Related Experiment Video
Updated: Sep 16, 2026

Production of Arbuscular Mycorrhizal (AM) Fungal Inoculum and Phenotypic Evaluation of Rice and AM Symbiosis Under Saline Conditions
Published on: March 14, 2025
Synergistic Enhancement of Rice Yield and Quality by Combined Slow-Release Fertilizer and Urea Under Straw
Guan Wang1, Bowen Shi1, Zixian Jiang1
1Faculty of Agronomy, Jilin Agricultural University/Jilin Green and High Quality Japonica Rice Engineering Research Center, Changchun 130118, China.
Background:
In Northeast China's cold rice (Mollisol) regions, low temperatures slow straw decomposition, causing early microbial nitrogen (N) immobilization that competes with crop demand. Delayed N release from slow-release fertilizer (SRF) exacerbates this deficit, hindering high yield and grain quality.
Methods:
A two-year (2024-2025) pool planting experiment was conducted on rice 'Jinongda 667' with a total N application rate of 150 kg ha-1. Six treatments were established: a 7:3 blend of slow-release fertilizer and urea, alongside controls of conventional urea and slow-release fertilizer alone, under both straw removal and incorporation conditions.
Results:
This blend increased grain yield by 6.64-7.75% over conventional urea, achieving the highest yield among all treatments, whereas SRF alone under straw incorporation reduced yield by 7.57% relative to N + S. The 30% urea (45 kg N ha-1) alleviated immobilization deficit (15-30 kg N ha-1) during the tillering-to-jointing stage, promoting root growth and panicle formation, while 70% SRF sustained N supply during mid-to-late stages, delaying senescence and enhancing photosynthesis. At peak grain filling, SSS and SBE activities increased by 94.01% and 10.53-11.08%, respectively. Under straw incorporation, it reduced chalky grain rate by 4.56-35.55% and chalkiness by 1.77-41.86%, increased protein content by 0.47-6.95% and gel consistency by 43.59-52.99%, decreased amylose by 2.2-5.77%, and optimized RVA profiles.
Conclusions:
The 7:3 blend synchronizes N supply with crop demand through temporal complementarity with straw nutrient dynamics, offering a one-time fertilization strategy for achieving high yield and quality under straw incorporation. However, given inter-annual variation (2024-2025) in tillering and N accumulation, its performance may be sensitive to climatic fluctuations, warranting further validation under diverse conditions.
Related Concept Videos
Plant Breeding and Biotechnology
Responses to Drought and Flooding
Key Elements for Plant Nutrition
Methods of Medium Optimization
Bioavailability Enhancement: Drug Stability Enhancement and GI Retention
