调。 GATA在进化过程中倾向于分离到不同的染色体上。系统发育树与GATA成员的相关功能一致。锌指结构域的分析表明,该结构域在从无脊椎动物到脊椎动物的进化过程中倾向于重复。我们建议应保持锌指结构域和GATA成员重复之间的平衡,以在每个进化阶段发挥其生理作用。因此,在从无脊椎动物到脊椎动物的进化过程中,必须存在对GATA的进化压力以维持平衡。这些结果揭示了GATA家族的进化特征,并有助于更好地理解基因家族的进化与生物学功能之间的关系,这将有助于揭示GATA的生物学作用,进化及其与相关疾病的关系。

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