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Genesis of the vertebrate FoxP subfamily member genes occurred during two ancestral whole genome duplication events

机译:脊椎动物FoxP亚家族成员基因的发生发生在两个祖先全基因组复制事件中

摘要

The vertebrate FoxP subfamily genes play important roles in the construction of essential functional modules involved in physiological and developmental processes. To explore the adaptive evolution of functional modules associated with the FoxP subfamily member genes, it is necessary to study the gene duplication process. We detected four member genes of the FoxP subfamily in sea lampreys (a representative species of jawless vertebrates) through genome screenings and phylogenetic analyses. Reliable paralogons (i.e. paralogous chromosome segments) have rarely been detected in scaffolds of FoxP subfamily member genes in sea lampreys due to the considerable existence of HTH_Tnp_Tc3_2 transposases. However, these transposases did not alter gene numbers of the FoxP subfamily in sea lampreys. The coincidence between the "1-4" gene duplication pattern of FoxP subfamily genes from invertebrates to vertebrates and two rounds of ancestral whole genome duplication (1R- and 2R-WGD) events reveal that the FoxP subfamily of vertebrates was quadruplicated in the 1R- and 2R-WGD events. Furthermore, we deduced that a synchronous gene duplication process occurred for the FoxP subfamily and for three linked gene families/subfamilies (i.e. MIT family, mGluR group III and PLXNA subfamily) in the 1R- and 2R-WGD events using phylogenetic analyses and mirror-dendrogram methods (i.e. algorithms to test protein-protein interactions). Specifically, the ancestor of FoxP1 and FoxP3 and the ancestor of FoxP2 and FoxP4 were generated in 1R-WGD event. In the subsequent 2R-WGD event, these two ancestral genes were changed into FoxP1, FoxP2, FoxP3 and FoxP4. The elucidation of these gene duplication processes shed light on the phylogenetic relationships between functional modules of the FoxP subfamily member genes. (C) 2016 Elsevier B.V. All rights reserved.
机译:脊椎动物FoxP亚家族基因在涉及生理和发育过程的基本功能模块的构建中起着重要作用。为了探索与FoxP亚家族成员基因相关的功能模块的适应性进化,有必要研究基因复制过程。通过基因组筛选和系统发育分析,我们在海鳗(无颚脊椎动物的代表物种)中检测到FoxP亚家族的四个成员基因。由于HTH_Tnp_Tc3_2转座酶的大量存在,很少在海鳗中的FoxP亚家族成员基因的支架中检测到可靠的旁系同源物(即,旁系染色体片段)。然而,这些转座酶并没有改变七rey鳗中FoxP亚家族的基因数目。从无脊椎动物到脊椎动物的FoxP亚家族基因的“ 1-4”基因复制模式与两轮祖先全基因组复制(1R-和2R-WGD)事件之间的一致性表明,脊椎动物的FoxP亚家族在1R-中被复制了四倍。和2R-WGD事件。此外,我们通过系统进化分析和镜像分析,推论了FoxP亚家族和1R-和2R-WGD事件中三个连锁基因家族/亚家族(即MIT家族,mGluR III组和PLXNA亚家族)发生了同步基因复制过程。树状图方法(即测试蛋白质与蛋白质相互作用的算法)。具体而言,在1R-WGD事件中生成FoxP1和FoxP3的祖先以及FoxP2和FoxP4的祖先。在随后的2R-WGD事件中,这两个祖先基因被更改为FoxP1,FoxP2,FoxP3和FoxP4。这些基因复制过程的阐明为FoxP亚家族成员基因的功能模块之间的系统发育关系提供了启示。 (C)2016 Elsevier B.V.保留所有权利。

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    Song XW; Tang YZ; Wang YJ;

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