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限水灌溉下不同灌溉模式对夏玉米产量和水分利用效率的影响

郑孟静 张丽华 翟立超 董志强 贾秀领

中国生态农业学报(中英文)2022,Vol.30Issue(2):203-215,13.
中国生态农业学报(中英文)2022,Vol.30Issue(2):203-215,13.DOI:10.12357/cjea.20210450

限水灌溉下不同灌溉模式对夏玉米产量和水分利用效率的影响

Comparison of irrigation strategies for summer maize under deficit irrigation:Grain yield and water use efficiency

郑孟静 1张丽华 1翟立超 1董志强 1贾秀领1

作者信息

  • 1. 河北省农林科学院粮油作物研究所/河北省作物栽培生理与绿色生产重点实验室/农业部华北地区作物栽培科学观测实验站 石家庄 050035
  • 折叠

摘要

Abstract

The shortage of water resources in the North China Plain (NCP) poses a challenge to traditional agricultural irrigation methods. Adjusting and optimizing the irrigation mode is an important strategy for saving water and improving water use efficiency (WUE) and crop yield under water-limited irrigation conditions. Given this background, different irrigation modes were set in an automatic rainproof shed (to eliminate the effects of natural rainfall) in the two growing seasons of 2018 and 2019 to analyze the grain yield and WUE of summer maize. In this experiment, a randomized block design was adopted, and two irrigation methods were ap-plied: border irrigation (BI) and micro-sprinkler irrigation (SI). Based on the total irrigation amount and frequency, sample plots were divided into two groups for comparison. Plots in the first group (SI-225 and BI-225) had the same total irrigation amount (50% of evapotranspiration, ET) but different irrigation frequencies. SI-225 was irrigated six times, namely at the emergent seedling stage (VE), sixth leaf stage (V6), tenth leaf stage (V10), thirteenth leaf stage (V13), tasseling stage (VT), and milk stage (R3). BI-225 was irrigated three times at VE, V10, and VT. Plots in the second group (SI-225, SI-280, SI-352, and BI-450) had the same irrigation fre-quency but different total irrigation amounts (50%, 60%, 80%, and 100% of ET). Among them, SI-225 and BI-450 received a fixed amount of water per irrigation event, whereas SI-280 and SI-352 underwent supplementary irrigation according to their soil moisture content. The results showed that, compared with those of BI-225, the grain yield of SI-225 increased by 17.7%-20.2% and its WUE increased by 9.2%-12.7%. Further analysis of physiological characteristics revealed that SI-225 showed an improved upper soil wa-ter status (0-40 cm), increased photosynthetic rate (Pn), leaf area index (LAI), and dry matter accumulation, and consequently higher yield and WUE due to modest but highly frequent irrigation. Under the same irrigation frequency, the grain yields of SI-225 and SI-280 decreased by 21.2% and 12.0%, respectively, compared with that of BI-450. However, total water consumption during the growth period was reduced due to the decrease in LAI and transpiration rate (Tr) of SI-225 and SI-280, which resulted in an improved WUE. The grain yield of SI-352 did not differ significantly from that of BI-450, but its ET decreased by 9.8% due to the optimization of LAI and Tr, its irrigation amount decreased by 21.8%, and its WUE increased by 5.1%. Therefore, under water-limited irrigation condi-tions (50% of ET), the yield and WUE of summer maize could be increased by increasing the irrigation frequency, with modest but highly frequent irrigation promoting the best results. Moreover, under moderate water limitation (80% of ET), the application of mi-cro-spraying supplementary irrigation based on soil moisture content allowed to achieve a stable yield and a high WUE. These results provide a theoretical reference for improving the efficiency of agricultural water use in water-deficient areas of the NCP.

关键词

限水灌溉/产量/水分利用效率/微喷灌/夏玉米

Key words

Deficit irrigation/Grain yield/Water use efficiency/Micro-sprinkler irrigation/Summer maize

分类

农业科技

引用本文复制引用

郑孟静,张丽华,翟立超,董志强,贾秀领..限水灌溉下不同灌溉模式对夏玉米产量和水分利用效率的影响[J].中国生态农业学报(中英文),2022,30(2):203-215,13.

基金项目

This study was supported by the Doctoral Foundation of Hebei Academy of Agricultural and Forestry Science(C19R0302),the Youth Foundation of Institute of Cereal and Oil Crops,Hebei Academy of Agricultural and Forestry Science(2019LYS02),the Key Research and Development Program Project of Hebei Province(20326401D,20326411D)and the Modern Agricultural Science and Technology Innovation Project of Hebei Academy of Agricultural and Forestry Science(2019-4-5). (C19R0302)

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