Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD
Background: Qianhu is a traditional Chinese medicine. It is thought that Qianhu roots will harden after bolting and not be suitable for medicinal purposes. Bolting Qianhu and unbolting Qianhu are referred to as “Xiong Qianhu„ and “Ci Qianhu,„ respectively. In...
Main Authors: | , , , , , , |
---|---|
Format: | Article |
Language: | English |
Published: |
MDPI AG
2019-04-01
|
Series: | Molecules |
Subjects: | |
Online Access: | https://www.mdpi.com/1420-3049/24/7/1439 |
id |
doaj-b5ba310e193f44b19348235542fd137d |
---|---|
record_format |
Article |
spelling |
doaj-b5ba310e193f44b19348235542fd137d2020-11-25T00:51:33ZengMDPI AGMolecules1420-30492019-04-01247143910.3390/molecules24071439molecules24071439Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DADLing Li Chen0Shan Shan Chu1Ling Zhang2Jin Xie3Min Dai4Xin Wu5Hua Sheng Peng6College of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaCollege of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaCollege of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaCollege of Pharmacy, Anhui Medical University, Hefei 230032, ChinaCollege of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaCollege of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaCollege of Pharmacy, Anhui University of Chinese Medicine, Hefei 230012, ChinaBackground: Qianhu is a traditional Chinese medicine. It is thought that Qianhu roots will harden after bolting and not be suitable for medicinal purposes. Bolting Qianhu and unbolting Qianhu are referred to as “Xiong Qianhu„ and “Ci Qianhu,„ respectively. In this study, the properties, microscopic and chemical characteristics of Ci Qianhu and Xiong Qianhu roots were compared using fluorescence microscopy, laser microdissection coupled with ultra-high-performance liquid chromatography-quadrupole/time-of-flight mass spectrometry, and high-performance liquid chromatography with diode-array detection. Results: Microscopy results showed that the area of secondary xylem in the root increased after bolting, with the cork and secretory canals showing strong fluorescence intensity. A total of 34 peaks, mostly pyranocoumarins, were identified in the tissues of Ci Qianhu and Xiong Qianhu. The secretory canals contained the highest variability of coumarins, whereas the secondary xylem contained the least coumarins. Moreover, seven coumarins, especially the pyran- coumarin, decreased after bolting. Generally, both before and after bolting, coumarin level was the highest in the bark, followed by the middle part, and the lowest in the inner part. Conclusion: Thus, it was indicated that the area of secondary xylem increased after bolting, however the coumarin variant and content decreased in the secondary xylem of Qianhu. The result shows that the quality of Qianhu decreases after bolting, which supports the viewpoint that Xiong Qianhu is not suitable for medicinal use.https://www.mdpi.com/1420-3049/24/7/1439bolting<i>Peucedanum praeruptorum</i> DunnmicrostructureLMDUPLC-Q/TOF–MSHPLC–DAD |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Ling Li Chen Shan Shan Chu Ling Zhang Jin Xie Min Dai Xin Wu Hua Sheng Peng |
spellingShingle |
Ling Li Chen Shan Shan Chu Ling Zhang Jin Xie Min Dai Xin Wu Hua Sheng Peng Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD Molecules bolting <i>Peucedanum praeruptorum</i> Dunn microstructure LMD UPLC-Q/TOF–MS HPLC–DAD |
author_facet |
Ling Li Chen Shan Shan Chu Ling Zhang Jin Xie Min Dai Xin Wu Hua Sheng Peng |
author_sort |
Ling Li Chen |
title |
Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD |
title_short |
Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD |
title_full |
Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD |
title_fullStr |
Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD |
title_full_unstemmed |
Tissue-Specific Metabolite Profiling on the Different Parts of Bolting and Unbolting <i>Peucedanum praeruptorum</i> Dunn (Qianhu) by Laser Microdissection Combined with UPLC-Q/TOF–MS and HPLC–DAD |
title_sort |
tissue-specific metabolite profiling on the different parts of bolting and unbolting <i>peucedanum praeruptorum</i> dunn (qianhu) by laser microdissection combined with uplc-q/tof–ms and hplc–dad |
publisher |
MDPI AG |
series |
Molecules |
issn |
1420-3049 |
publishDate |
2019-04-01 |
description |
Background: Qianhu is a traditional Chinese medicine. It is thought that Qianhu roots will harden after bolting and not be suitable for medicinal purposes. Bolting Qianhu and unbolting Qianhu are referred to as “Xiong Qianhu„ and “Ci Qianhu,„ respectively. In this study, the properties, microscopic and chemical characteristics of Ci Qianhu and Xiong Qianhu roots were compared using fluorescence microscopy, laser microdissection coupled with ultra-high-performance liquid chromatography-quadrupole/time-of-flight mass spectrometry, and high-performance liquid chromatography with diode-array detection. Results: Microscopy results showed that the area of secondary xylem in the root increased after bolting, with the cork and secretory canals showing strong fluorescence intensity. A total of 34 peaks, mostly pyranocoumarins, were identified in the tissues of Ci Qianhu and Xiong Qianhu. The secretory canals contained the highest variability of coumarins, whereas the secondary xylem contained the least coumarins. Moreover, seven coumarins, especially the pyran- coumarin, decreased after bolting. Generally, both before and after bolting, coumarin level was the highest in the bark, followed by the middle part, and the lowest in the inner part. Conclusion: Thus, it was indicated that the area of secondary xylem increased after bolting, however the coumarin variant and content decreased in the secondary xylem of Qianhu. The result shows that the quality of Qianhu decreases after bolting, which supports the viewpoint that Xiong Qianhu is not suitable for medicinal use. |
topic |
bolting <i>Peucedanum praeruptorum</i> Dunn microstructure LMD UPLC-Q/TOF–MS HPLC–DAD |
url |
https://www.mdpi.com/1420-3049/24/7/1439 |
work_keys_str_mv |
AT linglichen tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT shanshanchu tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT lingzhang tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT jinxie tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT mindai tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT xinwu tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad AT huashengpeng tissuespecificmetaboliteprofilingonthedifferentpartsofboltingandunboltingipeucedanumpraeruptorumidunnqianhubylasermicrodissectioncombinedwithuplcqtofmsandhplcdad |
_version_ |
1725245203868024832 |