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16S - 23S rRNA内转录间隔区是分子系统学和群体遗传学中一个好用的工具吗?蓝细菌的一个案例研究。

Is the 16S-23S rRNA internal transcribed spacer region a good tool for use in molecular systematics and population genetics? A case study in cyanobacteria.

作者信息

Boyer S L, Flechtner V R, Johansen J R

机构信息

Department of Biology, John Carroll University, 20700 North Park Boulevard, University Heights, OH 44118, USA.

出版信息

Mol Biol Evol. 2001 Jun;18(6):1057-69. doi: 10.1093/oxfordjournals.molbev.a003877.

Abstract

We amplified, TA-cloned, and sequenced the 16S-23S internal transcribed spacer (ITS) regions from single isolates of several cyanobacterial species, Calothrix parietina, Scytonema hyalinum, Coelodesmium wrangelii, Tolypothrix distorta, and a putative new genus (isolates SRS6 and SRS70), to investigate the potential of this DNA sequence for phylogenetic and population genetic studies. All isolates carried ITS regions containing the sequences coding for two tRNA molecules (tRNA and tRNA). We retrieved additional sequences without tRNA features from both C. parietina and S. hyalinum. Furthermore, in S. hyalinum, we found two of these non-tRNA-encoding regions to be identical in length but different in sequence. This is the first report of ITS regions from a single cyanobacterial isolate not only different in configuration, but also, within one configuration, different in sequence. The potential of the ITS region as a tool for studying molecular systematics and population genetics is significant, but the presence of multiple nonidentical rRNA operons poses problems. Multiple nonidentical rRNA operons may impact both studies that depend on comparisons of phylogenetically homologous sequences and those that employ restriction enzyme digests of PCR products. We review current knowledge of the numbers and kinds of 16S-23S ITS regions present across bacterial groups and plastids, and we discuss broad patterns congruent with higher-level systematics of prokaryotes.

摘要

我们对几种蓝藻物种(顶孢藻、透明鞘丝藻、弗兰格尔腔球藻、扭曲颤藻以及一个假定的新属,分离株SRS6和SRS70)的单个分离株的16S - 23S内转录间隔区(ITS)进行了扩增、TA克隆和测序,以研究该DNA序列在系统发育和群体遗传学研究中的潜力。所有分离株的ITS区域都包含编码两个tRNA分子(tRNA和tRNA)的序列。我们从顶孢藻和透明鞘丝藻中还检索到了没有tRNA特征的其他序列。此外,在透明鞘丝藻中,我们发现其中两个非tRNA编码区域长度相同但序列不同。这是关于单个蓝藻分离株的ITS区域的首次报道,这些区域不仅在结构上不同,而且在一种结构内序列也不同。ITS区域作为研究分子系统学和群体遗传学的工具潜力巨大,但多个不同的rRNA操纵子的存在带来了问题。多个不同的rRNA操纵子可能会影响依赖系统发育同源序列比较的研究以及那些采用PCR产物限制性酶切的研究。我们回顾了目前关于细菌类群和质体中存在的16S - 23S ITS区域的数量和种类的知识,并讨论了与原核生物高级系统学一致的广泛模式。

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