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首页> 外文期刊>Acta Oceanologica Sinica >Molecular identification of bloom-forming species Phaeocystis globosa (Prymnesiophyta) and its dispersal based on rDNA ITS sequence analysis
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Molecular identification of bloom-forming species Phaeocystis globosa (Prymnesiophyta) and its dispersal based on rDNA ITS sequence analysis

机译:基于rDNA ITS序列分析的水华形成物种球囊藻(Phaeocystis globosa)的分子鉴定及其扩散

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摘要

The colony-forming Phaeocystis species are causative agents of dense bloom occurrences in coastal waters worldwide. It is difficult to separate them because of the different morphologies associated with their colonial stages. In this study we applied molecular approaches to analyze the genetic variation of Phaeocystis globosa and Phaeocystis pouchetii from several geographic regions, and to assist in tracing the dispersal of bloom-forming Phaeocystis species in coastal waters of China. The sequences of the internal transcribed spacers (ITS1 and ITS2) of rDNA and the 5. 8S ribosomal RNA gene of Phaeocystis strains were determined. Sequence comparison shows that P.globosa was the most divergent to P. pouchetii, exhibiting sequence divergence higher than 0.08. However, lower genetic divergences existed between strains of P. globosa. The sequence comparison of the Phaeocystis rDNA ITS clearly shows that the species isolated from the southeast coast of China is identified as P. globosa rather than P. cf. pouchetii or other species. Furthermore, the significance of rDNA variation in distinct global populations of P. globosa suggested it might have had sufficient time to accumulate detectable mutations at the rDNA locus, supporting the hypothesis of ancient dispersal of P . globosa to many areas, meaning that P. globosa blooms in the coastal waters of China are endemic rather than a newly introduced species or a foreign source. Finally, based on the high divergent region of rDNA ITS, a pair of species-specific primers for P. globosa were designed, they could be useful to detect the presence of this species in mixed plankton assemblages or flagellate stages that are recognized with diffculties by means of conventional microscopy.
机译:形成菌落的Phaeocystis物种是全世界沿海水域密集开花的致病因子。由于它们的殖民时期不同的形态,很难分离它们。在这项研究中,我们运用分子方法分析了来自多个地理区域的球囊藻和袋囊藻的遗传变异,并协助追踪了形成开花的囊藻在中国沿海水域的扩散。确定了rDNA的内部转录间隔区(ITS1和ITS2)的序列以及Phaeocystis菌株的5. 8S核糖体RNA基因。序列比较表明,球形假单胞菌与袋囊假单胞菌最分歧,表现出高于0.08的分歧。然而,球孢假单胞菌之间存在较低的遗传差异。 Phaeocystis rDNA ITS的序列比较清楚地表明,从中国东南沿海分离出的物种被鉴定为球形假单胞菌而不是cf.cf。 pouchetii或其他物种。此外,rDNA变异在不同的全球球孢种群中的重要性表明,它可能已经有足够的时间在rDNA位点积累可检测的突变,从而支持了古老的P传播假说。 globosa分布于许多地区,这意味着在中国沿海水域盛放的P. globosa是地方性的,而不是新近引进的物种或外来物种。最后,基于rDNA ITS的高发散区域,设计了一对P. globosa的物种特异性引物,它们可用于检测被难于识别的混合浮游生物组合或鞭毛阶段中该物种的存在。传统显微镜的手段。

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