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Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes

Small-scale crop production has been significantly impacted by the heavy price, limited supply, and frequent shortage of inorganic fertilisers, which is partly attributable to the Covid-19 pandemic outbreak and led to rising oil and food prices. Thus, integrating environmentally friendly agricultura...

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Autores principales: Nelwamondo, Aluwani Mutanwa, Kaningini, Amani Gabriel, Ngmenzuma, Titus Yeliku-ang, Maseko, Sipho Thulani, Maaza, Malik, Mohale, Keletso Cecilia
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Elsevier 2023
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10472070/
https://www.ncbi.nlm.nih.gov/pubmed/37662830
http://dx.doi.org/10.1016/j.heliyon.2023.e19419
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author Nelwamondo, Aluwani Mutanwa
Kaningini, Amani Gabriel
Ngmenzuma, Titus Yeliku-ang
Maseko, Sipho Thulani
Maaza, Malik
Mohale, Keletso Cecilia
author_facet Nelwamondo, Aluwani Mutanwa
Kaningini, Amani Gabriel
Ngmenzuma, Titus Yeliku-ang
Maseko, Sipho Thulani
Maaza, Malik
Mohale, Keletso Cecilia
author_sort Nelwamondo, Aluwani Mutanwa
collection PubMed
description Small-scale crop production has been significantly impacted by the heavy price, limited supply, and frequent shortage of inorganic fertilisers, which is partly attributable to the Covid-19 pandemic outbreak and led to rising oil and food prices. Thus, integrating environmentally friendly agricultural practices that can improve crop productivity and advance the sustainability of agricultural cropping systems is critical. This study synthesized and characterised MgO and CaCO(3)Moringa oleifera nanoparticles and assessed their effects on groundnut genotypes. The effect of biosynthesized MgO and CaCO(3) nanoparticles using Moringa oleifera extract on the growth and yield of groundnut genotypes exposed to different concentrations of 50, 100 and 200 mg/L was examined. The experiment was carried laid out in a 3 × 8 factorial completely randomized design (CRD) with eight replicates per treatment. Each plant was sprayed with 5 ml of the solution crystalline size of the MgO and CaCO(3) nanoparticles 2.48 nm and 10.30 nm, respectively. Foliar application of nanoparticle treatments was applied weekly except for the negative control. The collected data were subjected to a two-way analysis of variance (ANOVA). Mean separations were done using Tukey's Honest Significant Difference (HSD) at P < 0.05. The findings demonstrated that foliar application of MgO and CaCO(3) nanoparticles positively affected groundnut biomass production. The results further revealed that the concentration of 50 mg/L of MgO and 100 mg/L of CaCO(3) considerably improved groundnut plant growth, yield, and nodulation in comparison with other treatments. There is a great deal of evidence signifying that foliar applications of 50 mg/L of MgO 100 mg/L CaCO(3) contributed greatly to plant growth and crop production. Therefore, 50 mg/L of MgO and 100 mg/L CaCO(3) nanoparticles foliar application could be recommended as nano-fertilisers application rate for groundnut production.
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spelling pubmed-104720702023-09-02 Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes Nelwamondo, Aluwani Mutanwa Kaningini, Amani Gabriel Ngmenzuma, Titus Yeliku-ang Maseko, Sipho Thulani Maaza, Malik Mohale, Keletso Cecilia Heliyon Research Article Small-scale crop production has been significantly impacted by the heavy price, limited supply, and frequent shortage of inorganic fertilisers, which is partly attributable to the Covid-19 pandemic outbreak and led to rising oil and food prices. Thus, integrating environmentally friendly agricultural practices that can improve crop productivity and advance the sustainability of agricultural cropping systems is critical. This study synthesized and characterised MgO and CaCO(3)Moringa oleifera nanoparticles and assessed their effects on groundnut genotypes. The effect of biosynthesized MgO and CaCO(3) nanoparticles using Moringa oleifera extract on the growth and yield of groundnut genotypes exposed to different concentrations of 50, 100 and 200 mg/L was examined. The experiment was carried laid out in a 3 × 8 factorial completely randomized design (CRD) with eight replicates per treatment. Each plant was sprayed with 5 ml of the solution crystalline size of the MgO and CaCO(3) nanoparticles 2.48 nm and 10.30 nm, respectively. Foliar application of nanoparticle treatments was applied weekly except for the negative control. The collected data were subjected to a two-way analysis of variance (ANOVA). Mean separations were done using Tukey's Honest Significant Difference (HSD) at P < 0.05. The findings demonstrated that foliar application of MgO and CaCO(3) nanoparticles positively affected groundnut biomass production. The results further revealed that the concentration of 50 mg/L of MgO and 100 mg/L of CaCO(3) considerably improved groundnut plant growth, yield, and nodulation in comparison with other treatments. There is a great deal of evidence signifying that foliar applications of 50 mg/L of MgO 100 mg/L CaCO(3) contributed greatly to plant growth and crop production. Therefore, 50 mg/L of MgO and 100 mg/L CaCO(3) nanoparticles foliar application could be recommended as nano-fertilisers application rate for groundnut production. Elsevier 2023-08-25 /pmc/articles/PMC10472070/ /pubmed/37662830 http://dx.doi.org/10.1016/j.heliyon.2023.e19419 Text en © 2023 The Authors https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/).
spellingShingle Research Article
Nelwamondo, Aluwani Mutanwa
Kaningini, Amani Gabriel
Ngmenzuma, Titus Yeliku-ang
Maseko, Sipho Thulani
Maaza, Malik
Mohale, Keletso Cecilia
Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title_full Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title_fullStr Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title_full_unstemmed Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title_short Biosynthesis of magnesium oxide and calcium carbonate nanoparticles using Moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (Arachis hypogaea L.) genotypes
title_sort biosynthesis of magnesium oxide and calcium carbonate nanoparticles using moringa oleifera extract and their effectiveness on the growth, yield and photosynthetic performance of groundnut (arachis hypogaea l.) genotypes
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC10472070/
https://www.ncbi.nlm.nih.gov/pubmed/37662830
http://dx.doi.org/10.1016/j.heliyon.2023.e19419
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