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利用L1(长散在核元件1)扩增事件确定广义家鼠属(啮齿目:鼠科)的进化关系。

Determination of the evolutionary relationships in Rattus sensu lato (Rodentia : Muridae) using L1 (LINE-1) amplification events.

作者信息

Verneau O, Catzeflis F, Furano A V

机构信息

Section on Genomic Structure and Function, NIDDK, NIH, Bethesda, MD 20892-0830, USA.

出版信息

J Mol Evol. 1997 Oct;45(4):424-36. doi: 10.1007/pl00006247.

Abstract

We determined approximately 215 bp of DNA sequence from the 3'-untranslated region (UTR) of 240 cloned L1 (LINE-1) elements isolated from 22 species of Rattus sensu lato and Rattus sensu stricto murine rodents. The sequences were sorted into different L1 subfamilies, and oligonucleotides cognate to them were hybridized to genomic DNA of various taxa. From the distribution of the L1 subfamilies in the various species, we inferred the partial phylogeny of Rattus sensu lato. The four Maxomys species comprise a well-defined clade separate from a monophyletic cluster that contains the two Leopoldamys and four Niviventer species. The Niviventer/Leopoldamys clade, in turn, shares a node with the clade that contains Berylmys, Sundamys, Bandicota, and Rattus sensu stricto. The evolutionary relationships that we deduced agree with and significantly extend the phylogeny of Rattus sensu lato established by other molecular criteria. Furthermore, the L1 amplification events scored here produced a unique phylogenetic tree, that is, in no case did a character (a given L1 amplification event) appear on more than one branch. The lack of homoplasy found in this study supports the robustness of L1 amplification events as phylogenetic markers for the study of mammalian evolution.

摘要

我们测定了从22种广义鼠属和狭义鼠属啮齿动物中分离出的240个克隆的L1(长散在核元件1)元件3'-非翻译区(UTR)的约215bp DNA序列。这些序列被分类到不同的L1亚家族中,与它们同源的寡核苷酸与各种分类群的基因组DNA进行杂交。根据L1亚家族在不同物种中的分布,我们推断出广义鼠属的部分系统发育。四种大绒鼠物种构成一个明确的分支,与包含两种长尾攀鼠属和四种针毛鼠属物种的单系类群分开。反过来,针毛鼠属/长尾攀鼠属类群与包含短尾鼩属、苏门答腊鼠属、板齿鼠属和狭义鼠属的类群共享一个节点。我们推断的进化关系与其他分子标准所建立的广义鼠属系统发育一致,并显著扩展了该系统发育。此外,这里记录的L1扩增事件产生了一棵独特的系统发育树,也就是说,在任何情况下,一个特征(一个给定的L1扩增事件)都不会出现在多个分支上。本研究中发现的缺乏同塑性支持了L1扩增事件作为研究哺乳动物进化系统发育标记的稳健性。

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