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用一种新的无比对方法构建原绿球藻的系统发育树。

Establishing the phylogeny of Prochlorococcus with a new alignment-free method.

作者信息

Zhao Xin, Tian Kun, He Rong L, Yau Stephen S-T

机构信息

Department of Mathematical Sciences Tsinghua University Beijing China.

Department of Biological Sciences Chicago State University Chicago IL USA.

出版信息

Ecol Evol. 2017 Nov 15;7(24):11057-11065. doi: 10.1002/ece3.3535. eCollection 2017 Dec.

Abstract

marinus, one of the most abundant marine cyanobacteria in the global ocean, is classified into low-light (LL) and high-light (HL) adapted ecotypes. These two adapted ecotypes differ in their ecophysiological characteristics, especially whether adapted for growth at high-light or low-light intensities. However, some evolutionary relationships of phylogeny remain to be resolved, such as whether the strains SS120 and MIT9211 form a monophyletic group. We use the Natural Vector (NV) method to represent the sequence in order to identify the phylogeny of the . The natural vector method is alignment free without any model assumptions. This study added the covariances of amino acids in protein sequence to the natural vector method. Based on these new natural vectors, we can compute the Hausdorff distance between the two clades which represents the dissimilarity. This method enables us to systematically analyze both the dataset of ribosomal proteomes and the dataset of 16s-23s rRNA sequences in order to reconstruct the phylogeny of . Furthermore, we apply classification to inspect the relationship of SS120 and MIT9211. From the reconstructed phylogenetic trees and classification results, we may conclude that the SS120 does not cluster with MIT9211. This study demonstrates a new method for performing phylogenetic analysis. The results confirm that these two strains do not form a monophyletic clade in the phylogeny of .

摘要

海链藻(Marinus)是全球海洋中最丰富的海洋蓝细菌之一,可分为适应低光(LL)和高光(HL)的生态型。这两种适应的生态型在其生态生理特征上有所不同,特别是是否适应高光或低光强度下的生长。然而,一些系统发育的进化关系仍有待解决,例如菌株SS120和MIT9211是否形成一个单系群。我们使用自然向量(NV)方法来表示序列,以确定……的系统发育。自然向量方法无需比对,没有任何模型假设。本研究将蛋白质序列中氨基酸的协方差添加到自然向量方法中。基于这些新的自然向量,我们可以计算两个进化枝之间的豪斯多夫距离,该距离代表了差异。这种方法使我们能够系统地分析核糖体蛋白质组数据集和16s - 23s rRNA序列数据集,以重建……的系统发育。此外,我们应用分类来检验SS120和MIT9211之间的关系。从重建的系统发育树和分类结果来看,我们可以得出结论,SS120与MIT9211不聚类。本研究展示了一种进行系统发育分析的新方法。结果证实,在……的系统发育中,这两个菌株不形成一个单系进化枝。

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