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鳐科(软骨鱼纲)5S核糖体DNA的分子组织:鱼类5S核糖体RNA基因和非转录间隔区的结构特征与进化

Molecular organization of 5S rDNAs in Rajidae (Chondrichthyes): Structural features and evolution of piscine 5S rRNA genes and nontranscribed intergenic spacers.

作者信息

Pasolini Paola, Costagliola Domenico, Rocco Lucia, Tinti Fausto

机构信息

Molecular Genetics for Environmental and Fishery Resources Laboratory, Interdept. Centre of Research in Environmental Sciences, University of Bologna, Ravenna, Italy.

出版信息

J Mol Evol. 2006 May;62(5):564-74. doi: 10.1007/s00239-005-0118-z. Epub 2006 Apr 11.

Abstract

The genomic and gene organisation of 5S rDNA clusters have been extensively characterized in bony fish and eukaryotes, providing general issues for understanding the molecular evolution of this multigene DNA family. By contrast, the 5S rDNA features have been rarely investigated in cartilaginous fish (only three species). Here, we provide evidence for a dual 5S rDNA gene system in the Rajidae by sequence analysis of the coding region (5S) and adjacent nontranscribed spacer (NTS) in five Mediterranean species of rays (Rajidae), and in a large number of piscine taxa including lampreys and bony fish. As documented in several bony fish, two functional 5S rDNA types were found here also in the rajid genome: a short one (I) and a long one (II), distinguished by distinct 5S and NTS sequences. That the ancestral piscine genome had these two 5S rDNA loci might be argued from the occurrence of homologous dual gene systems that exist in several fish taxa and from 5S phylogenetic relationships. An extensive analysis of NTS-II sequences of Rajidae and Dasyatidae revealed the occurrence of large simple sequence repeat (SSR) regions that are formed by microsatellite arrays. The localization and organization of SSR within the NTS-II are conserved in Rajiformes since the Upper Cretaceous. The direct correlation between the SSRs extension and the NTS length indicated that they might play a role in the maintenance of the larger 5S rDNA clusters in rays. The phylogenetic analysis indicated that NTS-II is a valuable systematic tool limited to distantly related taxa of Rajiformes.

摘要

5S核糖体DNA(rDNA)簇的基因组和基因组织在硬骨鱼和真核生物中已得到广泛表征,为理解这个多基因DNA家族的分子进化提供了一般性问题。相比之下,软骨鱼(仅三个物种)的5S rDNA特征很少被研究。在这里,我们通过对五种地中海鳐鱼(鳐科)以及包括七鳃鳗和硬骨鱼在内的大量鱼类分类群的编码区(5S)和相邻非转录间隔区(NTS)进行序列分析,为鳐科中的双5S rDNA基因系统提供了证据。正如在几种硬骨鱼中所记录的那样,在鳐科基因组中也发现了两种功能性5S rDNA类型:一种短的(I型)和一种长的(II型),它们通过不同的5S和NTS序列区分开来。从几种鱼类分类群中存在的同源双基因系统以及5S系统发育关系来看,可能会认为鱼类祖先基因组中有这两个5S rDNA位点。对鳐科和鲼科的NTS-II序列进行的广泛分析揭示了由微卫星阵列形成的大型简单序列重复(SSR)区域的存在。自上白垩纪以来,SSR在NTS-II中的定位和组织在鳐形目中是保守的。SSR延伸与NTS长度之间的直接相关性表明,它们可能在维持鳐鱼中较大的5S rDNA簇方面发挥作用。系统发育分析表明,NTS-II是一种仅限于鳐形目远缘分类群的有价值的系统发育工具。

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