数字农科院2.0

Enhancing maize high-density population uniformity and yield through timely drip irrigation after sowing

文献类型: 外文期刊

作者: Zhenhua Yan;; Yi Liu;; Shang Gao;; Hongye Yang;;Dayun Feng;;Kexin Gao;;Yuan Lu;; Bo Ming;;Keru Wang;;Zhiguo Zhou;;Ruizhi Xie;;Shaokun Li

关键词: summer maize; irrigation methods; kernel weight; harvest ears; uniformity; yield

期刊名称: Journal of Integrative Agriculture

ISSN: 2095-3119

年卷期: 2025 年

页码:

收录情况: SCIE(2025版) ; ; CSCD(2025-2026年度) ; ; 科技核心(2024版) ; ; 农林核心(2024版)

摘要: Uneven crop stands arise from natural variations in emergence time, which are influenced by different irrigation measures applied post-sowing. In the pursuit of high-yielding maize populations, the emergence rate and uniformity of maize stands are critical factors. This study investigates the effects of different irrigation methods and drip irrigation at various days after sowing on the emergence uniformity and yield of summer maize. The experiment consisted of six treatments: drip irrigation on the 0th, 3rd, 6th, 9th, and 12th days after sowing (DAS0, DAS3, DAS6, DAS9, and DAS12), and sprinkling irrigation on the 0th day after sowing (SI0). Agronomic traits, ear characteristics, harvest yield, and indices of population uniformity were evaluated at critical growth stages. Results indicated that timely drip irrigation (DAS0-3) significantly increased the emergence rate and number of harvestable ears by 9.57% (8621.61 plants ha-1) and 10.54% (8017.05 ears ha-1) compared to the SI treatment. Treatment with DAS0-3 resulted in a significant increase of 13.50% in ear length and 24.85% in kernel weight per ear compared to the SI treatment. Maize populations subjected to delayed drip irrigation (DAS6-12) demonstrated a progressive decline in quality throughout the growth period. At the silk stage, the uniformity of plant height and ear height decreased by 47.19 and 44.85%, respectively, compared to the DAS0-3 treatment. Furthermore, at harvest, the uniformity of dry matter accumulation and leaf area index (LAI) was reduced by 28.24 and 41.83%, respectively, relative to the DAS0-3 treatment. Correlation analysis reveals that the uniformity of kernel weight per ear is most significantly associated with yield, as indicated by a correlation coefficient of 0.90**. The yield in the DAS0-3 treatment was significantly higher than that in the SI treatment by23.71%. The yields of the DAS6-12 treatments were notably lower than those of the DAS0-3 treatment, ranging from 13.18 to 23.97% lower, and were comparable to the yields observed in the SI treatment. The suboptimal implementation of drip irrigation technology has prevented it from realizing its potential for increasing crop yields. Each day’s delay in initiating drip irrigation after the third day post-sowing reduces yield by an average of 0.32 Mg ha-1. Timely drip irrigation following maize seeding significantly enhances emergence rate and population uniformity, increases the number of harvestable ears and kernel weight per ear, ultimately leading to higher final yields. Drip irrigation for seedling emergence within three days after sowing can better bring out the yield-increasing potential of drip irrigation.

分类号:

  • 相关文献

[1]Effect of latitude on maize kernel weight and grain yield across China. . 2020

[2]Characterization Of Low-N Responses In M.aize (Zea Mays L.) C ultivars With Contrasting Nitrogen Use Efficiency In The North China Plain. Li, XL, Guo, LG, Zhou, BY, Tang, XM, Chen, CC, Zhang, L, Zhang, SY, Li, CF, Xiao, K, Dong, WX, Yin, BZ, Zhang, YC. 2019

[3]Synthetic Hexaploid Wheat: Yesterday, Today, A.nd Tomorrow. Li, AL, Liu, DC, Yang, WY, Kishii, M, Mao, L. 2018

[4]Is Partial Root-Zone Drying More A.ppropriate Than Drip Irrigation T o Save Water In China ? A Preliminary Comparative Analysis For Potato Cultivation. Qin, JH, Ramirez, DA, Xie, KY, Li, WJ, Yactayo, W, Jin, LP, Quiroz, R. 2018

[5]Heat Stress-Reduced Kernel Weight In R.ice At Anthesis Is A ssociated With Impaired Source-Sink Relationship And Sugars Allocation. Li, Guang-Yan,Chen, Ting-Ting,Li, Hu-Bo,Jin, Qian-Yu,Fu, Guan-Fu,Feng, Bao-Hua,Tao, Long-Xing,Fu, Wei-Meng,Zhang, Cai-Xia. 2018

