Salgado Pablo, Riobó Pilar, Rodríguez Francisco, Franco José M, Bravo Isabel
Instituto de Fomento Pesquero (IFOP), Enrique Abello 0552, Casilla 101, Punta Arenas, Chile.
Instituto de Investigaciones Marinas (IIM-CSIC), Eduardo Cabello 6, 36208, Vigo, Spain.
Toxicon. 2015 Sep;103:85-98. doi: 10.1016/j.toxicon.2015.06.015. Epub 2015 Jun 18.
Among toxin-producing dinoflagellates of the genus Alexandrium, Alexandrium ostenfeldii is the only species able to produce paralytic shellfish poisoning (PSP) toxins, spirolides (SPXs) and gymnodimines (GYMs). In this study we characterized and compared three A. ostenfeldii strains isolated from the Baltic, Mediterranean, and southern Chile Seas with respect to their toxin profiles, morphology, and phylogeny. Toxin analyses by HPLC-FD and LC-HRMS revealed differences in the toxin profiles of the three strains. The PSP toxin profiles of the southern Chile and Baltic strains were largely the same and included gonyautoxin (GTX)-3, GTX-2, and saxitoxin (STX), although the total PSP toxin content of the Chilean strain (105.83 ± 72.15 pg cell(-1)) was much higher than that of the Baltic strain (4.04 ± 1.93 pg cell(-1)). However, the Baltic strain was the only strain that expressed detectable amounts of analogues of GYM-A and GYM-B/-C (48.27 ± 26.12 pg GYM-A equivalents cell(-1)). The only toxin expressed by the Mediterranean strain was 13-desmethyl SPX-C (13dMeC; 2.85 ± 4.76 pg cell(-1)). Phylogenetic analysis based on the LSU rRNA showed that the studied strains belonged to distinct molecular clades. The toxin profiles determined in this study provide further evidence of the taxonomic complexity of this species.
在产毒素的亚历山大藻属甲藻中,奥氏亚历山大藻是唯一能够产生麻痹性贝类毒素(PSP)、 spirolides(SPXs)和裸甲藻毒素(GYMs)的物种。在本研究中,我们对从波罗的海、地中海和智利南部海域分离出的三株奥氏亚历山大藻菌株的毒素谱、形态和系统发育进行了表征和比较。通过HPLC-FD和LC-HRMS进行的毒素分析揭示了这三株菌株毒素谱的差异。智利南部和波罗的海菌株的PSP毒素谱基本相同,包括膝沟藻毒素(GTX)-3、GTX-2和石房蛤毒素(STX),尽管智利菌株的总PSP毒素含量(105.83±72.15 pg细胞-1)远高于波罗的海菌株(4.04±1.93 pg细胞-1)。然而,波罗的海菌株是唯一表达可检测量的GYM-A和GYM-B/-C类似物的菌株(48.27±26.12 pg GYM-A当量细胞-1)。地中海菌株唯一表达的毒素是13-去甲基SPX-C(13dMeC;2.85±4.76 pg细胞-1)。基于LSU rRNA的系统发育分析表明,所研究的菌株属于不同的分子进化枝。本研究中确定的毒素谱为该物种的分类复杂性提供了进一步的证据。