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动物单细胞祖先中基因组创新的动力学

Dynamics of genomic innovation in the unicellular ancestry of animals.

作者信息

Grau-Bové Xavier, Torruella Guifré, Donachie Stuart, Suga Hiroshi, Leonard Guy, Richards Thomas A, Ruiz-Trillo Iñaki

机构信息

Institut de Biologia Evolutiva (CSIC-Universitat Pompeu Fabra), Barcelona, Catalonia, Spain.

Departament de Genètica, Microbiologia i Estadística, Universitat de Barelona, Barcelona, Catalonia, Spain.

出版信息

Elife. 2017 Jul 20;6:e26036. doi: 10.7554/eLife.26036.

Abstract

Which genomic innovations underpinned the origin of multicellular animals is still an open debate. Here, we investigate this question by reconstructing the genome architecture and gene family diversity of ancestral premetazoans, aiming to date the emergence of animal-like traits. Our comparative analysis involves genomes from animals and their closest unicellular relatives (the Holozoa), including four new genomes: three Ichthyosporea and . Here, we show that the earliest animals were shaped by dynamic changes in genome architecture before the emergence of multicellularity: an early burst of gene diversity in the ancestor of Holozoa, enriched in transcription factors and cell adhesion machinery, was followed by multiple and differently-timed episodes of synteny disruption, intron gain and genome expansions. Thus, the foundations of animal genome architecture were laid before the origin of complex multicellularity - highlighting the necessity of a unicellular perspective to understand early animal evolution.

摘要

究竟是哪些基因组创新支撑了多细胞动物的起源,这仍是一个悬而未决的问题。在此,我们通过重建祖先前体动物的基因组结构和基因家族多样性来研究这个问题,旨在确定类动物特征出现的时间。我们的比较分析涉及动物及其最亲近的单细胞亲属(全动物界)的基因组,包括四个新基因组:三个鱼孢菌基因组和……在此,我们表明,最早的动物在多细胞性出现之前就受到基因组结构动态变化的影响:全动物界祖先中基因多样性的早期爆发,富含转录因子和细胞粘附机制,随后是多次不同时间的同线性破坏、内含子获得和基因组扩张事件。因此,动物基因组结构的基础在复杂多细胞性起源之前就已奠定——这凸显了从单细胞角度理解早期动物进化的必要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa82/5560861/041c3074136b/elife-26036-fig1.jpg

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