Kim Jong Im, Shin Woongghi, Triemer Richard E
Department of Biology, Chungnam National University, Daejeon, 305-764, Korea.
Department of Plant Biology, Michigan State University, East Lansing, Michigan, 48824, USA.
J Phycol. 2013 Feb;49(1):92-102. doi: 10.1111/jpy.12032. Epub 2013 Jan 18.
The photosynthetic euglenoid genus Cryptoglena is differentiated from other euglenoid genera by having a longitudinal sulcus, one chloroplast, two large trough-shaped paramylon plates positioned between the chloroplast and pellicle, and lack of metaboly. The genus contains only two species. To understand genetic diversity and taxonomy of Cryptoglena species, we analyzed molecular and morphological data from 25 strains. A combined data set of nuclear SSU and LSU and plastid SSU and LSU rRNA genes was analyzed using Bayesian, maximum likelihood, maximum parsimony, and distance (neighbor joining) methods. Although morphological data of all strains showed no significant species-specific pattern, molecular data segregated the taxa into five clades, two of which represented previously known species: C. skujae and C. pigra, and three of which were designated as the new species, C. soropigra, C. similis, and C. longisulca. Each species had unique molecular signatures that could be found in the plastid SSU rRNA Helix P23_1 and LSU rRNA H2 domain. The genetic similarity of intraspecies based on nr SSU rDNA ranged from 97.8% to 100% and interspecies ranged from 95.3% to 98.9%. Therefore, we propose three new species based on specific molecular signatures and gene divergence of the nr SSU rDNA sequences.
光合裸藻属Cryptoglena与其他裸藻属的区别在于具有一条纵向沟、一个叶绿体、位于叶绿体和表膜之间的两个大型槽状副淀粉板,且缺乏变形运动。该属仅包含两个物种。为了解Cryptoglena物种的遗传多样性和分类学,我们分析了来自25个菌株的分子和形态学数据。使用贝叶斯法、最大似然法、最大简约法和距离(邻接法)方法分析了核小亚基和大亚基以及质体小亚基和大亚基rRNA基因的组合数据集。尽管所有菌株的形态学数据均未显示出明显的物种特异性模式,但分子数据将分类群分为五个分支,其中两个代表先前已知的物种:斯库贾裸藻(C. skujae)和黑色裸藻(C. pigra),另外三个被指定为新物种,即索罗裸藻(C. soropigra)、相似裸藻(C. similis)和长沟裸藻(C. longisulca)。每个物种都有独特的分子特征,可在质体小亚基rRNA螺旋P23_1和大亚基rRNA H2结构域中找到。基于nr SSU rDNA的种内遗传相似性范围为97.8%至100%,种间遗传相似性范围为95.3%至98.9%。因此,我们基于nr SSU rDNA序列的特定分子特征和基因差异提出了三个新物种。