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不同比例腐殖酸替代氮肥对弱筋小麦产量、品质及氮肥利用的影响

Effects of Different Humic Acid Replacement Ratios of Nitrogen Fertilizer on Yield, Quality and Nitrogen Utilization of Weak-gluten Wheat

  • 摘要: 为明确腐殖酸尿素不同替代比例对弱筋小麦生长发育、氮肥利用、产量及品质的调控效应,以弱筋小麦品种扬麦13为材料,于2023—2024和2024—2025年两个试验年度在豫南弱筋小麦主产区设置了5种腐殖酸尿素替代普通尿素比例(0%、40%、60%、80%、100%)及无氮对照的田间试验,系统分析了小麦功能叶SPAD值、茎蘖动态、氮肥利用效率、产量构成及加工品质指标。结果表明,腐殖酸尿素替代处理可显著延缓花后旗叶的叶绿素降解,提升越冬期茎蘖数,优化群体结构;与全施普通尿素处理相比,各替代处理均显著提高了氮素吸收量、氮肥农学利用率与表观利用率,其中,以80%替代处理的氮肥利用效率最优。在两个试验年度中,腐殖酸尿素替代处理产量均高于普通尿素处理,以80%替代处理的产量最高,较普通尿素处理增幅达7.66%~14.84%,主要通过提高有效穗数与千粒重实现增产。同时,替代处理显著降低了籽粒蛋白质含量与硬度指数,使品质更符合弱筋小麦标准,且对湿面筋、沉淀值与出粉率无负面影响。综合来看,80%腐殖酸尿素替代普通尿素可同步实现弱筋小麦高产优质与氮肥高效利用,适宜在豫南及相似生态区推广应用。

     

    Abstract: To clarify the regulatory effects of different replacement ratios of humic acid urea on growth and development, nitrogen utilization, yield and quality of weak-gluten wheat, a field experiment was conducted with weak-gluten wheat variety Yangmai 13 in the main weak-gluten wheat production area of southern Henan from 2023 to 2025. Five replacement ratios of humic acid urea for conventional urea (0%, 40%, 60%, 80% and 100%) were set up. The SPAD value of functional leaves, stem and tiller dynamics, nitrogen use efficiency, yield components and processing quality were systematically analyzed. The results showed that humic acid urea substitution significantly delayed chlorophyll degradation of flag leaves after anthesis, increased tiller number at over-wintering stage and optimized population structure. Compared with conventional urea treatment, all substitution treatments significantly increased nitrogen uptake, agronomic nitrogen use efficiency and apparent nitrogen recovery efficiency, among which the 80% substitution treatment performed the best. In two growing seasons, the yields of all substitution treatments were higher than the control. The 80% substitution treatment obtained the highest yield, with an increase of 7.66%~14.84% compared with the control, mainly by increasing spike number and 1000-grain weight. Meanwhile, substitution treatments significantly reduced grain protein content and hardness index, making quality more in line with the standard of weak-gluten wheat, without negative effects on wet gluten content, sedimentation value and flour yield. In conclusion, 80% humic acid urea replacing conventional urea can synchronously achieve high yield, good quality and high nitrogen use efficiency of weak-gluten wheat, which is suitable for popularization in southern Henan and similar ecological regions.