INFLUENCE OF NPK NANO FERTILIZER ON MICROBIAL COMMUNITIES AND CHEMICAL PROPERTIES IN PADDY RICE (ORYZA SATIVA L.)

Authors

  • A. A. OLUBODE
  • N. O. ADEYEMI
  • E. O. ONI
  • O. T. H. HAMZAT-AKINWANDE
  • C. T. SENJOBI
  • E. A. ODUDU

Keywords:

NPK Nano fertilizer, arbuscular mycorrhizal fungi, soil enzyme activity, banana peel extract, green synthesis, paddy rice

Abstract

Rice (Oryza sativa L.) production in sub-Saharan Africa faces challenges from declining soil fertility to inefficient nutrient management. This screen house study assessed the effects of banana peel-synthesized NPK Nano fertilizer at four rates (Control, 50%, 75%, and 100%) on soil microbial communities, enzyme activities, arbuscular mycorrhizal fungi (AMF) diversity and root colonization, nutrient availability, and root morphology in two lowland rice varieties (NERICA L-19 and WITA-4) using a 4 x 2 factorial in a Completely Randomized Design with three replicates. NPK Nano fertilizer significantly increased bacterial populations up to 9.9 x 10⁵ CFU g⁻¹, fungal populations up to 19.0 x 10³ CFU g⁻¹, and soil enzyme activities, including amylase (315.0–601.4 mg kg⁻¹), urease (21.80–24.90 mg kg⁻¹), and alkaline phosphatase (122.03–138.6 mg kg⁻¹). AMF root colonization, including arbuscules, hyphae, and vesicles, increased significantly in a dose-dependent manner, with 100% Nano priming reaching 74.33%, 49.50%, and 30.00%, respectively. Five AMF genera were identified: Acaulospora, Funneliformis, Gigaspora, Glomus, and Rhizophagus, with spore density inversely related to Nano fertilizer rate. Soil nutrient availability showed no significant treatment effects, likely reflecting efficient plant-mycorrhizal nutrient uptake. Root fresh weight was significantly highest under 100% Nano priming (42.5 g), while NERICA L-19 exhibited greater root elongation. PCA and correlation analyses confirmed strong positive relationships among Nano fertilizer rate, enzyme activities and AMF colonization. These findings establish NPK Nano fertilizer as a promising tool for enhancing the rhizosphere and promoting sustainable lowland rice production in West Africa.

Author Biographies

  • A. A. OLUBODE

    Department of Soil Science and Land Management, Federal University of Agriculture, Abeokuta, Ogun State, Nigeria

     

  • N. O. ADEYEMI

    Department of Plant Production and Crop Physiology, Federal University of Agriculture, Abeokuta, Ogun State, Nigeria

     

  • E. O. ONI

    Department of Plant Production and Crop Physiology, Federal University of Agriculture, Abeokuta, Ogun State, Nigeria

     

  • O. T. H. HAMZAT-AKINWANDE

    Crop Research Programme, Institute of Food Security, Environmental Resources and Agricultural Research (IFSERAR), Federal University of Agriculture, Abeokuta, Ogun State, Nigeria

     

  • C. T. SENJOBI

    Plant Science Department, Olabisi Onabanjo University, Ago-Iwoye, Ogun State, Nigeria

     

  • E. A. ODUDU

    Department of Soil Science and Land Management, Federal University of Agriculture, Abeokuta, Ogun State, Nigeria

     

Downloads

Published

2026-06-30

Issue

Section

Original Manuscript

Similar Articles

81-90 of 108

You may also start an advanced similarity search for this article.

Most read articles by the same author(s)