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利用丽蝇(双翅目:丽蝇科)的序列和二级结构信息评估内转录间隔区2(ITS2)作为系统发育推断分子标记的研究

Evaluation of the internal transcribed spacer 2 (ITS2) as a molecular marker for phylogenetic inference using sequence and secondary structure information in blow flies (Diptera: Calliphoridae).

作者信息

Marinho M A T, Junqueira A C M, Azeredo-Espin A M L

机构信息

Molecular Biology and Genetic Engineering Center (CBMEG), Campinas State University (UNICAMP), CP 6010, Campinas, SP 13083-875, Brazil.

出版信息

Genetica. 2011 Sep;139(9):1189-207. doi: 10.1007/s10709-011-9621-x. Epub 2011 Dec 25.

Abstract

The internal transcribed spacer 2 (ITS2) is a small non-coding region located inside the nuclear ribosomal DNA cluster. ITS2 sequence variability is thought to be appropriate to differentiate species and for phylogenetic reconstructions analyses, which can be further improved if structural information is considered. We evaluated the potential of ITS2 as a molecular marker for phylogenetic inference in Calliphoridae (Diptera: Brachycera) using a broad range of inference methods and different substitution models, accounting or not for structural information. Sequence analyses revealed a hierarchically organized pattern of sequence variation and a small level of nucleotide substitution saturation. Intragenomic variation due to small sequence repeats was found mainly in the most variable domain (IV), but it has no significant impact on the phylogenetic signal at the species level. Inferred secondary structures revealed that GC pairs are more frequently found flanking bulges and loops regions in more conserved domains, thus ensuring structure stability. In the phylogenetic analyses, the use of substitution models accounting for structural information significantly improves phylogenetic inference in both neighbour-joining and Bayesian analyses, although the former provides limited resolution for dealing with highly divergent sequences. For Bayesian analyses, a significant improvement in likelihood was observed when considering structure information, although with small changes in topology and overall support, probably reflecting better evolutionary rates estimates. Based on these findings, ITS2 is a suitable molecular marker for phylogenetic analyses in Calliphoridae, at both species and generic level.

摘要

内部转录间隔区2(ITS2)是位于核糖体DNA簇内部的一个小的非编码区域。ITS2序列变异性被认为适合用于区分物种和进行系统发育重建分析,如果考虑结构信息,这种分析可以得到进一步改进。我们使用广泛的推断方法和不同的替换模型,考虑或不考虑结构信息,评估了ITS2作为丽蝇科(双翅目:短角亚目)系统发育推断分子标记的潜力。序列分析揭示了序列变异的分层组织模式和较低水平的核苷酸替换饱和。由于小序列重复导致的基因组内变异主要出现在最可变的结构域(IV)中,但在物种水平上对系统发育信号没有显著影响。推断的二级结构表明,在更保守的结构域中,GC对更频繁地出现在凸起和环区域的侧翼,从而确保结构稳定性。在系统发育分析中,使用考虑结构信息的替换模型在邻接法和贝叶斯分析中都显著提高了系统发育推断,尽管前者在处理高度分歧序列时提供的分辨率有限。对于贝叶斯分析,考虑结构信息时似然性有显著提高,尽管拓扑结构和总体支持度变化较小,这可能反映了更好的进化速率估计。基于这些发现,ITS2是丽蝇科物种和属水平系统发育分析的合适分子标记。

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