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Ionome mapping and amino acid metabolome profiling of Phaseolus vulgaris L. seeds imbibed with computationally informed phytoengineered copper sulphide nanoparticles

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dc.contributor.author Botha, Nandipha L.
dc.contributor.author Cloete, Karen J.
dc.contributor.author Šmit, Žiga
dc.contributor.author Isaković, Kristina
dc.contributor.author Akbari, Mahmood
dc.contributor.author Morad, Razieh
dc.contributor.author Madiba, Itani
dc.contributor.author David, Oladipupo M.
dc.contributor.author Santos, Luis P. M.
dc.contributor.author Dube, Admire
dc.contributor.author Pelicon, Primoz
dc.contributor.author Maaza, Malik
dc.date.accessioned 2024-02-01T06:28:12Z
dc.date.available 2024-02-01T06:28:12Z
dc.date.issued 2024-01-04
dc.identifier.citation Discover Nano. 2024 Jan 04;19(1):8
dc.identifier.uri https://doi.org/10.1186/s11671-023-03953-y
dc.identifier.uri https://hdl.handle.net/10500/30779
dc.description.abstract Abstract This study reports the effects of a computationally informed and avocado-seed mediated Phyto engineered CuS nanoparticles as fertilizing agent on the ionome and amino acid metabolome of Pinto bean seeds using both bench top and ion beam analytical techniques. Physico-chemical analysis of the Phyto engineered nanoparticles with scanning-electron microscopy, transmission electron microscopy, X-ray diffraction, and Fourier Transform Infrared Spectroscopy confirmed the presence of CuS nanoparticles. Molecular dynamics simulations to investigate the interaction of some active phytocompounds in avocado seeds that act as reducing agents with the nano-digenite further showed that 4-hydroxybenzoic acid had a higher affinity for interacting with the nanoparticle’s surface than other active compounds. Seeds treated with the digenite nanoparticles exhibited a unique ionome distribution pattern as determined with external beam proton-induced X-ray emission, with hotspots of Cu and S appearing in the hilum and micropyle area that indicated a possible uptake mechanism via the seed coat. The nano-digenite also triggered a plant stress response by slightly altering seed amino acid metabolism. Ultimately, the nano-digenite may have important implications as a seed protective or nutritive agent as advised by its unique distribution pattern and effect on amino acid metabolism. Graphical abstract
dc.title Ionome mapping and amino acid metabolome profiling of Phaseolus vulgaris L. seeds imbibed with computationally informed phytoengineered copper sulphide nanoparticles
dc.type Journal Article
dc.date.updated 2024-02-01T06:28:13Z
dc.language.rfc3066 en
dc.rights.holder The Author(s)


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