Identification of Dendrobium officinale Using DNA Barcoding Method Combined with HRM and qPCR Technology
文献类型: 外文期刊
第一作者: Chen, Wenqiang
作者: Chen, Wenqiang;Chen, Xiaoyun;Xu, Junfeng;Wang, Xiaofu;Chen, Wenqiang;Cai, Jian;Chen, Xiaoyun;Xu, Junfeng;Wang, Xiaofu
作者机构:
关键词: Dendrobium officinale; DNA barcode; SNP; SYBR real-time PCR; Characteristic species
期刊名称:FOOD ANALYTICAL METHODS ( 影响因子:3.498; 五年影响因子:3.226 )
ISSN: 1936-9751
年卷期: 2022 年 15 卷 5 期
页码:
收录情况: SCI
摘要: Dendrobium officinale is widely used as a traditional medicine across East Asia. It has several medicinal and ornamental values. Therefore, D. officinale is frequently adulterated with other Dendrobium species in the market. Morphological similarities in Dendrobium species limit the easy identification of individual specimens. In this study, DNA barcoding was used as the sequence model system, and SNP-specific sites were explored for the identification of D. officinale. In this study, a total of 45 Dendrobium species including 25 D. officinale and 20 different Dendrobium species were explored. The identification abilities of 9 DNA barcodes were determined using 45 Dendrobium materials, and the findings showed that they had different identification capabilities. High-resolution melting curve analysis (HRM) technology was used to differentiate D. officinale species from non-D. officinale species, using DNA barcode ITS2 which had the strongest identification capability. Intraspecific sequence variability among 25 D. officinale samples was significantly diverse. DNA barcode sequences analysis identified single nucleotide polymorphism (SNP) sites in 4 DNA barcode sequences (ITS2, ycf1b, psbK-psbI, and psbA-trnH). SNP site-specific primers were designed using the amplification refractory mutation system (ARMS), and intraspecific identification of D. officinale was verified using real-time PCR. In addition, D. officinale samples No. 05 and 24 were identified. The findings of this study provide information on the accurate identification of D. officinale samples. Furthermore, it provides a novel insight into the identification of species with similar evolutionary histories and into determining the quality of medicinal materials.
分类号:
- 相关文献
作者其他论文 更多>>
-
A Novel Quantification Method for Gene-Edited Animal Detection Based on ddPCR
作者:Wang, Kaili;Lan, Hangzhen;Ji, Yi;Peng, Cheng;Wang, Xiaofu;Yang, Lei;Xu, Junfeng;Chen, Xiaoyun;Ji, Yi;Peng, Cheng;Wang, Xiaofu;Yang, Lei;Xu, Junfeng;Chen, Xiaoyun
关键词:gene editing; MSTN; nucleic acid detection; ddPCR
-
An Ultra-Sensitive Quarantine Pathogen On-Site Detection Based on a One-Pot Asymmetric Recombinase Polymerase Amplification and MNAzyme-Assisted Target Recycling Biosensor (OAR-MNA)
作者:Yang, Lei;Peng, Cheng;Chen, Xiaoyun;Xu, Xiaoli;Wei, Wei;Wang, Xiaofu;Xu, Junfeng;Chen, Guanwei;Yan, Jiatong;Sun, Meihao;Bo, Yongming;Fang, Xiaoxue;Wu, Jian
关键词:asymmetric RPA; bacterial fruit blotch; cucumber green mottle mosaic virus; MNAzyme; one-pot; ssDNA
-
Development of a novel Cas13a/Cas12a-mediated 'one-pot' dual detection assay for genetically modified crops
作者:Ding, Lin;Wang, Xiaofu;Chen, Xiaoyun;Xu, Xiaoli;Wei, Wei;Yang, Lei;Ji, Yi;Xu, Junfeng;Peng, Cheng;Wu, Jian
关键词:Dual CRISPR; Genetically Modified (GM) detection; One-pot reaction; Recombinase polymerase amplification; (RPA); Multiplexed lateral flow strips
-
A Novel Allelic Variant of OsAGPL2 Influences Rice Eating and Cooking Quality
作者:Dan, Yuqing;He, Yong;Peng, Ruixiao;Tian, Zhihong;Huang, Fudeng;Li, Chunshou;Song, Jiayu;Hao, Yuanyuan;Xu, Junfeng;Xu, Junfeng
关键词:rice quality;
OsAGPL2 ; white-core endosperm mutant; superior haplotype -
From monomers to pentamers, diverse antimicrobial benzofuran polyketides from marine-derived Striaticonidium cinctum
作者:Chen, Chunmei;Cai, Jian;Chen, Yi;Yang, Bin;Liu, Yonghong;Zhou, Xuefeng;Chen, Chunmei;Cai, Jian;Chen, Yi;Yang, Bin;Liu, Yonghong;Zhou, Xuefeng;Yang, Chun;Tao, Huaming;Liu, Manli;Fang, Wei
关键词:
-
Combining QTL mapping and transcriptomics to identify candidate genes for cold tolerance during the budding and seedling stages in rice
作者:Kim, Chun Ae;Chen, Wenqiang;Zhang, Guogen;Zhao, Xiuqin;Zheng, Tianqing;Wang, Wensheng;Xu, Jianlong;Zhu, Shuangbing;Shen, Congcong;Chen, Kai;Xu, Jianlong;Xu, Jianlong;Kim, Chun Ae
关键词:Quantitative trait locus (QTL); Transcriptomics; Cold tolerance (CT); Candidate genes; Rice
-
A 3D point cloud and deep learning based automated process for quantifying multi-scale phenotypes in sliced bread
作者:Zhou, Honghao;Qin, Bingxi;Chen, Jiawei;Zhou, Honghao;Zhou, Qin;Wang, Xinru;Min, Haijiang;Qin, Bingxi;Liang, Shaowei;Wang, Xiao;Zhong, Yingxin;Cai, Jian;Huang, Mei;Li, Qing;Jiang, Dong;Chen, Jiawei;Zhang, Jungao;Zhang, Jungao;Zhang, Jungao
关键词:Sliced bread; Line scanning laser; 3D deep learning model; Pore 3D trait analysis