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Research Article | Open Access

An application strategy of combined controlled-release fertilizers can balance the yield and quality of soft wheat while meeting its nutrient requirements

Yingpeng Wang1,2,*Yifan Hua1,2,*Lanxin Mei1Yixuan Meng1Yongtao Guo2Jian Cai1Mei Huang1Yingxin Zhong1Xiao Wang1Dong Jiang1Qin Zhou1( )
National Technique Innovation Center for Regional Wheat Production/Key Laboratory of Crop Ecophysiology, Ministry of Agriculture and Rural Affairs/College of Agriculture, Nanjing Agricultural University, Nanjing 210095, China
The Kaifeng Seed Industry Development Center, Kaifeng 475000, China

* These authors contributed equally to this study.

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Highlights

• A combination of different types of slow-controlled release nitrogen fertilizer (BRNF) is recommended for soft wheat production. The N release from BRNF corresponded well to the N demand of soft wheat.

• By providing a continuous and stable supply of nutrients, BRNF can increase the accumulation of photosynthetic products and the contribution rate of post-anthesis dry matter accumulation to grain.

• By reducing the excessive supply of N at the later stages of wheat growth, BRNF can reduce the protein content in wheat grains, thereby maintaining the unique quality of soft wheat.

Abstract

The application of slow-controlled release fertilizer is a simple and labor-saving cultivation technology that can improve the yield and nitrogen use efficiency (NUE) of wheat, although research on the impact of a single application of controlled-release nitrogen (N) fertilizers with different release periods on wheat grain quality is still limited. In this study, urease inhibitor urea (AHA), sulfur-coated urea (SCU), a combination of SCU and AHA fertilizer (BSAF) and blended slow-controlled release fertilizer (BRNF) were used to investigate the effect of slow-controlled release fertilizers on the nutrient release, grain yield, NUE, and protein content of soft wheat. The goal was to determine the effect of a one-time application of controlled release fertilizer on wheat grain yield and protein content and its underlying mechanisms. The results showed that the different slow-controlled release fertilizer treatments had significantly different N release rates. AHA presented a fast release mode, while SCU and BSAF presented slow-release modes, and BRNF presented a controlled release mode. Compared with CK, BRNF increased grain yield and reduced the protein content of soft wheat, with an average increase of 6.73% in grain yield and a reduction of 1.85% in protein content. The higher N absorption of BRNF led to greater NUE, N agronomic efficiency (NAE) and N apparent recovery fraction (NRF). However, AHA, SCU and BSAF all showed the opposite trend. Compared with CK, BRNF improved post-anthesis dry matter accumulation (PDMA) and the contribution rate of dry matter accumulated post-anthesis to the grain (CDA), while reducing post-anthesis N accumulation (PNA) and the contribution rate of post-anthesis N accumulation to grain (CNA). The main reasons for the improvement in yield and reduction in protein content were related to the increases in PDMA and CDA, and the reductions in PNA and CNA, respectively. Therefore, BRNF is an effective agronomic strategy for promoting the coordination of grain yield and quality in soft wheat.

References

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Journal of Integrative Agriculture (JIA)
Pages 2783-2795

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Cite this article:
Wang Y, Hua Y, Mei L, et al. An application strategy of combined controlled-release fertilizers can balance the yield and quality of soft wheat while meeting its nutrient requirements. Journal of Integrative Agriculture (JIA), 2026, 25(7): 2783-2795. https://doi.org/10.1016/j.jia.2025.02.038

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Received: 09 October 2024
Revised: 26 January 2025
Accepted: 07 February 2025
Published: 20 February 2025
© 2026 CAAS.

This is an open access article under the CC BY-NC-ND license (http://creativecommons.org/licenses/by-nc-nd/4.0/). Peer review under responsibility of Editorial Board of Journal of Integrative Agriculture.