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Unexpected Genetic Diversity among and within Populations of the Toxic Dinoflagellate Alexandrium catenella as Revealed by Nuclear Microsatellite Markers

机译:核微卫星标记显示的有毒迪鞭毛亚历山大藻连体种群之间和内部的意外遗传多样性

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摘要

Since 1998, blooms of Alexandrium catenella associated with paralytic shellfish poisoning have been repeatedly reported for Thau Lagoon (French Mediterranean coast). Based on data obtained for rRNA gene markers, it has been suggested that the strains involved could be closely related to the Japanese temperate Asian ribotype of the temperate Asian clade. In order to gain more insight into the origin of these organisms, we carried out a genetic analysis of 61 Mediterranean and 23 Japanese strains using both ribosomal and microsatellite markers. Whereas the phylogeny based on ribosomal markers tended to confirm the previous findings, the analysis of microsatellite sequences revealed an unexpected distinction between the French and Japanese populations. This analysis also highlighted great intraspecific diversity that was not detected with the classical rRNA gene markers. The Japanese strains are divided into two differentiated A. catenella lineages: the Sea of Japan lineage and the east coast lineage, which includes populations from the Inland Sea and the Pacific Ocean. A. catenella strains isolated from Thau Lagoon belong to another lineage. These findings indicate that microsatellite markers are probably better suited to investigations of the population genetics of this species that is distributed worldwide. Finally, application of the population genetics concepts available for macroorganisms could support new paradigms for speciation and migration in phytoplankton assemblages.
机译:自1998年以来,已经多次报道过Thau Lagoon(法国地中海沿岸)因麻痹性贝类中毒而引起的亚历山大海藻中毒。根据获得的rRNA基因标记数据,已表明所涉及的菌株可能与亚洲温带进化枝的日本温带亚洲核糖型密切相关。为了更深入地了解这些生物的起源,我们使用核糖体和微卫星标记对61个地中海和23个日本菌株进行了遗传分析。尽管基于核糖体标记的系统发育倾向于证实先前的发现,但对微卫星序列的分析显示出法国人和日本人之间出乎意料的区别。该分析还强调了巨大的种内多样性,而经典的rRNA基因标记则无法检测到。日本菌株被分为两个不同的A. catenella谱系:日本海谱系和东海岸谱系,其中包括来自内海和太平洋的种群。从Tau泻湖分离的A. catenella菌株属于另一个谱系。这些发现表明,微卫星标记可能更适合于调查分布在世界各地的该物种的种群遗传学。最后,可用于大型生物的种群遗传学概念的应用可以支持浮游植物组合的物种形成和迁移的新范例。

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