Zhu Ling, Umbrella Polypore · 2016 · Research Support, Non U.S. Gov'T
Low relevanceDifferential identification of mushrooms sclerotia by IR macro-fingerprint method.
Polyporus umbellatus
Key points
- Many macrofungus sclerotia are well-known medicinal herbs, health food and nutritional supplements
- In this study, IR macro-fingerprint method was used in the identification of these sclerotia
- The results showed that the spectrum of L. rhinocerotis (LR) was comparable with P. cocos with 94.4% correlation, except that the peak at 1543cm(-1) of LR appeared in lower intensity
- The spectrum of P. umbellatus and P. tuber-regium was also correlated (91.5%), as both spectra could be clearly discriminated in that P. umbellatus spectrum has small base peaks located at the range of 1680-1500cm(-1)
- The first IR has revealed the dissimilarity among five mushrooms sclerotia
- The second derivative and 2DIR further enhanced the identification in detail
Metadata-grounded summary
Citation abstract
Many macrofungus sclerotia are well-known medicinal herbs, health food and nutritional supplements. However, the prevalent adulterant commercial products are major hindrances to their incorporation into mainstream medical use in many countries. The mushroom sclerotia of Lignosus rhinocerotis, Poria cocos, Polyporus umbellatus, Pleurotus tuber-regium and Omphalia lapidescens are commonly used in traditional Chinese medicine. In this study, IR macro-fingerprint method was used in the identification of these sclerotia. The results showed that the spectrum of L. rhinocerotis (LR) was comparable with P. cocos with 94.4% correlation, except that the peak at 1543cm(-1) of LR appeared in lower intensity. The spectrum of P. umbellatus and P. tuber-regium was also correlated (91.5%), as both spectra could be clearly discriminated in that P. umbellatus spectrum has small base peaks located at the range of 1680-1500cm(-1). O. lapidescens was not comparable with all the other sclerotia as its spectrum was totally different. Its base peak was broad and derivated equally along the range. The first IR has revealed the dissimilarity among five mushrooms sclerotia. The second derivative and 2DIR further enhanced the identification in detail.
Citation
Choong YK, Lan J, Lee HL, Chen XD, Wang XG, Yang YP (2016). Differential identification of mushrooms sclerotia by IR macro-fingerprint method. Spectrochimica acta. Part A, Molecular and biomolecular spectroscopy https://doi.org/10.1016/j.saa.2015.07.054 PMID: 26186395
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