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The use of biological selenium nanoparticles to suppress Triticum aestivum L. crown and root rot diseases induced by Fusarium species and improve yield under drought and heat stress.
Faculty
Agriculture
Year:
2021
Type of Publication:
ZU Hosted
Pages:
Authors:
Sarah Alsayed Elsayed Elsayed Foda
Staff Zu Site
Abstract In Staff Site
Journal:
Accepted in Saudi Journal of Biological Sciences xxx (xxxx) 1-11 (2021) Accepted in Saudi Journal of Biological Sciences xxx (xxxx) 1-11 (2021)
Volume:
Keywords :
, , , biological selenium nanoparticles , suppress Triticum aestivum
Abstract:
Fusarium species threaten wheat crops around the world and cause global losses. The global trend is toward using biological materials such as selenium (Se) in nano form to control these fungi. Bulk selenium is toxic and harmful at high doses; however, selenium nanoparticles are safe; therefore, the aim of this study to employ the biological selenium nanoparticles (BioSeNPs) synthesized by Lactobacillus acidophilus ML14 in controlling wheat crown and root rot diseases (CRDs) induced by Fusarium spp., especially Fusarium culmorum and Fusarium graminearum, and their reflection on the growth and productivity of wheat. The ability of BioSeNPs to suppress the development and propagation of F. culmorum and F. graminearum and the CRDs incidence were also investigated. The obtained BioSeNPs were spherical with a size of 46 nm and a net charge of –23.48. The BioSeNPs significantly scavenged 88 and 92% of DPPH_and ABTS_ radicals and successfully inhibited the fungal growth in the range of 20–40 mg/mL; these biological activities were related to the small size of BioSeNPs and the phenolic content in their suspension. Under greenhouse conditions, the wheat supplemented with BioSeNPs (100 mg/mL) was significantly reduced the incidence of CRDs by 75% and considerably enhanced plant growth, grain quantity and quality by 5–40%. Also, photosynthetic pigments and gas exchange parameters were significantly increased as compared to chemical selenium nanoparticles (Che-SeNPs) and control. This study results could be recommended the use of BioSeNPs (100 mg/mL) in reducing CRDs incidence and severity in wheat plants, enhancing their tolerance with drought and heat stress, and increasing their growth and productivity as compared to control and Che-SeNPs.
Author Related Publications
Sarah Alsayed Elsayed Elsayed Foda, "The effects of the conjunctive use of compost tea and inorganic fertilization on radish (Raphanus sativus L) plant nutrient uptake and soil microorganisms", المجلة المصرية لعلوم الاراضى, 2016
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Sarah Alsayed Elsayed Elsayed Foda, "Reduce the risk of Cadmium in lettuce (Lactuca sativa L.) via silicon application", المجلة المصرية لعلوم الاراضي, 2016
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Sarah Alsayed Elsayed Elsayed Foda, "Bean yield and soil parameters as response to application of biogas residues and ammonium nitrate under different water requirements", المجلة المصرية لعلوم الاراضى, 2016
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Sarah Alsayed Elsayed Elsayed Foda, "Effects of Gypsum Particle Size on Reclaiming Saline-Sodic Soils in Egypt.", j soil communication and plant analysis, 2015
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Sarah Alsayed Elsayed Elsayed Foda, "Evaluation of some potassium fertilization and potassium biofertilization with Bacillus circulans on potatoes productivity under saline soil condition", مجلة كلية الزراعة, 2015
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Department Related Publications
Mohammed Mahmoud Nabil, "ОСОБЕННОСТИ ИЗМЕНЕНИЯ АЛЛЮВИАЛЬНЫХ ПОЧВ ВОСТОЧНОЙ ЧАСТИ ДЕЛЬТЫ НИЛА ПРИ АНТРОПОГЕННЫХ ВОЗДЕЙСТВИЯХ", Российского университета дружбы народов, 2013
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Mohammed Mahmoud Nabil, "Quantitative Assessment of Desertification in Bahariya Oasis Environment, Western Desert, Egypt.", .Zagazig uni, 2018
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Mohammed Mahmoud Nabil, "Effect of Mineral Fertilizers and Biofertilization on some Soil Properties and Faba Bean Productivity under Saline Soil Conditions.", Mansoura University, 2019
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Mohammed Mahmoud Nabil, "Estimation of surface runoff using NRCS curve number in some areas in northwest coast, Egypt.", E3S Web of Conferences,, 2020
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Mohammed Mahmoud Nabil, "Soil Water Erosion Vulnerability and Suitability under Different Irrigation Systems Using Parametric Approach and GIS, Ismailia, Egypt.", Sustainability ., 2021
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