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首页> 外文期刊>Aquatic ecosystem health & management >Monitoring the seasonal dynamics of microalgae in the South Sea of Korea by use of a cytochrome c oxidase I DNA barcode
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Monitoring the seasonal dynamics of microalgae in the South Sea of Korea by use of a cytochrome c oxidase I DNA barcode

机译:使用细胞色素C氧化酶I DNA条码监测韩国南海微藻的季节性动态

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Microalgae are important primary producers in the marine environment, and are also important sources of health foods and medical products. Rapidly growing microalgae have potential use for the production of commercial products, but can also cause harmful microalgal blooms in natural ecosystems. There are many available techniques for the identification of microalgae in natural ecosystems. We used the mitochondrial cytochrome c oxidase subunit I gene as DNA barcode to identify 14 species of microalgae from the South Sea of Korea and to discriminate among similar biogeographic subgroups within species. In addition, we designed species-specific primers targeting the cytochrome c oxidase subunit I gene to evaluate monthly changes of microalgae throughout the year. Chaetoceros brevis, Asterionellopsis glacialis and Stephanopyxis turris were present during all seasons, whereas Skeletonema japonicum, Nitzschia improvisa, Ditylum brightwellii and Chaetoceros diadema were only detected during winter and spring. Our results indicate that species-specific polymerase chain reaction of the cytochrome c oxidase subunit I gene can be used to monitor the seasonal dynamics of microalgae in the South Sea of Korea. This polymerase chain reaction detection method successfully identified the 14 most common species of microalgae with the same polymerase chain reaction condition near Tongyeong, in the South Sea of Korea.
机译:微藻是海洋环境中重要的初级生产者,也是保健食品和医疗产品的重要来源。快速生长的微藻可用于生产商业产品,但也会在自然生态系统中引起有害的微藻开花。在自然生态系统中有许多可用的技术来识别微藻。我们使用线粒体细胞色素C氧化酶亚基I基因作为DNA条码来识别来自韩国南海的14种微藻,并在种内区分相似的生物地理亚组。此外,我们设计了针对细胞色素C氧化酶亚基I基因的物种特异性引物,以评估全年微藻的每月变化。在所有季节都存在短毛化Chaetoceros brevis,Asterionellopsis glacialis和Stephanopyxis turris,而仅在冬季和春季才检测到日本骨骨菜,即生小球菌,Ditylum Brightwellii和Chaetoceros冠皮病。我们的结果表明,细胞色素C氧化酶亚基I基因的物种特异性聚合酶链反应可用于监测韩国南海微藻的季节动态。这种聚合酶链反应检测方法成功地鉴定了韩国南海统营附近具有相同聚合酶链反应条件的14种最常见微藻。

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