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真核生物基因组结构的进化:从快速进化的后生动物 Oikopleura dioica 研究中获得的启示:高突变率等非适应性力量可能影响基因组结构的进化。

Evolution of eukaryotic genome architecture: Insights from the study of a rapidly evolving metazoan, Oikopleura dioica: Non-adaptive forces such as elevated mutation rates may influence the evolution of genome architecture.

机构信息

MRC Laboratory of Molecular Biology, Hills Road, Cambridge, UK.

出版信息

Bioessays. 2011 Aug;33(8):592-601. doi: 10.1002/bies.201100034. Epub 2011 Jun 17.

Abstract

Recent sequencing of the metazoan Oikopleura dioica genome has provided important insights, which challenges the current understanding of eukaryotic genome evolution. Many genomic features of O. dioica show deviation from the commonly observed trends in other eukaryotic genomes. For instance, O. dioica has a rapidly evolving, highly compact genome with a divergent intron-exon organization. Additionally, O. dioica lacks the minor spliceosome and key DNA repair pathway genes. Even with a compact genome, O. dioica contains tandem repeats, comparable to other eukaryotes, and shows lineage-specific expansion of certain protein domains. Here, we review its genomic features in the context of current knowledge, discuss implications for contemporary biology and identify areas for further research. Analysis of the O. dioica genome suggests that non-adaptive forces such as elevated mutation rates might influence the evolution of genome architecture. The knowledge of unique genomic features and splicing mechanisms in O. dioica may be exploited for synthetic biology applications, such as generation of orthogonal splicing systems.

摘要

后生动物 Oikopleura dioica 基因组的最新测序提供了重要的见解,这对真核生物基因组进化的现有理解提出了挑战。O. dioica 的许多基因组特征与其他真核生物基因组中常见的趋势不同。例如,O. dioica 具有快速进化、高度紧凑的基因组,其内含子-外显子组织具有差异性。此外,O. dioica 缺乏次要剪接体和关键的 DNA 修复途径基因。即使基因组紧凑,O. dioica 也包含串联重复序列,与其他真核生物相当,并表现出某些蛋白质结构域的谱系特异性扩张。在这里,我们将在现有知识的背景下讨论其基因组特征,讨论对当代生物学的影响,并确定进一步研究的领域。对 O. dioica 基因组的分析表明,非适应性因素(如升高的突变率)可能会影响基因组结构的进化。对 O. dioica 中独特的基因组特征和剪接机制的了解可能会被用于合成生物学应用,例如生成正交剪接系统。

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