Authors
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Mustapha Abdulmalik
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Zainab Bashir Muhammad
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Saliha Salisu
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Usman Bawa
Department of Biological Sciences, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria.
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Aisha Yahaya
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Najeeb Umar
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Ummunnour Suleiman Kabir
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Sadiq Abdullahi Abubakar
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Salamat Asipita Anakobe
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Amina Musa
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Fatima Magaji Ibrahim
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Amina Umar Muhammad
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Emmanuel James Akpan
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Amina Sanusi Bawa
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Salisu Bello Sadau
Department of Science and Technology Education, Faculty of Education, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
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Sani Ibrahim
Department of Plant Science and Biotechnology, Faculty of Life Sciences, College of Physical and Pharmaceutical Sciences, Bayero University, P.M.B. 3011, Kano 700006, Nigeria
Keywords:
Iron nanoparticle (FeNPs), Zea mays, superoxide dismutase, seed germination, chlorophyll content, Nano priming
Abstract
Iron nanoparticles (FeNPs) have emerged as promising nanomaterials for enhancing plant growth and productivity. However, their effects on the growth and biochemical responses of maize (Zea mays L.) seedlings remain insufficiently understood. This study investigated the effects of FeNPs on the growth and biochemical responses of three maize varieties. Iron nanoparticles were synthesized from ferric chloride (FeCl₃), ferrous sulfate heptahydrate (FeSO₄·7H₂O), and ammonium hydroxide (NH₄OH) at the Department of Pure and Industrial Chemistry, Bayero University, Kano. Three maize varieties (ZAMMAS27, ZAMMAS51, and a local variety) were evaluated under four treatments comprising a control (0 mg/L) and FeNP concentrations of 50, 75, and 100 mg/L using a randomized complete block design (RCBD) with three replicates. Growth and biochemical parameters were assessed 20 days after sowing. Superoxide dismutase (SOD) activity was determined using a commercial assay kit at Ahmadu Bello University, Zaria. Data were analyzed using analysis of variance (ANOVA), and treatment means were separated using the least significant difference (LSD) test at P < 0.05. The results showed that germination percentage declined with increasing FeNP concentration, whereas shoot fresh weight and SOD activity generally increased at higher concentrations. Chlorophyll content decreased with increasing FeNP concentration, indicating a concentration-dependent response. Among the tested genotypes, ZAMMAS51 exhibited the highest SOD activity at 100 mg/L FeNPs. These findings demonstrate that FeNPs exert concentration- and genotype-dependent effects on maize seedling growth and antioxidant responses, highlighting their potential application in sustainable crop production. Further studies are recommended to determine the optimum FeNP concentration for maximizing plant performance while minimizing potential phytotoxic effects.