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基因家族进化与同源性:基因组学与系统发育学的交汇

Gene family evolution and homology: genomics meets phylogenetics.

作者信息

Thornton J W, DeSalle R

机构信息

Department of Biological Sciences and Center for Environmental Research and Conservation, Columbia University, New York, New York 10027, USA.

出版信息

Annu Rev Genomics Hum Genet. 2000;1:41-73. doi: 10.1146/annurev.genom.1.1.41.

Abstract

With the advent of high-throughput DNA sequencing and whole-genome analysis, it has become clear that the coding portions of the genome are organized hierarchically in gene families and superfamilies. Because the hierarchy of genes, like that of living organisms, reflects an ancient and continuing process of gene duplication and divergence, many of the conceptual and analytical tools used in phylogenetic systematics can and should be used in comparative genomics. Phylogenetic principles and techniques for assessing homology, inferring relationships among genes, and reconstructing evolutionary events provide a powerful way to interpret the ever increasing body of sequence data. In this review, we outline the application of phylogenetic approaches to comparative genomics, beginning with the inference of phylogeny and the assessment of gene orthology and paralogy. We also show how the phylogenetic approach makes possible novel kinds of comparative analysis, including detection of domain shuffling and lateral gene transfer, reconstruction of the evolutionary diversification of gene families, tracing of evolutionary change in protein function at the amino acid level, and prediction of structure-function relationships. A marriage of the principles of phylogenetic systematics with the copious data generated by genomics promises unprecedented insights into the nature of biological organization and the historical processes that created it.

摘要

随着高通量DNA测序和全基因组分析的出现,很明显基因组的编码部分在基因家族和超家族中呈层次结构组织。由于基因的层次结构,如同生物体的层次结构一样,反映了基因复制和分化这一古老且持续的过程,系统发育系统学中使用的许多概念和分析工具能够且应该用于比较基因组学。用于评估同源性、推断基因间关系以及重建进化事件的系统发育原理和技术,为解释不断增加的序列数据提供了有力的方法。在本综述中,我们概述了系统发育方法在比较基因组学中的应用,首先是系统发育的推断以及基因直系同源和旁系同源的评估。我们还展示了系统发育方法如何使新型的比较分析成为可能,包括结构域改组和横向基因转移的检测、基因家族进化多样化的重建、氨基酸水平上蛋白质功能进化变化的追踪以及结构 - 功能关系的预测。系统发育系统学原理与基因组学产生的大量数据相结合,有望为生物组织的本质以及创造它的历史过程带来前所未有的深刻见解。

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