Xu Songzhi, Li Dezhu, Li Jianwu, Xiang Xiaoguo, Jin Weitao, Huang Weichang, Jin Xiaohua, Huang Luqi
State Key Laboratory of Systematic and Evolutionary Botany, Institute of Botany, Chinese Academy of Sciences, Beijing 100093, P. R. China.
Key Laboratory for Plant Diversity and Biogeography of East Asia, Kunming Institute of Botany, Chinese Academy of Sciences, Kunming, Yunnan 650201, China.
PLoS One. 2015 Jan 20;10(1):e0115168. doi: 10.1371/journal.pone.0115168. eCollection 2015.
DNA barcoding has been proposed to be one of the most promising tools for accurate and rapid identification of taxa. However, few publications have evaluated the efficiency of DNA barcoding for the large genera of flowering plants. Dendrobium, one of the largest genera of flowering plants, contains many species that are important in horticulture, medicine and biodiversity conservation. Besides, Dendrobium is a notoriously difficult group to identify. DNA barcoding was expected to be a supplementary means for species identification, conservation and future studies in Dendrobium. We assessed the power of 11 candidate barcodes on the basis of 1,698 accessions of 184 Dendrobium species obtained primarily from mainland Asia. Our results indicated that five single barcodes, i.e., ITS, ITS2, matK, rbcL and trnH-psbA, can be easily amplified and sequenced with the currently established primers. Four barcodes, ITS, ITS2, ITS+matK, and ITS2+matK, have distinct barcoding gaps. ITS+matK was the optimal barcode based on all evaluation methods. Furthermore, the efficiency of ITS+matK was verified in four other large genera including Ficus, Lysimachia, Paphiopedilum, and Pedicularis in this study. Therefore, we tentatively recommend the combination of ITS+matK as a core DNA barcode for large flowering plant genera.
DNA条形码技术已被认为是准确、快速鉴定分类群最具前景的工具之一。然而,很少有出版物评估DNA条形码技术在开花植物大属中的效率。石斛属是开花植物最大的属之一,包含许多在园艺、医学和生物多样性保护方面具有重要意义的物种。此外,石斛属是出了名的难以鉴定的类群。DNA条形码技术有望成为石斛属物种鉴定、保护及未来研究的辅助手段。我们基于主要从亚洲大陆获取的184种石斛属植物的1698份材料,评估了11个候选条形码的效力。我们的结果表明,5个单条形码,即ITS、ITS2、matK、rbcL和trnH-psbA,使用目前已确立的引物能够轻松地进行扩增和测序。4个条形码,ITS、ITS2、ITS+matK和ITS2+matK,具有明显的条形码间隙。基于所有评估方法,ITS+matK是最佳条形码。此外,在本研究中,ITS+matK的效率在包括榕属、珍珠菜属、兜兰属和马先蒿属在内的其他4个大属中得到了验证。因此,我们初步推荐将ITS+matK组合作为开花植物大属的核心DNA条形码。