Lim Hong Chang, Tan Suh Nih, Teng Sing Tung, Lundholm Nina, Orive Emma, David Helena, Quijano-Scheggia Sonia, Leong Sandric Chee Yew, Wolf Matthias, Bates Stephen S, Lim Po Teen, Leaw Chui Pin
Department of Applied Sciences, Tunku Abdul Rahman University College, Johor Branch Campus, 85000, Segamat, Johor, Malaysia.
Bachok Marine Research Station, Institute of Ocean and Earth Sciences, University of Malaya, Bachok, 16310, Kelantan, Malaysia.
J Phycol. 2018 Apr;54(2):234-248. doi: 10.1111/jpy.12620. Epub 2018 Feb 21.
Analyses of the mitochondrial cox1, the nuclear-encoded large subunit (LSU), and the internal transcribed spacer 2 (ITS2) RNA coding region of Pseudo-nitzschia revealed that the P. pseudodelicatissima complex can be phylogenetically grouped into three distinct clades (Groups I-III), while the P. delicatissima complex forms another distinct clade (Group IV) in both the LSU and ITS2 phylogenetic trees. It was elucidated that comprehensive taxon sampling (sampling of sequences), selection of appropriate target genes and outgroup, and alignment strategies influenced the phylogenetic accuracy. Based on the genetic divergence, ITS2 resulted in the most resolved trees, followed by cox1 and LSU. The morphological characters available for Pseudo-nitzschia, although limited in number, were overall in agreement with the phylogenies when mapped onto the ITS2 tree. Information on the presence/absence of a central nodule, number of rows of poroids in each stria, and of sectors dividing the poroids mapped onto the ITS2 tree revealed the evolution of the recently diverged species. The morphologically based species complexes showed evolutionary relevance in agreement with molecular phylogeny inferred from ITS2 sequence-structure data. The data set of the hypervariable region of ITS2 improved the phylogenetic inference compared to the cox1 and LSU data sets. The taxonomic status of P. cuspidata and P. pseudodelicatissima requires further elucidation.
对拟菱形藻属的线粒体细胞色素氧化酶亚基1(cox1)、核编码的大亚基(LSU)以及内部转录间隔区2(ITS2)RNA编码区域的分析表明,伪柔弱拟菱形藻复合体在系统发育上可分为三个不同的进化枝(第一至三组),而柔弱拟菱形藻复合体在LSU和ITS2系统发育树中形成另一个不同的进化枝(第四组)。研究表明,全面的分类群采样(序列采样)、合适目标基因和外类群的选择以及比对策略会影响系统发育的准确性。基于遗传差异,ITS2产生的系统发育树分辨率最高,其次是cox1和LSU。拟菱形藻可用的形态特征数量虽有限,但映射到ITS2树上时总体与系统发育情况一致。关于中央节瘤的有无、每条条纹中孔隙行的数量以及划分孔隙的扇区数量的信息映射到ITS2树上揭示了最近分化物种的进化情况。基于形态的物种复合体显示出与从ITS2序列结构数据推断的分子系统发育一致的进化相关性。与cox1和LSU数据集相比,ITS2高变区的数据集改进了系统发育推断。尖刺拟菱形藻和伪柔弱拟菱形藻的分类地位需要进一步阐明。