Production of maize using high density sowing and subsurface drip irrigation

被引:0
|
作者
Guevara-Escobar, A
Barcenas-Huante, G
Salazar-Martínez, FR
González-Sosa, E
Suzán-Azpiri, H
机构
[1] Univ Autonoma Queretaro, Ctr Univ, Queretaro 76010, Santiago De Que, Mexico
[2] Monsanto Mexico, Guadalajara 44550, Jalisco, Mexico
关键词
Lolium multiflorum; Zea mays L; leaf area index; drip irrigation;
D O I
暂无
中图分类号
S [农业科学];
学科分类号
09 ;
摘要
Maize is the main staple food in the Mexican diet and is also the most important irrigated crop. However, water shortage is very serious in Mexico, and food security cannot be maintained without irrigation. To address this problem, the effect of maize density sowing was evaluated using a subsurface drip irrigation system. There were no differences in forage and grain yield of the hybrid Tigre (p > 0.05), among treatments (T): T1) 0.75 m row spacing and 90 000 seeds ha(-1); T2) 0.75 row spacing and 133 000 seeds ha(-1); T3) 0.4-1.1 m alternate row spacing and 133 000 seeds ha(-1). Mean forage dry matter was 23.6 Mg ha(-1) and grain yield was 14.6 Mg ha(-1 ). Although leaf area index was not different among treatments after silking, the number of ears per plant was higher for T1 (1.1) compared to T2 and T3 treatments (0.9; p <= 0.05). Forage ear percentage was higher for treatments T1 and T3 (60 and 63%) with respect to T2 (53%; p <= 0.05). Treatment T1 was suitable for maize production using minimum tillage and subsurface drip irrigation.
引用
收藏
页码:431 / 439
页数:9
相关论文
共 50 条
  • [41] Implementation of subsurface drip irrigation in hop growing as contribution to an environmentally acceptable production
    Knapic, M
    Pintar, M
    FRESENIUS ENVIRONMENTAL BULLETIN, 1998, 7 (12A): : 867 - 872
  • [42] Subsurface drip irrigation for corn production: a review of 10 years of research in Kansas
    Lamm, FR
    Trooien, TP
    IRRIGATION SCIENCE, 2003, 22 (3-4) : 195 - 200
  • [43] Farm level economic analysis of subsurface drip irrigation in Ontario corn production
    Jacques, David
    Fox, Glenn
    White, Peter
    AGRICULTURAL WATER MANAGEMENT, 2018, 203 : 333 - 343
  • [44] Subsurface drip irrigation for corn production: a review of 10 years of research in Kansas
    Freddie R. Lamm
    Todd P. Trooien
    Irrigation Science, 2003, 22 : 195 - 200
  • [45] Neuro-Drip: estimation of subsurface wetting patterns for drip irrigation using neural networks
    Hinnell, A. C.
    Lazarovitch, N.
    Furman, A.
    Poulton, M.
    Warrick, A. W.
    IRRIGATION SCIENCE, 2010, 28 (06) : 535 - 544
  • [46] Water use, forage production and water relations in alfalfa with subsurface drip irrigation
    Godoy-Avila, C
    Pérez-Gutíérrez, A
    Torres, CA
    Hermosillo, LJ
    Reyes, I
    AGROCIENCIA, 2003, 37 (02) : 107 - 115
  • [47] Subsurface drip irrigation (SDI) and GYP-FLO in processing tomato production
    Yong, M. T.
    Doyle, R.
    Fisher, P.
    Mann, L.
    XIV INTERNATIONAL SYMPOSIUM ON PROCESSING TOMATO, 2017, 1159 : 37 - 44
  • [48] Neuro-Drip: estimation of subsurface wetting patterns for drip irrigation using neural networks
    A. C. Hinnell
    N. Lazarovitch
    A. Furman
    M. Poulton
    A. W. Warrick
    Irrigation Science, 2010, 28 : 535 - 544
  • [49] A sowing method for subsurface drip irrigation that increases the emergence rate, yield, and water use efficiency in spring corn
    Mo, Yan
    Li, Guangyong
    Wang, Dan
    AGRICULTURAL WATER MANAGEMENT, 2017, 179 : 288 - 295
  • [50] Using a subsurface drip irrigation system to measure crop water use
    DeTar, WR
    IRRIGATION SCIENCE, 2004, 23 (03) : 111 - 122