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Evolution of transcriptional enhancers and animal diversity

机译:转录增强子和动物多样性的进化

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摘要

Deciphering the genetic bases that drive animal diversity is one of the major challenges of modern biology. Although four decades ago it was proposed that animal evolution was mainly driven by changes in cis-regulatory DNA elements controlling gene expression rather than in protein-coding sequences, only now are powerful bioinformatics and experimental approaches available to accelerate studies into how the evolution of transcriptional enhancers contributes to novel forms and functions. In the introduction to this Theme Issue, we start by defining the general properties of transcriptional enhancers, such as modularity and the coexistence of tight sequence conservation with transcription factor-binding site shuffling as different mechanisms that maintain the enhancer grammar over evolutionary time. We discuss past and current methods used to identify cell-type-specific enhancers and provide examples of howenhancers originate de novo, change and are lost in particular lineages. We then focus in the central part of this Theme Issue on analysing examples of how the molecular evolution of enhancers may change form and function. Throughout this introduction, we present the main findings of the articles, reviews and perspectives contributed to this Theme Issue that together illustrate some of the great advances and current frontiers in the field.
机译:破解驱动动物多样性的遗传基础是现代生物学的主要挑战之一。尽管四十年前有人提出动物进化主要是由控制基因表达的顺式调控DNA元件的变化驱动,而不是由蛋白质编码序列的驱动,但直到现在,强大的生物信息学和实验方法才可用于加速对转录的进化方式的研究。增强剂有助于新颖的形式和功能。在本主题的简介中,我们首先定义了转录增强子的一般属性,例如模块性以及紧密序列保守与转录因子结合位点改组的共存,作为在进化时间内保持增强子语法的不同机制。我们讨论了过去和当前用于鉴定细胞类型特异性增强子的方法,并提供了增强剂从头发生,发生变化并在特定谱系中丢失的实例。然后,我们将重点放在本主题的中心部分,以分析增强剂的分子进化如何改变形式和功能的例子。在整个引言中,我们将介绍对本主题有贡献的文章,评论和观点的主要发现,共同说明该领域的一些重大进展和当前前沿。

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