A Proof-of-Principle Study of Non-invasive Identification of Peanut Genotypes and Nematode Resistance Using Raman Spectroscopy

dc.creatorPayne, William Z.
dc.creatorDou, Tianyi
dc.creatorCason, John M.
dc.creatorSimpson, Charles E.
dc.creatorMcCutchen, Bill
dc.creatorBurow, Mark D. (TTU)
dc.creatorKurouski, Dmitry
dc.date.accessioned2023-04-06T21:15:05Z
dc.date.available2023-04-06T21:15:05Z
dc.date.issued2022
dc.descriptionCopyright © 2022 Payne, Dou, Cason, Simpson, McCutchen, Burow and Kurouski. cc-by
dc.description.abstractIdentification of peanut cultivars for distinct phenotypic or genotypic traits whether using visual characterization or laboratory analysis requires substantial expertise, time, and resources. A less subjective and more precise method is needed for identification of peanut germplasm throughout the value chain. In this proof-of-principle study, the accuracy of Raman spectroscopy (RS), a non-invasive, non-destructive technique, in peanut phenotyping and identification is explored. We show that RS can be used for highly accurate peanut phenotyping via surface scans of peanut leaves and the resulting chemometric analysis: On average 94% accuracy in identification of peanut cultivars and breeding lines was achieved. Our results also suggest that RS can be used for highly accurate determination of nematode resistance and susceptibility of those breeding lines and cultivars. Specifically, nematode-resistant peanut cultivars can be identified with 92% accuracy, whereas susceptible breeding lines were identified with 81% accuracy. Finally, RS revealed substantial differences in biochemical composition between resistant and susceptible peanut cultivars. We found that resistant cultivars exhibit substantially higher carotenoid content compared to the susceptible breeding lines. The results of this study show that RS can be used for quick, accurate, and non-invasive identification of genotype, nematode resistance, and nutrient content. Armed with this knowledge, the peanut industry can utilize Raman spectroscopy for expedited breeding to increase yields, nutrition, and maintaining purity levels of cultivars following release.
dc.identifier.citationPayne, W.Z., Dou, T., Cason, J.M., Simpson, C.E., McCutchen, B., Burow, M.D., & Kurouski, D.. 2022. A Proof-of-Principle Study of Non-invasive Identification of Peanut Genotypes and Nematode Resistance Using Raman Spectroscopy. Frontiers in Plant Science, 12. https://doi.org/10.3389/fpls.2021.664243
dc.identifier.urihttps://doi.org/10.3389/fpls.2021.664243
dc.identifier.urihttps://hdl.handle.net/2346/92588
dc.language.isoeng
dc.subjectgenotyping
dc.subjectidentification
dc.subjectnematode resistance
dc.subjectpeanut varieties
dc.subjectphenotyping
dc.subjectRaman spectroscopy
dc.titleA Proof-of-Principle Study of Non-invasive Identification of Peanut Genotypes and Nematode Resistance Using Raman Spectroscopy
dc.typeArticle

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