Effect of Inorganic and Organic Nitrogen Sources and Biofertilizer on Murcott Mandarin Fruit Quality

Faculty Agriculture Year: 2022
Type of Publication: ZU Hosted Pages:
Authors:
Journal: life MDPI Volume:
Keywords : Effect , Inorganic , Organic Nitrogen Sources and Biofertilizer    
Abstract:
Mandarin ‘Murcott’ (Citrus reticulata Blanco) trees aged five years that were grafted onto lemon ‘Volkamer’ (Citrus volkameriana) rootstock and grown in sandy soil under a drip irrigation system were used in this study during the growing seasons of 2018 and 2019. Ten different fertilization treatments combining inorganic, organic, and biofertilization in a completely randomized block were performed. The results revealed that fertilizing ‘Murcott’ mandarin trees with 75% of the recommended dose (RD) of nitrogen as inorganic nitrogen (33.5% N) in the form of NH4NO3 + 25% of RD as organic nitrogen in the form of chicken manure (3% N) per tree per year without or with a biofertilizer (Effective Microorganisms, EM1) at 150 mL/tree increased the weight, size, pulp, and peels of mandarin fruit, as well as the fruit juice volume, juice volume/fruit, and vitamin C, but reduced the total acidity in both seasons. However, fertilizing ‘Murcott’ mandarin trees with 100% of RD as inorganic nitrogen increased the pulp/fruit ratio, and fertilizing with 25% of RD as inorganic nitrogen + 75% of RD as organic nitrogen + biofertilizer EM1 increased the peel/fruit ratio, peel thickness, and fruit firmness. Fertilizing ‘Murcott’ mandarin trees with 100% organic nitrogen + biofertilizer EM1 increased total soluble solids (TSS) and total sugar contents while producing the lowest nitrate (NO3) percentage in ‘Murcott’ mandarin fruit compared with trees fertilized with inorganic nitrogen only. The fruit produced by ‘Murcott’ mandarin trees fertilized with 100% of RD as organic nitrogen with or without biofertilizer EM1 contained higher TSS, total carbohydrates, and sugars and lower nitrate percentages than those fertilized with inorganic nitrogen and biofertilizer EM1. This study contributes to reducing the use of inorganic fertilizers by adding a percentage of an organic fertilizer to obtain a healthy product that contains a lower percentage of NO3, which affects the health of the consumer, and is of high quality and suitable for export.
   
     
 
       

Author Related Publications

  • Ibrahim Eid Elsayed Mohamed Eleissawy, "Impact of rice straw mulching on water consumption and productivity of orange trees [Citrus sinensis (L.) Osbeck]", Elsevier, 2024 More
  • Ibrahim Eid Elsayed Mohamed Eleissawy, "Influence of Wax and Silver Nanoparticles on Preservation Quality of Murcott Mandarin Fruit during Cold Storage and after Shelf-Life", MDPI, 2023 More
  • Ibrahim Eid Elsayed Mohamed Eleissawy, "A novel rice grain size gene OsSNB was identified by genome-wide association study in natural population", the Public Library of Science, 2019 More
  • Ibrahim Eid Elsayed Mohamed Eleissawy, "The neuroprotective effect of quercetin nanoparticles in the therapy of neuronal damage stimulated by acrolein", Elsevier, 2023 More
  • Ibrahim Eid Elsayed Mohamed Eleissawy, "Efficacy of chitosan nanoparticles and wax coatings on maintaining post-harvest quality of “Murcott” mandarins", Elsevier, 2023 More

Department Related Publications

  • Hytham Ali Badr Elmorsy, "Live Cell Integrated Surface Plasmon Resonance Biosensing Approach to Mimic the Regulation of Angiogenic Switch upon Anti-Cancer Drug Exposure", American Chemical Society, 2014 More
  • Hytham Ali Badr Elmorsy, "Lectin approaches for glycoproteomics in FDAapproved cancer biomarkers", Informa UK, 2014 More
  • Ibrahim Eid Elsayed Mohamed Eleissawy, "Impact of rice straw mulching on water consumption and productivity of orange trees [Citrus sinensis (L.) Osbeck]", Elsevier, 2024 More
  • Taha Fathy Taha Ibrahiem, "Expression Profile of Redox Active Secondary Metabolites Related Genes Obtained by Transcriptome Sequencing Under Salt and Drought Stress in Sweet Potato", دولي, 2018 More
  • Taha Fathy Taha Ibrahiem, "In Vitro Bio-Medical Studies on Psidium Guajava Leaves", دولي, 2019 More
Tweet