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优化华北平原冬小麦氮肥施用与灌溉措施以提高产量:一项Meta分析

Optimizing Nitrogen Fertilization and Irrigation Practices for Enhanced Winter Wheat Productivity in the North China Plain: A Meta-Analysis.

作者信息

Wang Donglin, Liu Shaobo, Guo Mengjing, Cheng Yuhan, Shi Longfei, Li Jipo, Yu Yongjie, Wu Siyu, Dong Qinge, Ge Jiankun, Gong Xuewen

机构信息

College of Water Conservancy, North China University of Water Resources and Electric Power, Zhengzhou 450000, China.

School of Water Resources and Environment Engineering, Nanyang Normal University, Nanyang 473061, China.

出版信息

Plants (Basel). 2025 May 31;14(11):1686. doi: 10.3390/plants14111686.

Abstract

This study aimed to systematically evaluate the effects of different nitrogen application rates and irrigation practices on water-saving and yield enhancement in winter wheat production in the North China Plain (NCP) using a meta-analysis. By quantifying the impacts on crop yield, nitrogen use efficiency (NUE), and water use efficiency (WUE), the research provides a scientific basis for optimizing management practices in winter wheat production in this region. A comprehensive literature search was conducted across multiple databases, resulting in the inclusion of 94 eligible studies from 2018 to 2023. A random-effects model was employed to calculate the combined effect sizes, followed by subgroup and sensitivity analyses to further investigate the influence of nitrogen application rates, irrigation methods, and study regions on winter wheat production efficiency. The findings reveal that increasing nitrogen application rates and adopting deficit irrigation practices significantly improved winter wheat yield (combined effect size: 4.53 t·ha), NUE (43.29%), and WUE (0.013 t·ha·mm). The subgroup analysis further elucidated the critical roles of nitrogen application ratios, irrigation methods, and study regions in determining winter wheat production efficiency, while the sensitivity analysis confirmed the robustness of these findings, as the pooled effect sizes decreased by merely 0.69% and increased by 0.61% after excluding small-sample or highly biased studies, respectively. The above meta-analysis did not incorporate long-term field trials; hence, two-year field experiments with designed irrigation and organic-inorganic fertilizer treatments were conducted, which provided further validation for the meta-analysis. Under short-term conditions (excluding CO effects), we observed that chemical fertilizer exhibited a measurable inhibitory effect on crop water uptake and optimal water-fertilizer management was achieved with a 7:3 inorganic-organic fertilizer ratio combined with 450 m·ha irrigation. This study demonstrates the effectiveness of optimizing nitrogen fertilization and irrigation management in enhancing winter wheat yield and resource utilization efficiency. The findings offer actionable insights for sustainable agricultural practices in the NCP and similar regions, contributing to improved crop productivity and resource conservation.

摘要

本研究旨在通过荟萃分析,系统评估不同施氮量和灌溉方式对华北平原冬小麦生产中节水和增产的影响。通过量化对作物产量、氮素利用效率(NUE)和水分利用效率(WUE)的影响,该研究为优化该地区冬小麦生产管理措施提供了科学依据。在多个数据库中进行了全面的文献检索,最终纳入了2018年至2023年的94项符合条件的研究。采用随机效应模型计算合并效应量,随后进行亚组分析和敏感性分析,以进一步研究施氮量、灌溉方式和研究区域对冬小麦生产效率的影响。研究结果表明,增加施氮量和采用亏缺灌溉方式可显著提高冬小麦产量(合并效应量:4.53吨·公顷)、NUE(43.29%)和WUE(0.013吨·公顷·毫米)。亚组分析进一步阐明了施氮比例、灌溉方式和研究区域在决定冬小麦生产效率方面的关键作用,而敏感性分析证实了这些结果的稳健性,因为在排除小样本或高偏差研究后,合并效应量分别仅下降了0.69%和增加了0.61%。上述荟萃分析未纳入长期田间试验;因此,进行了为期两年的田间试验,设置了灌溉和有机无机肥料处理,为荟萃分析提供了进一步验证。在短期条件下(不包括二氧化碳效应),我们观察到化肥对作物水分吸收有明显的抑制作用,无机-有机肥比例为7:3并结合450立方米·公顷灌溉量时可实现最佳水肥管理。本研究证明了优化氮肥和灌溉管理在提高冬小麦产量和资源利用效率方面的有效性。这些发现为华北平原及类似地区的可持续农业实践提供了可操作的见解,有助于提高作物生产力和资源保护。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb60/12157333/23f08e56ad90/plants-14-01686-g001.jpg

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