Phylogenetic analysis of selected representatives of the genus Erica based on the genes encoding the DNA-dependent RNA polymerase I

Angelika Maria Gomolińska, M. Szczecińska, J. Sawicki, K. Krawczyk, P. Szkudlarz
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引用次数: 1

Abstract

Abstract The rpo genes are characterized by rapidly-evolving sequences. They encode subunits of plastid-encoded (PEP) polymerase (rpoA, rpoB, rpoC1 and rpoC2). This polymerase is one of the most important enzymes in the chloroplasts. The primary aim of the research was to study the rate of molecular evolution in the rpo genes and to estimate these genes as phylogenetic markers based on the example of the genus Erica (Ericaceae). The tested rpo genes demonstrated similarities on multiple levels, for example: phylogenetic informativeness, variation level, intragenic mutation rates and the effect of intragenic mutations on the properties of encoded peptides. This study did not confirm that the analyzed rpo genes are reliable markers and may be helpful in understanding phylogenetic relationships between species that belong to the same genus. The rpoC2 gene was found to be a most useful phylogenetic marker in the Erica genus, while rpoC1 was found to be the least promising gene.
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基于编码dna依赖性RNA聚合酶I基因的Erica属代表植物的系统发育分析
rpo基因具有快速进化序列的特点。它们编码质体编码(PEP)聚合酶亚基(rpoA, rpoB, rpoC1和rpoC2)。这种聚合酶是叶绿体中最重要的酶之一。本研究的主要目的是研究rpo基因的分子进化速率,并以埃里卡属(埃里卡科)为例,对这些基因作为系统发育标记进行估计。所测rpo基因在系统发育信息性、变异水平、基因内突变率以及基因内突变对编码肽特性的影响等多个层面上显示出相似性。本研究未证实分析的rpo基因是可靠的标记,可能有助于理解同一属物种之间的系统发育关系。rpoC2基因是Erica属中最有用的系统发育标记,而rpoC1基因是最有用的系统发育标记。
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