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Development of a Real-Time PCR Assay for Rapid Detection and Quantification of Alexandrium minutum (a Dinoflagellate)

机译:快速检测和定量亚历山大藻(Dinoflagellate)的实时PCR分析方法的发展。

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摘要

The marine dinoflagellate genus Alexandrium includes a number of species which produce neurotoxins responsible for paralytic shellfish poisoning (PSP), which in humans may cause muscular paralysis, neurological symptoms, and, in extreme cases, death. A. minutum is the most widespread toxic PSP species in the western Mediterranean basin. The monitoring of coastal waters for the presence of harmful algae also normally involves microscopic examinations of phytoplankton populations. These procedures are time consuming and require a great deal of taxonomic experience, thus limiting the number of specimens that can be analyzed. Because of the genetic diversity of different genera and species, molecular tools may also help to detect the presence of target microorganisms in marine field samples. In this study, we developed a real-time PCR-based assay for rapid detection of all toxic species of the Alexandrium genus in both fixative-preserved environmental samples and cultures. Moreover, we developed a real-time quantitative PCR assay for the quantification of A. minutum cells in seawater samples. Alexandrium genus-specific primers were designed on the 5.8S rDNA region. Primer specificity was confirmed by using BLAST and by amplification of a representative sample of the DNA of other dinoflagellates and diatoms. Using a standard curve constructed with a plasmid containing the ITS1-5.8S-ITS2 A. minutum sequence and cultured A. minutum cells, we determined the absolute number of 5.8S rDNA copies per cell. Consequently, after quantification of 5.8S rDNA copies in samples containing A. minutum cells, we were also able to estimate the number of cells. Several fixed A. minutum bloom sea samples from Arenys Harbor (Catalan Coast, Spain) were analyzed using this method, and quantification results were compared with standard microscopy counting methods. The two methods gave comparable results, confirming that real-time PCR could be a valid, fast alternative procedure for the detection and quantification of target phytoplankton species during coastal water monitoring.
机译:海洋甲鞭毛藻属包括许多产生神经毒素的物种,这些神经毒素导致麻痹性贝类中毒(PSP),在人类中可能导致肌肉麻痹,神经系统症状,并在极端情况下导致死亡。小茴香曲霉是地中海西部盆地中最普遍的有毒PSP物种。监测沿海水域中是否存在有害藻类通常还涉及对浮游植物种群的显微镜检查。这些过程很耗时,需要大量的分类学经验,因此限制了可以分析的样本数量。由于不同属和物种的遗传多样性,分子工具也可能有助于检测海洋野外样品中目标微生物的存在。在这项研究中,我们开发了一种基于PCR的实时分析方法,可以快速检测固定剂保存的环境样品和培养物中亚历山大藻属的所有有毒物种。此外,我们开发了一种实时定量PCR分析法,用于定量海水样品中的A. minutum细胞。在5.8S rDNA区域设计了亚历山大属属特异性引物。通过使用BLAST并通过扩增其他鞭毛鞭毛藻和硅藻的DNA代表性样品来证实引物特异性。使用由包含ITS1-5.8S-ITS2 A. minutum序列的质粒和培养的A. minutum细胞构建的标准曲线,我们确定每个细胞5.8S rDNA拷贝的绝对数量。因此,在对含有微小链球菌细胞的样品中的5.8S rDNA拷贝进行定量后,我们还能够估计细胞数。使用此方法分析了来自Arenys港(西班牙加泰罗尼亚海岸)的一些固定的A. minutum绽放海标本,并将定量结果与标准显微镜计数法进行了比较。两种方法给出了可比的结果,证实了实时PCR可能是在沿海水域监测过程中检测和量化目标浮游植物种类的有效,快速的替代方法。

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