[6]Tada1, A Conserved Negative Regulator Of Kernel Size, Has An Additive Effect With Tagw2 In Common Wheat (Triticum Aestivum L.). An, Diaoguo,Hao, Chenyang,Liu, Hong,Li, Huifang,Wang, Yamei,Zhang, Xueyong,Zhang, Xueyong,Wang, Ke,Li, Tian,Liu, Hong,Qin, Lin. 2020

[7]Analysis On Energy Consumption Of D.rying Process For Dried C hinese Noodles. Wang, ZH, Zhang, YQ, Zhang, B, Yang, FG, Yu, XL, Zhao, B, Wei, YM. 2017

[8]Maize Kernel Weight Responses To S.owing Date-Associated Variation In W eather Conditions. Zhou, BY, Yue, Y, Sun, XF, Ding, ZS, Ma, W, Zhao, M. 2017

[9]Spatial Distribution Of Air Temperature And Relative Humidity In The Greenhouse As Affected By External Shading In Arid Climates. Ahmed, HA, Tong, YX, Yang, QC, Al-Faraj, AA, Abdel-Ghany, AM. 2019

[10]Dry matter accumulation after silking and kernel weight are the key factors for increasing maize yield and water use efficiency. Wang Feng,Xie Ruizhi,Ming Bo,Wang Keru,Hou Peng,Chen Jianglu,Liu Guangzhou,Zhang Guoqiang,Xue Jun,Li Shaokun. 2021

[11]Tada1, A Conserved Negative Regulator Of Kernel Size, Has An Additive Effect With Tagw2 In Common Wheat (Triticum Aestivum L.). Liu, H, Li, HF, Hao, CY, Wang, K, Wang, YM, Qin, L, An, DG, Li, T, Zhang, XY. 2019

[12]Effect Of Age At Photostimulation O.n Reproductive Performance Of B eijing-You Chicken Breeders. Shi, L, Sun, YY, Xu, H, Liu, YF, Li, YL, Huang, ZY, Ni, AX, Chen, C, Wang, PL, Ye, JH, Ma, H, Li, DL, Chen, JL. 2019

[13]Effects Of Spray Parameters Of Drone On The Droplet Deposition In Sugarcane Canopy. Zhang, XQ, Song, XP, Liang, YJ, Qin, ZQ, Zhang, BQ, Wei, JJ, Li, YR, Wu, JM. 2020

[14] Improving Air Distribution Within Lettuce Plant Canopy by Employing Double-Channel Ventilation Cultivation System: Simulation and Experiment Study. Yihan Zhang, Can Chen, Hui Fang and Yuxin Tong. 2025

[15]Exploring New Spectral Bands And V.egetation Indices For Estimating N itrogen Nutrition Index Of Summer Maize. Duan, Aiwang,Liu, Zugui,Gong, Zhihong,Ata-Ul-Karim, Syed Tahir,Qin, Anzhen,Chen, Zhifang,Zhao, Ben,Zhao, Ben,Zhang, Jiyang,Liu, Zhandong,Ning, Dongfeng,Xiao, Junfu. 2018

[16]Determination Of Critical Nitrogen Concentration A.nd Dilution Curve Based O n Leaf Area Index For Summer Maize. Ning, Dongfeng,Wang, Xiaolong,Ata-Ul-Karim, Syed Tahir,Lian, Yanhao,Zhang, Weiqiang,Liu, Zugui,Xiao, Junfu,Qin, Anzhen,Liu, Zhandong,Duan, Aiwang,Zhao, Ben,Zhao, Ben. 2018

[17]Impact of climate warming on drought characteristics of summer maize in North China Plain for 1961-2010. Hu, Yanan,Li, Zhengguo,Liu, Yingjie. 2014

[18]Effects of climate change and cultivar on summer maize phenology. Chen, F.,Wang, Zh.,Chen, J.,Li, Y.,Wang, Zh.,Li, C.,Zhang, L.. 2016

[19]Assessing crop yield and crop water productivity and optimizing irrigation scheduling of winter wheat and summer maize in the Haihe plain using SWAT model. Sun, Chen,Sun, Chen,Ren, Li.

[20]Water consumption in summer maize and winter wheat cropping system based on SEBAL model in Huang-Huai-Hai Plain, China. Yang Jian-ying,Huo Zhi-guo,Mei Xu-rong,Yan Chang-rong,Liu Qin,Ju Hui,Zhao Feng-hua. 2015

作者其他论文 更多>>