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基于细胞核小亚基和部分大亚基核糖体DNA推断光合裸藻的系统发育

Phylogeny of the photosynthetic euglenophytes inferred from the nuclear SSU and partial LSU rDNA.

作者信息

Brosnan Stacy, Shin Woongghi, Kjer Karl M, Triemer Richard E

机构信息

Division of Life Sciences, Rutgers University, Nelson Hall, 604 Allison Road, Piscataway, NJ 08854, USA.

Department of Plant Biology, Michigan State University, East Lansing, MI 48824, USA.

出版信息

Int J Syst Evol Microbiol. 2003 Jul;53(Pt 4):1175-1186. doi: 10.1099/ijs.0.02518-0.

Abstract

Previous studies using the nuclear SSU rDNA have indicated that the photosynthetic euglenoids are a monophyletic group; however, some of the genera within the photosynthetic lineage are not monophyletic. To test these results further, evolutionary relationships among the photosynthetic genera were investigated by obtaining partial LSU nuclear rDNA sequences. Taxa from each of the external clades of the SSU rDNA-based phylogeny were chosen to create a combined dataset and to compare the individual LSU and SSU rDNA datasets. Conserved areas of the aligned sequences for both the LSU and SSU rDNA were used to generate parsimony, log-det, maximum-likelihood and Bayesian trees. The SSU and LSU rDNA consistently generated the same seven terminal clades; however, the relationship among those clades varied depending on the type of analysis and the dataset used. The combined dataset generated a more robust phylogeny, but the relationships among clades still varied. The addition of the LSU rDNA dataset to the euglenophyte phylogeny supports the view that the genera Euglena, Lepocinclis and Phacus are not monophyletic and substantiates the existence of several well-supported clades. A secondary structural model for the D2 region of the LSU rDNA was proposed on the basis of compensatory base changes found in the alignment.

摘要

以往使用核小亚基核糖体DNA(SSU rDNA)的研究表明,光合裸藻是一个单系类群;然而,光合谱系中的一些属并非单系类群。为了进一步验证这些结果,通过获取部分大亚基核糖体DNA(LSU rDNA)序列,研究了光合属之间的进化关系。从基于SSU rDNA的系统发育树的每个外部分支中选取分类单元,以创建一个组合数据集,并比较单独的LSU和SSU rDNA数据集。LSU和SSU rDNA比对序列的保守区域用于生成简约树、对数行列式树、最大似然树和贝叶斯树。SSU和LSU rDNA始终产生相同的七个末端分支;然而,这些分支之间的关系因分析类型和所用数据集的不同而有所变化。组合数据集产生了更稳健的系统发育树,但分支之间的关系仍然不同。将LSU rDNA数据集添加到裸藻系统发育树中,支持了裸藻属、鳞孔藻属和扁裸藻属并非单系类群的观点,并证实了几个得到充分支持的分支的存在。基于比对中发现的补偿性碱基变化,提出了LSU rDNA D2区域的二级结构模型。

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