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核糖体RNA基因内部转录间隔区ITS 1和ITS 2中的GC平衡。

GC balance in the internal transcribed spacers ITS 1 and ITS 2 of nuclear ribosomal RNA genes.

作者信息

Torres R A, Ganal M, Hemleben V

机构信息

Lehrstuhl für Allgemeine Genetik, Universität Tübingen, Federal Republic of Germany.

出版信息

J Mol Evol. 1990 Feb;30(2):170-81. doi: 10.1007/BF02099943.

Abstract

The internal transcribed spacer (ITS) 1 and 2, the 5.8S rRNA gene, and adjacent 18S rRNA and 25S rRNA coding regions of two Cucurbitaceae (Cucurbita pepo, zucchini, ITS 1: 187 bp, and ITS 2: 252 bp in length, and Cucumis sativus, cucumber, ITS 1: 229 bp, and ITS 2: 245 bp in length) have been sequenced. The evolutionary pattern shown by the ITSs of these plants is different from that found in vertebrates. Deletions, insertions, and base substitutions have occurred in both spacers; however, it is obvious that some selection pressure is responsible for the preservation of stem-loop structures. The dissimilarity of the 5' region of ITS 2 found in higher plants has consequences for proposed models on U3 snRNA-ITS 2 interaction in higher eukaryotes. The two investigated Cucurbitaceae species show a G + C content of ITS 1 that nearly equals that of ITS 2. An analysis of the ITS sequences reveals that in 19 out of 20 organisms published, the G + C content of ITS 1 nearly equals that of ITS 2, although it ranges from 20% to 90% in different organisms (GC balance). Moreover, the balanced G + C content of the ITSs in a given species seems to be similar to that of so-called expansion segments (ESs) in the 25/28S rRNA coding region. Thus, ITSs show a phenomenon called molecular coevolution with respect to each other and to the ESs. In the ITSs of Cucurbitaceae the balanced G + C composition is at least partly achieved by C to T transitions, via deamination of 5-methylcytosine. Other mutational events must be taken into account. The appearance of this phenomenon is discussed in terms of functional constraints linked to the structures of these spacers.

摘要

对两种葫芦科植物(西葫芦,南瓜属,ITS 1长度为187 bp,ITS 2长度为252 bp;黄瓜,黄瓜属,ITS 1长度为229 bp,ITS 2长度为245 bp)的内转录间隔区(ITS)1和2、5.8S rRNA基因以及相邻的18S rRNA和25S rRNA编码区进行了测序。这些植物ITS所显示的进化模式与脊椎动物中发现的不同。两个间隔区均发生了缺失、插入和碱基替换;然而,显然某些选择压力有助于茎环结构的保留。高等植物中ITS 2 5'区域的差异对高等真核生物中U3 snRNA-ITS 2相互作用的模型提出产生了影响。所研究的两种葫芦科物种显示ITS 1的G + C含量几乎与ITS 2的相等。对ITS序列的分析表明,在已发表的20种生物中的19种中,ITS 1的G + C含量几乎与ITS 2的相等,尽管在不同生物中其范围为20%至90%(GC平衡)。此外,给定物种中ITS的平衡G + C含量似乎与25/28S rRNA编码区中所谓的扩展片段(ES)相似。因此,ITS相互之间以及与ES显示出一种称为分子协同进化的现象。在葫芦科的ITS中,平衡的G + C组成至少部分是通过5-甲基胞嘧啶的脱氨作用由C向T的转变实现的。还必须考虑其他突变事件。根据与这些间隔区结构相关的功能限制对这一现象的出现进行了讨论。

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