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首页> 外文期刊>Journal of Clinical Microbiology >Internal Transcribed Spacer rRNA Gene-Based Phylogenetic Reconstruction Using Algorithms with Local and Global Sequence Alignment for Black Yeasts and Their Relatives
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Internal Transcribed Spacer rRNA Gene-Based Phylogenetic Reconstruction Using Algorithms with Local and Global Sequence Alignment for Black Yeasts and Their Relatives

机译:内部转录的基于间隔物rRNA基因的系统发生重建,使用黑酵母及其亲属的局部和全局序列比对算法

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摘要

Sequences of rRNA gene internal transcribed spacer (ITS) of a standard set of black yeast-like fungal pathogens were compared using two methods: local and global alignments. The latter is based on DNA-walk divergence analysis. This method has become recently available as an algorithm (DNAWD program) which converts sequences into three-dimensional walks. The walks are compared with, or fit to, each other generating global alignments. The DNA-walk geometry defines a proper metric used to create a distance matrix appropriated for phylogenetic reconstruction. In this work, the analyses were carried out for species currently classified in Capronia, Cladophialophora, Exophiala, Fonsecaea, Phialophora, and Ramichloridium. Main groups were verified by small-subunit rRNA gene data. DNAWD applied to ITS2 alone enabled species recognition as well as phylogenetic reconstruction reflecting clades discriminated in small-subunit rRNA gene phylogeny, which was not possible with any other algorithm using local alignment for the same data set. It is concluded that DNAWD provides rapid insight into broader relationships between groups using genes that otherwise would be hardly usable for this purpose.
机译:使用两种方法比较了一组标准的黑色酵母样真菌病原体的rRNA基因内部转录间隔区(ITS)的序列:局​​部和整体比对。后者基于DNA走散分析。该方法最近已作为一种算法(DNAWD程序)可用,该算法将序列转换为三维游动。将走行相互比较或拟合,以生成全局对齐。 DNA步态几何定义了一种合适的度量,用于创建适合系统发育重建的距离矩阵。在这项工作中,对目前归类为 Capronia Cladophialophora Exophiala Fonsecaea Phialophora Ramichloridium 。主要组通过小亚基rRNA基因数据进行验证。仅将DNAWD应用于ITS2即可实现物种识别以及反映小亚基rRNA基因系统发育区分的进化枝的系统发育重建,这对于使用同一数据集的局部比对的任何其他算法均无法实现。结论是,DNAWD使用基因很难提供对群体之间更广泛关系的快速洞察力,否则这些基因将很难用于此目的。

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