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后生动物线粒体基因组进化元件的系统发育和生物学意义。

Phylogenetic and biological significance of evolutionary elements from metazoan mitochondrial genomes.

作者信息

Yuan Jianbo, Zhu Qingming, Liu Bin

机构信息

Center of Systematic Genomics, Xinjiang Institute of Ecology and Geography, Chinese Academy of Sciences, Urumqi, Xinjiang, China ; CAS Key Laboratory of Experimental Marine Biology, Institute of Oceanology, Chinese Academy of Sciences, Qingdao, Shandong, China ; Graduate University of Chinese Academy of Sciences, Beijing, China.

GenomeSense Institute, Beijing, China.

出版信息

PLoS One. 2014 Jan 20;9(1):e84330. doi: 10.1371/journal.pone.0084330. eCollection 2014.

Abstract

The evolutionary history of living species is usually inferred through the phylogenetic analysis of molecular and morphological information using various mathematical models. New challenges in phylogenetic analysis are centered mostly on the search for accurate and efficient methods to handle the huge amounts of sequence data generated from newer genome sequencing. The next major challenge is the determination of relationships between the evolution of structural elements and their functional implementation, which is largely ignored in previous analyses. Here, we described the discovery of structural elements in metazoan mitochondrial genomes, termed key K-strings, that can serve as a basis for phylogenetic tree construction. Although comprising only a small fraction (0.73%) of all K-strings, these key K-strings are pivotal to the tree construction because they allow for a significant reduction in the computational time required to construct phylogenetic trees, and more importantly, they make significant improvement to the results of phylogenetic inference. The trees constructed from the key K-strings were consistent overall to our current view of metazoan phylogeny and exhibited a more rational topology than the trees constructed by using other conventional methods. Surprisingly, the key K-strings tended to accumulate in the conserved regions of the original sequences, which were most likely due to strong selection pressure. Furthermore, the special structural features of the key K-strings should have some potential applications in the study of the structures and functions relationship of proteins and in the determination of evolutionary trajectory of species. The novelty and potential importance of key K-strings lead us to believe that they are essential evolutionary elements. As such, they may play important roles in the process of species evolution and their physical existence. Further studies could lead to discoveries regarding the relationship between evolution and processes of speciation.

摘要

现存物种的进化史通常是通过使用各种数学模型对分子和形态学信息进行系统发育分析来推断的。系统发育分析中的新挑战主要集中在寻找准确有效的方法来处理从更新的基因组测序中产生的大量序列数据。下一个主要挑战是确定结构元件的进化与其功能实现之间的关系,而这在以前的分析中大多被忽视了。在这里,我们描述了后生动物线粒体基因组中结构元件的发现,称为关键K串,它可以作为构建系统发育树的基础。尽管这些关键K串仅占所有K串的一小部分(0.73%),但它们对树的构建至关重要,因为它们可以显著减少构建系统发育树所需的计算时间,更重要的是,它们能显著改善系统发育推断的结果。由关键K串构建的树总体上与我们目前对后生动物系统发育的看法一致,并且比使用其他传统方法构建的树展现出更合理的拓扑结构。令人惊讶的是,关键K串倾向于在原始序列的保守区域积累,这很可能是由于强大的选择压力。此外,关键K串的特殊结构特征在蛋白质结构与功能关系的研究以及物种进化轨迹的确定中应该有一些潜在应用。关键K串的新颖性和潜在重要性使我们相信它们是重要的进化元件。因此,它们可能在物种进化过程及其实际存在中发挥重要作用。进一步的研究可能会发现有关进化与物种形成过程之间的关系。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7ae7/3896360/672d8be92d07/pone.0084330.g001.jpg

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