» Articles » PMID: 32846565

Monitoring the Authenticity of Pu'er Tea Via Chemometric Analysis of Multielements and Stable Isotopes

Overview
Journal Food Res Int
Date 2020 Aug 28
PMID 32846565
Citations 5
Authors
Affiliations
Soon will be listed here.
Abstract

Mineral elements and stable isotopes combined with stoichiometric methods were used as a potential tool for first authenticating Chinese tea according to it's production year. A total of 86 mineral elements and stable isotope compositions were determined from the Xiangzhujing Pu'er tea in five different production years using ICP-MS and ICP-OES. On the basis of 78 statistically significant mineral elements and stable isotopes, HCA, PCA, PLS-DA, BP-ANN, and LDA were employed to build authentication models for predicting the Pu'er tea with different production years. The clustering results of the HCA and PCA were worse than that of PLS-DA, BP-ANN, and LDA. The PLS-DA model displayed a perfect model performance (RX = 0.86, RY = 0.974, and Q = 0.922). The authentication performance of LDA and BP-ANN revealed their 100% recognition sensitivity and prediction ability and was thus better than that of PLS-DA. Mn, Zn, and Tl were the markers for enabling the successful authentication of Pu'er tea with different production years. This study contributes toward generalizing the use of mineral element and stable isotope fingerprinting combined with LDA and BP-ANN as a promising tool for authentication of tea worldwide.

Citing Articles

Discriminating the adulteration of varieties and misrepresentation of vintages of Pu'er tea based on Fourier transform near infrared diffuse reflectance spectroscopy.

Yang Z, Lu X, Chen L Front Chem. 2025; 13:1546702.

PMID: 39974614 PMC: 11835838. DOI: 10.3389/fchem.2025.1546702.


Improving the geographical traceability of tea in China based on stable isotope ratios.

Liu H, Zeng Y, Zhang K, Zhao X, Yang T J Food Sci Technol. 2024; 61(10):1943-1954.

PMID: 39574920 PMC: 11576675. DOI: 10.1007/s13197-024-05970-w.


Stable isotope signatures of deuterium, oxygen 18, and carbon 13 (δH, O, C) in imported apples available in the markets of Vietnam.

Lan Anh H, Duc Nhan D, Minh Quynh T Food Chem X. 2023; 17:100576.

PMID: 36845490 PMC: 9944554. DOI: 10.1016/j.fochx.2023.100576.


Inductively Coupled Plasma-Mass Spectrometry (ICP-MS), a Useful Tool in Authenticity of Agricultural Products' and Foods' Origin.

Mazarakioti E, Zotos A, Thomatou A, Kontogeorgos A, Patakas A, Ladavos A Foods. 2022; 11(22).

PMID: 36429296 PMC: 9689705. DOI: 10.3390/foods11223705.


The specific DNA barcodes based on chloroplast genes for species identification of plants.

Jiang S, Chen F, Qin P, Xie H, Peng G, Li Y Physiol Mol Biol Plants. 2022; 28(4):837-848.

PMID: 35592487 PMC: 9110604. DOI: 10.1007/s12298-022-01175-7.