Maize (Zea mays L.) production in sub-Saharan Africa (SSA) is constrained by many biophysical phenomena, particularly declining soil fertility, insect pests, and weed pressure. This study evaluated the integrative effects of neem (Azadirachta indica) leaf mulch (NLM) on soil fertility, fall armyworm (FAW) damage and weed suppression, for maize production in the tropical Rainforest Zone of Nigeria. A field experiment was conducted at the University of Benin Teaching and Research Farm, using four mulch rates (0, 1, 3 and 5 kg m-2) arranged in a randomised complete block design, with four replicates. Fresh green Neem leaves were applied as surface mulch at sowing, 2 and 4 weeks after sowing (WAS). Results showed that NLM significantly improved soil organic carbon (27.1 to 103.5%), total nitrogen (10.5 to 33.3%), and available phosphorus (36.5 to 79.2%), relative to the control; while potassium response was minimal and variable. FAW damage was significantly reduced from 6 WAS onwards, with severity declining by more than 60% under mulched treatments. Weed density and biomass decreased substantially by 32.7 - 76.1% and 28.7 - 74.9%, respectively, with increasing mulch rates. Grain yield also increased significantly from 1.17 t ha-1 in the control to 4.13 t ha-1 at 5 kg m-2; representing up to 252.8% improvement. Yield was negatively correlated with FAW damage and weed biomass; but positively associated with yield components. The study demonstrates that neem leaf mulch is an effective option for integrated management of soil fertility, FAW, and weeds in maize production. The 3 kg m-2 rate provided a near optimal balance between performance and resource use. Further studies should assess long-term impacts and scalability of the innovation across agro-ecological zones.
S. U. Ewansiha, F. Aiyinomwan, E. Okafor et al.· African Crop Science Journal· 0 citations
Maize (Zea mays L.) is a staple crop in Nigeria, yet yields remain low due to declining soil fertility and dependence on inorganic fertilizers that are costly and environmentally unsustainable. This study investigated the use of Siam weed (Chromolaena odorata L) residues as an organic amendment under rainforest agroecological conditions in Benin City, Nigeria. Field trials were conducted at the Teaching and Research Farm, University of Benin, Benin City, across two seasons with leaf residues rates of 0, 10, 30, and 50 kg ha–1.Experimental design was Randomised Complete Block with four replications. Soil properties, plant growth, phenological traits, and yield components were measured. Results showed that Chromolaena leaf residues significantly improved soil nutrient status, reduced acidity, enhanced nitrogen uptake, and improved maize growth and yield. Application rates of 30 and 50 kg m–2 increased plant height (155.9, 160.3 cm, respectively), shortened anthesis-silking intervals (2.4,1.5 days) and enhanced nitrogen uptake (3.37, 4.35 g plant–1). These application rates also boosted grain yield (3.0, 3.8 t ha–1) by up to 192 and 268% compared to control plots and enhanced stover yield (2.7, 3.3 t ha–1), offering added value for livestock feeding. Grain yield showed strong negative and positive correlations with phenological traits and growth/yield attributes, respectively. Findings highlight Chromolaena leaf residues as a cost-effective, eco-friendly organic fertilizers, capable of improving maize productivity and supporting sustainable crop-livestock systems in Nigeria
A. Osaigbovo, S. Ewansiha, A. Osaretin et al.· Agro-Science· 0 citations
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