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Changes in and Recognition of Electrochemical Fingerprints of Spp. in Different Seasons

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Specialty Biotechnology
Date 2022 Dec 23
PMID 36551081
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Abstract

Electroanalytical chemistry is a metrological analysis technique that provides information feedback by measuring the voltammetric signal that changes when a molecule is involved in an electrochemical reaction. There is variability in the type and content of electrochemically active substances among different plants, and the signal differences presented by such differences in electrochemical reactions can be used for plant identification and physiological monitoring. This work used electroanalytical chemistry to monitor the growth of three spp. This work explores the feasibility of the electrochemical analysis technique for the physiological monitoring of highly differentiated plants within the genus and further validates the technique. Changes in the electrochemical fingerprints of , and 'Matsumurae' were recorded during the one-year developmental cycle. The results show that the differences in the electrochemical fingerprint profiles of spp. can be used to distinguish different species and identify the growth status in each season. This work also concludes with an identification flowchart based on electrochemical fingerprinting.

References
1.
Wang Y, Pan B, Zhang M, Du X, Wu W, Fu L . Electrochemical Profile Recording for Pueraria Variety Identification. Anal Sci. 2020; 36(10):1237-1241. DOI: 10.2116/analsci.20P079. View

2.
Xu Y, Lu Y, Zhang P, Wang Y, Zheng Y, Fu L . Infrageneric phylogenetics investigation of Chimonanthus based on electroactive compound profiles. Bioelectrochemistry. 2020; 133:107455. DOI: 10.1016/j.bioelechem.2020.107455. View

3.
Garcia L, Benjamin S, Antunes R, Lopes F, Somerset V, Gil E . Solanum melongena polyphenol oxidase biosensor for the electrochemical analysis of paracetamol. Prep Biochem Biotechnol. 2016; 46(8):850-855. DOI: 10.1080/10826068.2016.1155060. View

4.
Mitra S, Purkait T, Pramanik K, Maiti T, Dey R . Three-dimensional graphene for electrochemical detection of Cadmium in Klebsiella michiganensis to study the influence of Cadmium uptake in rice plant. Mater Sci Eng C Mater Biol Appl. 2019; 103:109802. DOI: 10.1016/j.msec.2019.109802. View

5.
Fan B, Wang Q, Wu W, Zhou Q, Li D, Xu Z . Electrochemical Fingerprint Biosensor for Natural Indigo Dye Yielding Plants Analysis. Biosensors (Basel). 2021; 11(5). PMC: 8153556. DOI: 10.3390/bios11050155. View