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Converting panax ginseng DNA and chemical fingerprints into two-dimensional barcode
Cai Y.4; Li P.4; Li X.-W.4; Zhao J.4; Chen H.1; Yang Q.2; Hu H.4
2017-07
Source PublicationJournal of Ginseng Research
ISSN1226-8453
Volume41Issue:3Pages:339-346
Abstract

Background: In this study, we investigated how to convert the Panax ginseng DNA sequence code and chemical fingerprints into a two-dimensional code. In order to improve the compression efficiency, GATC2Bytes and digital merger compression algorithms are proposed. Methods: HPLC chemical fingerprint data of 10 groups of P. ginseng from Northeast China and the internal transcribed spacer 2 (ITS2) sequence code as the DNA sequence code were ready for conversion. In order to convert such data into a two-dimensional code, the following six steps were performed: First, the chemical fingerprint characteristic data sets were obtained through the inflection filtering algorithm. Second, precompression processing of such data sets is undertaken. Third, precompression processing was undertaken with the P. ginseng DNA (ITS2) sequence codes. Fourth, the precompressed chemical fingerprint data and the DNA (ITS2) sequence code were combined in accordance with the set data format. Such combined data can be compressed by Zlib, an open source data compression algorithm. Finally, the compressed data generated a two-dimensional code called a quick response code (QR code). Results: Through the abovementioned converting process, it can be found that the number of bytes needed for storing P. ginseng chemical fingerprints and its DNA (ITS2) sequence code can be greatly reduced. After GTCA2Bytes algorithm processing, the ITS2 compression rate reaches 75% and the chemical fingerprint compression rate exceeds 99.65% via filtration and digital merger compression algorithm processing. Therefore, the overall compression ratio even exceeds 99.36%. The capacity of the formed QR code is around 0.5k, which can easily and successfully be read and identified by any smartphone. Conclusion: P. ginseng chemical fingerprints and its DNA (ITS2) sequence code can form a QR code after data processing, and therefore the QR code can be a perfect carrier of the authenticity and quality of P. ginseng information. This study provides a theoretical basis for the development of a quality traceability system of traditional Chinese medicine based on a two-dimensional code.

KeywordInternal Transcribed Spacer 2 Panax Ginseng Quality Traceability Of Traditional Chinese Medicine Quick Response Code Traditional Chinese Medicine Chemical Fingerprints
DOI10.1016/j.jgr.2016.06.006
URLView the original
Indexed BySCIE
WOS Research AreaPlant Sciences ; Pharmacology & Pharmacy ; Integrative & Complementary Medicine
WOS SubjectPlant Sciences ; Chemistry, Medicinal ; Integrative & Complementary Medicine
WOS IDWOS:000405641400014
PublisherKOREAN SOC GINSENG
Scopus ID2-s2.0-84995932356
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Citation statistics
Document TypeJournal article
CollectionInstitute of Chinese Medical Sciences
Corresponding AuthorHu H.
Affiliation1.Beijing Information Technology College
2.Sichuan University
3.China Academy of Chinese Medical Sciences
4.Universidade de Macau
First Author AffilicationUniversity of Macau
Corresponding Author AffilicationUniversity of Macau
Recommended Citation
GB/T 7714
Cai Y.,Li P.,Li X.-W.,et al. Converting panax ginseng DNA and chemical fingerprints into two-dimensional barcode[J]. Journal of Ginseng Research, 2017, 41(3), 339-346.
APA Cai Y.., Li P.., Li X.-W.., Zhao J.., Chen H.., Yang Q.., & Hu H. (2017). Converting panax ginseng DNA and chemical fingerprints into two-dimensional barcode. Journal of Ginseng Research, 41(3), 339-346.
MLA Cai Y.,et al."Converting panax ginseng DNA and chemical fingerprints into two-dimensional barcode".Journal of Ginseng Research 41.3(2017):339-346.
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