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亚历山大藻(甲藻纲)复合体中的系统发育关系、形态变异和毒素模式:对物种界限和身份的影响

Phylogenetic relationships, morphological variation, and toxin patterns in the Alexandrium ostenfeldii (Dinophyceae) complex: implications for species boundaries and identities.

作者信息

Kremp Anke, Tahvanainen Pia, Litaker Wayne, Krock Bernd, Suikkanen Sanna, Leaw Chui Pin, Tomas Carmelo

机构信息

Finnish Environment Institute, Marine Research Centre, Erik Palménin aukio 1, Helsinki, 00560, Finland.

University of Helsinki, Tvärminne Zoological Station, J.A. Palménin tie 260, Hanko, 10900, Finland.

出版信息

J Phycol. 2014 Feb;50(1):81-100. doi: 10.1111/jpy.12134. Epub 2013 Nov 20.

DOI:10.1111/jpy.12134
PMID:26988010
Abstract

Alexandrium ostenfeldii (Paulsen) Balech and Tangen and A. peruvianum (Balech and B.R. Mendiola) Balech and Tangen are morphologically closely related dinoflagellates known to produce potent neurotoxins. Together with Gonyaulax dimorpha Biecheler, they constitute the A. ostenfeldii species complex. Due to the subtle differences in the morphological characters used to differentiate these species, unambiguous species identification has proven problematic. To better understand the species boundaries within the A. ostenfeldii complex we compared rDNA data, morphometric characters and toxin profiles of multiple cultured isolates from different geographic regions. Phylogenetic analysis of rDNA sequences from cultures characterized as A. ostenfeldii or A. peruvianum formed a monophyletic clade consisting of six distinct groups. Each group examined contained strains morphologically identified as either A. ostenfeldii or A. peruvianum. Though key morphological characters were generally found to be highly variable and not consistently distributed, selected plate features and toxin profiles differed significantly among phylogenetic clusters. Additional sequence analyses revealed a lack of compensatory base changes in ITS2 rRNA structure, low to intermediate ITS/5.8S uncorrected genetic distances, and evidence of reticulation. Together these data (criteria currently used for species delineation in dinoflagellates) imply that the A. ostenfeldii complex should be regarded a single genetically structured species until more material and alternative criteria for species delimitation are available. Consequently, we propose that A. peruvianum is a heterotypic synonym of A. ostenfeldii and this taxon name should be discontinued.

摘要

奥氏亚历山大藻(Paulsen)Balech和Tangen以及秘鲁亚历山大藻(Balech和B.R. Mendiola)Balech和Tangen是形态上密切相关的甲藻,已知它们会产生强效神经毒素。它们与双形原甲藻Biecheler一起,构成了奥氏亚历山大藻物种复合体。由于用于区分这些物种的形态特征存在细微差异,明确的物种鉴定已被证明存在问题。为了更好地理解奥氏亚历山大藻复合体中的物种界限,我们比较了来自不同地理区域的多个培养分离株的rDNA数据、形态测量特征和毒素谱。对被鉴定为奥氏亚历山大藻或秘鲁亚历山大藻的培养物的rDNA序列进行系统发育分析,形成了一个单系分支,由六个不同的组组成。所检查的每个组都包含形态上被鉴定为奥氏亚历山大藻或秘鲁亚历山大藻的菌株。尽管通常发现关键形态特征高度可变且分布不一致,但所选的板状特征和毒素谱在系统发育簇之间存在显著差异。进一步的序列分析显示,ITS2 rRNA结构中缺乏补偿性碱基变化,ITS/5.8S未校正遗传距离低至中等,并且有网状化的证据。综合这些数据(目前用于甲藻物种划分的标准)表明,在有更多材料和物种划分的替代标准之前,奥氏亚历山大藻复合体应被视为一个单一的遗传结构化物种。因此,我们提议秘鲁亚历山大藻是奥氏亚历山大藻的异名,这个分类单元名称应该停用。

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