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首页> 外文期刊>Frontiers in Plant Science >Application of the Ribosomal DNA ITS2 Region of Physalis (Solanaceae): DNA Barcoding and Phylogenetic Study
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Application of the Ribosomal DNA ITS2 Region of Physalis (Solanaceae): DNA Barcoding and Phylogenetic Study

机译:茄科(Solanaceae)核糖体DNA ITS2区域的应用:DNA条形码和系统发育研究

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Recently, commercial interest in Physalis species has grown worldwide due to their high nutritional value, edible fruit, and potential medicinal properties. However, many Physalis species have similar shapes and are easily confused, and consequently the phylogenetic relationships between Physalis species are poorly understood. This hinders their safe utilization and genetic resource conservation. In this study, the nuclear ribosomal ITS2 region was used to identify species and phylogenetically examine Physalis . Eighty-six ITS2 regions from 45 Physalis species were analyzed. The ITS2 sequences were aligned using Clustal W and genetic distances were calculated using MEGA V6.0. The results showed that ITS2 regions have significant intra- and inter-specific divergences, obvious barcoding gaps, and higher species discrimination rates (82.2% for both the BLASTA1 and nearest distance methods). In addition, the secondary structure of ITS2 provided another way to differentiate species. Cluster analysis based on ITS2 regions largely concurred with the relationships among Physalis species established by many previous molecular analyses, and showed that most sections of Physalis appear to be polyphyletic. Our results demonstrated that ITS2 can be used as an efficient and powerful marker in the identification and phylogenetic study of Physalis species. The technique provides a scientific basis for the conservation of Physalis plants and for utilization of resources.
机译:近来,由于酸浆种类的高营养价值,可食用的水果和潜在的药用特性,其在世界范围内的商业兴趣已经增长。然而,许多酸浆物种具有相似的形状并且容易混淆,因此对酸浆物种之间的系统发育关系了解得很少。这阻碍了它们的安全利用和遗传资源保护。在这项研究中,核糖体ITS2核仁区域用于鉴定物种并进行系统发育检查。分析了来自45个酸浆物种的86个ITS2区域。使用Clustal W比对ITS2序列,并使用MEGA V6.0计算遗传距离。结果表明,ITS2区具有明显的种内和种间差异,明显的条形码缺口和更高的物种区分率(BLASTA1和最近距离方法均达到82.2%)。此外,ITS2的二级结构提供了另一种区分物种的方法。基于ITS2区域的聚类分析在很大程度上与许多先前的分子分析所建立的酸浆种类之间的关系一致,并且表明酸浆的大多数部分似乎是多系的。我们的研究结果表明,ITS2可以作为一种有效而有力的标记物,用于识别和鉴别空泡种类。该技术为酸浆植物的保护和资源利用提供了科学依据。

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