3D-Evo空间:基因表达和选择性剪接调控的进化。

IF 8.7 1区 生物学 Q1 GENETICS & HEREDITY
Federica Mantica, Manuel Irimia
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引用次数: 1

摘要

动物物种表现出相对较高的基因保守水平,但它们表现出多种细胞类型和组织表型。这些不同的表型主要是通过不同的基因使用来指定的,这依赖于几种机制。两种最相关的机制是调节基因转录,通常称为基因表达(rGE)和调节选择性剪接(rAS)。一些工作已经解决了rGE或rAS如何在整个进化过程中促进表型多样性,但是两种分子机制之间的背对背比较,特别是强调它们的共同调节原理和独特特性,仍然缺乏。在这篇综述中,我们提出了一个创新的框架,从不同的角度统一比较rGE和rAS:三维(3D)-evo空间。我们使用3D-evo空间来全面(a)回顾rGE和rAS的分子基础(即分子轴),(b)描述它们所贡献的组织特异性表型(即组织轴),以及(c)描述驱动rGE和rAS程序进化的决定因素(即进化轴)。最后,我们通过讨论rGE和rAS组织程序进化的一般趋势和具体例子,统一了从三个轴出现的观点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The 3D-Evo Space: Evolution of Gene Expression and Alternative Splicing Regulation.

Animal species present relatively high levels of gene conservation, and yet they display a great variety of cell type and tissue phenotypes. These diverse phenotypes are mainly specified through differential gene usage, which relies on several mechanisms. Two of the most relevant mechanisms are regulated gene transcription, usually referred to as gene expression (rGE), and regulated alternative splicing (rAS). Several works have addressed how either rGE or rAS contributes to phenotypic diversity throughout evolution, but a back-to-back comparison between the two molecular mechanisms, specifically highlighting both their common regulatory principles and unique properties, is still missing. In this review, we propose an innovative framework for the unified comparison between rGE and rAS from different perspectives: the three-dimensional (3D)-evo space. We use the 3D-evo space to comprehensively (a) review the molecular basis of rGE and rAS (i.e., the molecular axis), (b) depict the tissue-specific phenotypes they contribute to (i.e., the tissue axis), and (c) describe the determinants that drive the evolution of rGE and rAS programs (i.e., the evolution axis). Finally, we unify the perspectives emerging from the three axes by discussing general trends and specific examples of rGE and rAS tissue program evolution.

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来源期刊
Annual review of genetics
Annual review of genetics 生物-遗传学
CiteScore
18.30
自引率
0.90%
发文量
17
期刊介绍: The Annual Review of Genetics, published since 1967, comprehensively covers significant advancements in genetics. It encompasses various areas such as biochemical, behavioral, cell, and developmental genetics, evolutionary and population genetics, chromosome structure and transmission, gene function and expression, mutation and repair, genomics, immunogenetics, and other topics related to the genetics of viruses, bacteria, fungi, plants, animals, and humans.
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