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Real-Time PCR Quantification of Chloroplast DNA Supports DNA Barcoding of Plant Species

机译:叶绿体DNA的实时PCR定量支持植物物种的DNA条形码

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Species identification from extracted DNA is sometimes needed for botanical samples. DNA quantification is required for an accurate and effective examination. If a quantitative assay provides unreliable estimates, a higher quantity of DNA than the estimated amount may be used in additional analyses to avoid failure to analyze samples from which extracting DNA is difficult. Compared with conventional methods, real-time quantitative PCR (qPCR) requires a low amount of DNA and enables quantification of dilute DNA solutions accurately. The aim of this study was to develop a qPCR assay for quantification of chloroplast DNA from taxonomically diverse plant species. An absolute quantification method was developed using primers targeting the ribulose-1,5-bisphosphate carboxylase/oxygenase large subunit (rbcL) gene using SYBR Green I-based qPCR. The calibration curve was generated using the PCR amplicon as the template. DNA extracts from representatives of 13 plant families common in Japan. This demonstrates that qPCR analysis is an effective method for quantification of DNA from plant samples. The results of qPCR assist in the decision-making will determine the success or failure of DNA analysis, indicating the possibility of optimization of the procedure for downstream reactions.
机译:植物样品有时需要从提取的DNA进行物种鉴定。 DNA定量是准确有效检查所必需的。如果定量分析提供的估计值不可靠,则可以在其他分析中使用比估计量更多的DNA量,以避免无法分析难以提取DNA的样品。与传统方法相比,实时定量PCR(qPCR)需要少量的DNA,并且可以准确地定量稀释的DNA溶液。这项研究的目的是开发一种qPCR分析法,用于定量分类分类植物物种中的叶绿体DNA。使用基于SYBR Green I的qPCR,使用靶向核糖-1,5-双磷酸羧化酶/加氧酶大亚基(rbcL)基因的引物开发了绝对定量方法。使用PCR扩增子作为模板生成校准曲线。 DNA提取自日本13个常见植物科的代表。这表明qPCR分析是定量植物样品中DNA的有效方法。 qPCR辅助决策的结果将决定DNA分析的成功或失败,表明优化下游反应程序的可能性。

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