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有袋动物家短尾负鼠的基因组揭示了非编码序列的创新。

Genome of the marsupial Monodelphis domestica reveals innovation in non-coding sequences.

作者信息

Mikkelsen Tarjei S, Wakefield Matthew J, Aken Bronwen, Amemiya Chris T, Chang Jean L, Duke Shannon, Garber Manuel, Gentles Andrew J, Goodstadt Leo, Heger Andreas, Jurka Jerzy, Kamal Michael, Mauceli Evan, Searle Stephen M J, Sharpe Ted, Baker Michelle L, Batzer Mark A, Benos Panayiotis V, Belov Katherine, Clamp Michele, Cook April, Cuff James, Das Radhika, Davidow Lance, Deakin Janine E, Fazzari Melissa J, Glass Jacob L, Grabherr Manfred, Greally John M, Gu Wanjun, Hore Timothy A, Huttley Gavin A, Kleber Michael, Jirtle Randy L, Koina Edda, Lee Jeannie T, Mahony Shaun, Marra Marco A, Miller Robert D, Nicholls Robert D, Oda Mayumi, Papenfuss Anthony T, Parra Zuly E, Pollock David D, Ray David A, Schein Jacqueline E, Speed Terence P, Thompson Katherine, VandeBerg John L, Wade Claire M, Walker Jerilyn A, Waters Paul D, Webber Caleb, Weidman Jennifer R, Xie Xiaohui, Zody Michael C, Graves Jennifer A Marshall, Ponting Chris P, Breen Matthew, Samollow Paul B, Lander Eric S, Lindblad-Toh Kerstin

机构信息

Broad Institute of MIT and Harvard, 7 Cambridge Center, Cambridge, Massachusetts 02142, USA.

出版信息

Nature. 2007 May 10;447(7141):167-77. doi: 10.1038/nature05805.

Abstract

We report a high-quality draft of the genome sequence of the grey, short-tailed opossum (Monodelphis domestica). As the first metatherian ('marsupial') species to be sequenced, the opossum provides a unique perspective on the organization and evolution of mammalian genomes. Distinctive features of the opossum chromosomes provide support for recent theories about genome evolution and function, including a strong influence of biased gene conversion on nucleotide sequence composition, and a relationship between chromosomal characteristics and X chromosome inactivation. Comparison of opossum and eutherian genomes also reveals a sharp difference in evolutionary innovation between protein-coding and non-coding functional elements. True innovation in protein-coding genes seems to be relatively rare, with lineage-specific differences being largely due to diversification and rapid turnover in gene families involved in environmental interactions. In contrast, about 20% of eutherian conserved non-coding elements (CNEs) are recent inventions that postdate the divergence of Eutheria and Metatheria. A substantial proportion of these eutherian-specific CNEs arose from sequence inserted by transposable elements, pointing to transposons as a major creative force in the evolution of mammalian gene regulation.

摘要

我们报告了灰色短尾负鼠(Monodelphis domestica)基因组序列的高质量草图。作为首个被测序的有袋类物种,负鼠为哺乳动物基因组的组织和进化提供了独特的视角。负鼠染色体的独特特征为近期有关基因组进化和功能的理论提供了支持,包括偏向性基因转换对核苷酸序列组成的强烈影响,以及染色体特征与X染色体失活之间的关系。负鼠基因组与真兽类基因组的比较还揭示了蛋白质编码和非编码功能元件在进化创新方面的显著差异。蛋白质编码基因中的真正创新似乎相对较少,谱系特异性差异主要源于参与环境相互作用的基因家族的多样化和快速更替。相比之下,约20%的真兽类保守非编码元件(CNEs)是在真兽类和有袋类分化之后出现的新发明。这些真兽类特有的CNEs中有很大一部分源自转座元件插入的序列,这表明转座子是哺乳动物基因调控进化中的主要创造力。

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