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首页> 外文期刊>Journal of Applied Phycology >Microsatellite markers for the dinoflagellate Gambierdiscus caribaeus from high-throughput sequencing data
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Microsatellite markers for the dinoflagellate Gambierdiscus caribaeus from high-throughput sequencing data

机译:来自高通量测序数据的恐龙甘露群岛甘蓝甘露群岛的微卫星标记

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Members of the benthic dinoflagellate genus Gambierdiscus are the causative agents of ciguatera fish poisoning worldwide. Ciguatera outbreaks appear to be more common in recent years and new incidences are reported from unprecedented regions. To investigate Gambierdicus population dynamics, connectivity, and dispersal routes, we developed microsatellite markers for Gambierdiscus caribaeus, a globally distributed species that is common at our study site at St. Thomas in the US Virgin Islands. We used high-throughput partial genome sequencing along with an existing transcriptome for microsatellite discovery. Screening of contigs with less than three times coverage resulted in 558 (partial genome) and 33 (transcriptome) candidate microsatellites. Four primer pairs from the partial genome and three from the transcriptome successfully amplified polymorphic microsatellites in multiplexed PCR reactions. The seven markers were tested on 150 G. caribaeus strains isolated monthly from August 2013 to July 2015 at St. Thomas, USVI. The numbers of alleles per locus varied between 3 and 14, and the allele diversity ranged from 0.214 to 0.899 in this dataset. These newly developed microsatellites will enable studies of population structure, connectivity, and dispersal in G. caribaeus and can give new insights into the expansion of ciguatera outbreaks worldwide.
机译:Benthic Dinoflagellate Genus Gambierdiscus的成员是全球Ciguatera鱼类中毒的致病因子。近年来,CIGUATATA爆发似乎更常见,从前所未有的地区报告了新的事件。为了调查冈比特人口的动态,连通性和分散路线,我们开发了Gambierdiscus Caribaeus的微卫星标记,这是一个全球分布的物种,在我们的圣托马斯在美国维尔京群岛的学习网站。我们使用高通量部分基因组测序以及用于微卫星发现的现有转录组。筛选覆盖率小于三次覆盖率的聚变产生558(部分基因组)和33(转录组)候选微卫星。来自部分基因组的四个引物对和来自转录组的三个成功扩增了多重PCR反应中的多态性微卫星。从2013年8月至2015年7月在美国USVI,在2013年8月至2015年7月,七个标记在150克Caribaeus菌株上进行了测试。每个基因座的等位基因数在3到14之间变化,等位基因分集在该数据集中的0.214至0.899范围。这些新开发的微露露晶体将使G. Caribaeus中的人口结构,连通性和分散的研究能够为全球CIGUATERA爆发的扩张提供新的见解。

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