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A Screen for Gene Paralogies Delineating Evolutionary Branching Order of Early Metazoa

机译:描绘早期后生动物进化分支顺序的基因旁系同源物筛选

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摘要

The evolutionary diversification of animals is one of Earth’s greatest marvels, yet its earliest steps are shrouded in mystery. Animals, the monophyletic clade known as Metazoa, evolved wildly divergent multicellular life strategies featuring ciliated sensory epithelia. In many lineages epithelial sensoria became coupled to increasingly complex nervous systems. Currently, different phylogenetic analyses of single-copy genes support mutually-exclusive possibilities that either Porifera or Ctenophora is sister to all other animals. Resolving this dilemma would advance the ecological and evolutionary understanding of the first animals and the evolution of nervous systems. Here we describe a comparative phylogenetic approach based on gene duplications. We computationally identify and analyze gene families with early metazoan duplications using an approach that mitigates apparent gene loss resulting from the miscalling of paralogs. In the transmembrane channel-like (TMC) family of mechano-transducing channels, we find ancient duplications that define separate clades for Eumetazoa (Placozoa + Cnidaria + Bilateria) Ctenophora, and one duplication that is shared only by Eumetazoa and Porifera. In the Max-like protein X (MLX and MLXIP) family of bHLH-ZIP regulators of metabolism, we find that all major lineages from Eumetazoa and Porifera (sponges) share a duplicated gene pair that is sister to the single-copy gene maintained in Ctenophora. These results suggest a new avenue for deducing deep phylogeny by choosing rather than avoiding ancient gene paralogies.
机译:动物的进化多样化是地球上最伟大的奇迹之一,但其最早的步骤却笼罩在神秘之中。动物是一类进化分支,称为后生动物(Metazoa),进化出具有纤毛的感觉上皮细胞的多发性多细胞生命策略。在许多谱系中,上皮感觉统合到越来越复杂的神经系统。当前,单拷贝基因的不同系统发育分析支持互斥的可能性,即Porifera或Ctenophora是所有其他动物的姊妹。解决这一难题将促进对第一批动物和神经系统进化的生态和进化认识。在这里,我们描述了一种基于基因重复的比较系统发生方法。我们使用一种减轻因旁系同源物误称而导致的明显基因损失的方法,通过计算鉴定和分析具有早期后生动物重复的基因家族。在跨膜通道样(TMC)的机械传递通道家族中,我们发现了古老的复制品,这些复制品为Eumetazoa(Placozoa + Cnidaria + Bilateria)Ctenophora定义了单独的进化枝,并且仅由Eumetazoa和Porifera共享一种复制品。在代谢的bHLH-ZIP调节剂的Max-like蛋白X(MLX和MLXIP)家族中,我们发现Eumetazoa和Porifera(海绵)的所有主要谱系都具有一个重复的基因对,该基因对是维持在其中的单拷贝基因的姐妹。 Ctenophora。这些结果为通过选择而不是避免古老的基因同源性推论深系统发育提供了一条新途径。

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