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长期深松和增施有机肥对降水氢、氧同位素分布和玉米水分利用的影响

杨永辉 罗宁 邬佳宾 张运红 张廷昊 高翠民 韩伟锋 潘晓莹 何方 Devotha G.NYAMBO

河南农业科学2025,Vol.54Issue(12):1-12,12.
河南农业科学2025,Vol.54Issue(12):1-12,12.DOI:10.15933/j.cnki.1004-3268.2025.12.001

长期深松和增施有机肥对降水氢、氧同位素分布和玉米水分利用的影响

Effects of Long-Term Application of Subsoiling and Organic Fertilizer on Distribution of Hydrogen and Oxygen Isotopes in Precipitation and Water Utilization of Maize

杨永辉 1罗宁 2邬佳宾 3张运红 1张廷昊 4高翠民 1韩伟锋 1潘晓莹 1何方 1Devotha G.NYAMBO5

作者信息

  • 1. 河南省农业科学院 植物营养与资源环境研究所,河南 郑州 450002||农业农村部作物高效用水原阳科学观测实验站,河南 原阳 453514||河南省黄河流域节水农业野外科学观测研究站,河南 原阳 453514
  • 2. 海南大学 网络空间安全学院,海南 海口 570228
  • 3. 水利部牧区水利科学研究所,内蒙古 呼和浩特 010020
  • 4. 河南农业大学 文法学院,河南 郑州 450046
  • 5. 纳尔逊·曼德拉非洲科学技术学院,坦桑尼亚 阿鲁沙 23311
  • 折叠

摘要

Abstract

In order to elucidate the effects of long-term subsoiling tillage and application of organic fertilizers on distribution of rainfall in soil and utilization,based on hydrogen and oxygen isotopes tracing method,the effects of long-term subsoiling tillage and application of organic fertilizers on the distribution of stable hydrogen and oxygen isotopes in soil and water use of maize were studied with conventional tillage treatment as control.The results showed that long-term subsoiling tillage and application of organic fertilizers improved soil structure and the distribution and utilization of precipitation in the soil.The soil moisture generally gradually decreased with the increase of soil depth at jointing and grain filling stages of maize.At harvest stage,the soil moisture obviously increased,and increased with the increase of soil depth.At jointing and grain filling stages,subsoiling tillage notably increased the 0-80 cm soil moisture.At harvest stage,both the subsoiling tillage and application of organic fertilizers treatments increased the 0-100 cm soil moisture.At jointing stage,the contribution rate of water from the 0-40 cm soil was obviously higher than those in other layers,reaching over 90%,and the contribution rate of water from the 20-40 cm soil was the highest.At grain filling stage,conventional tillage,subsoiling tillage and application of organic fertilizers treatments mainly utilized the water in 20-60 cm soil,and the water contribution rate reached 46.3%,53.4%and 92.7%,respectively.As the growth stage progressed,the soil water storage capacity of all treatments generally gradually increased.Compared with conventional tillage treatment,subsoiling tillage and application of organic fertilizers were more beneficial for increasing soil water storage at jointing and harvest stages,and decreasing water consumption during sowing—jointing and grain filling—harvest period;meanwhile,subsoiling tillage and application of organic fertilizers were more beneficial for increasing the net photosynthetic rate and stomatal conductance at grain filling stage of maize,as well as improving leaf water use efficiency at jointing and grain filling stages.Ultimately,subsoiling tillage and application of organic fertilizers significantly increased maize yield(10.6%,9.4%)and water use efficiency(13.6%,12.2%),although the difference between the two treatments was not significant.Correlation analysis showed that the contribution rate of water in 0-20 cm soil was significantly positively correlated with maize yield and water use efficiency at jointing stage,and significantly negatively correlated with maize yield and water use efficiency at grain filling stage.In conclusion,long-term subsoiling tillage and application of organic fertilizers can effectively regulate the rational distribution of precipitation in soil,improve the photosynthetic characteristics of maize,promote the efficient utilization of rainfall,and increase the yield and water use efficiency of maize.

关键词

玉米/有机肥/深松/氢、氧同位素/光合特征/水分利用

Key words

Maize/Organic fertilizer/Subsoiling tillage/Hydrogen and oxygen isotopes/Photosynthetic characteristics/Water use

分类

农业科技

引用本文复制引用

杨永辉,罗宁,邬佳宾,张运红,张廷昊,高翠民,韩伟锋,潘晓莹,何方,Devotha G.NYAMBO..长期深松和增施有机肥对降水氢、氧同位素分布和玉米水分利用的影响[J].河南农业科学,2025,54(12):1-12,12.

基金项目

河南省农业科学院省农业生产重大应急专项(2024ZDYJ002) (2024ZDYJ002)

河南省农业科学院科技创新团队项目(2024TD27) (2024TD27)

河南省中央引导地方资金项目(Z20231811180) (Z20231811180)

河南农业科学

OA北大核心

1004-3268

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