The effects of drip irrigation quota on the root distribution characteristics and grain yield of spring corn
MA Jinping, WANG Weifeng, ZHU Baocai, WANG Shuangxi
1. College of Forestry, Shanxi Agricultural University, 030801, Taigu, Shanxi, China;
2. College of Engineering, Shanxi Agricultural University, 030801, Taigu, Shanxi, China
Abstract:[Background] The Loess Plateau is drought and water shortage. There are many researches on water-saving effect of drip irrigation with mulch, which could accurately irrigate plants. However, the effect of mulched drip irrigation on root and yield of spring corn is very few.[Methods] The randomized block experiment was conducted for 2 years in Taigu, Shanxi. The irrigation quota treatments were set up to 0, 8, 12, 16, and 20 mm respectively. The effects of different irrigation quota on the root distribution parameters of the soil depth from 0 to 100 cm and grain yield were studied. The sampling of root distribution included integral excavation and stratified, WinRHIZO analyzed the distribution parameters of root system, and the grain yield was dried by air. Data were processed by Microsoft Excel 2007,SPSS 20.0 software for significance test and Pearson correlation analysis. SigmaPlot 12.5 was plotted.[Results] The distribution characteristic parameters of the whole root system increased with the increase of the irrigation quota, and reached the maximum in the irrigation 20 mm. The root length, the root surface area, the root tip number and the root dry weight were very significant, and the root volume and root diameter were significant. The vertical distribution of root length in the 10-20 cm soil layer was the largest, account for 47.29%-60.28% and 48.29%-62.30% in 2016 and 2017, respectively. The root dry weight distribution in the 0-20 cm soil layer was the heaviest, account for 72.03%-85.48% and 71.50%-84.97% in 2016 and 2017, respectively. The grain yield increased with the irrigation quota increasing, but there was no obvious difference in treatment irrigation quota of 16 mm and 20 mm.[Conclusions] The plastic mulching drip irrigation measures obviously promote the root growth of the soil surface soil and grain yield. The best irrigation quota of mulched drip irrigation in the central area of Shanxi is recommended to be 16 mm.
马金平1, 王卫锋1, 朱宝才1, 王双喜2. 灌水定额对覆膜滴灌玉米根系分布和籽粒产量的影响[J]. 中国水土保持科学, 2018, 16(6): 64-70.
MA Jinping, WANG Weifeng, ZHU Baocai, WANG Shuangxi. The effects of drip irrigation quota on the root distribution characteristics and grain yield of spring corn. SSWC, 2018, 16(6): 64-70.
LI Jingwei,LIU Zhifeng,HE Chunyang,et al.Water shortages raised a legitimate concern over the sustainable development of the drylands of northern China:Evidence from the water stress index[J].Science of the Total Environment,2017(590/591):739.
[2]
张晓伟,黄占斌,李秧秧,等.滴灌条件下玉米的产量和WUE效应研究[J].水土保持研究,1999(1):73. ZHANG Xiaowei, HUANG Zhanbin, LI Yangyang, et al.Study on the yield and WUE effect of maize under drip irrigation[J].Research of Soil and Water Conservation,1999(1):73.
[3]
刘战东,肖俊夫,刘祖贵,等.膜下滴灌不同灌水处理对玉米形态、耗水量及产量的影响[J].灌溉排水学报,2011(3):60. LIU Zhandong,XIAO Junfu,LIU Zugui,et al.The effect of the shape,water consumption and yield of maize under mulch drip irrigation[J].Journal of Irrigation and Drainage,2011(3):60.
[4]
徐宝山,贾生海,雒天峰,等.膜下滴灌不同灌水定额对玉米根系生长的影响[J].水土保持研究,2014,21(5):272. XU Baoshan,JIA Shenghai,LUO Tianfeng, et al.The effect of maize root growth of different irrigation quota under mulch[J].Research of Soil and Water Conservation,2014,21(5):272.
[5]
苏志峰,杨文平,杜天庆,等.施肥深度对生土地玉米根系及根际土壤肥力垂直分布的影响[J].中国生态农业学报,2016,24(2):142. SU Zhifeng,YANG Wenping,DU Tianqing,et al.Effect of fertilization depth on maize root and rhizosphere soil fertility vertical distribution in immature loess subsoil[J].Chinese Journal of Eco-Agriculture,2016,24(2):142.
[6]
LÜ Guohua,SONG Jiqing,BAI Wenbo,et al.Effects of different irrigation methods on micro-environments and root distribution in winter wheat fields[J].Journal of Integrative Agriculture,2015,14(8):1658.
[7]
刘世和,曹红霞,杨慧,等.灌水量和滴灌系统运行方式对番茄根系分布的影响[J].灌溉排水学报,2016,35(2):77. LIU Shihe,CAO Hongxia,YANG Hui,et al.Effect of tomato root distribution by irrigation amount and drip irrigation system operation[J].Journal of Irrigation and Drainage,2016,35(2):77.
[8]
马金平,王福星,张岱,等.覆膜对玉米根系分布特性的影响[J].农业与技术,2018,38(4):21. MA Jinping,WANG Fuxing,ZHANG Dai,et al.Effects of film mulching on root distribution characteristics of maize[J].Agriculture and Technology,2018,38(4):21.
[9]
方怡向,赵成义,串志强,等.膜下滴灌条件下水分对棉花根系分布特征的影响[J].水土保持学报,2007,21(5):96. FANGYixiang,ZHAO Chengyi,CHUAN Zhiqiang,et al.Effects of cotton root distribution by water under mulch drip irrigation[J].Journal of Soil and Water Conservation,2007,21(5):96.
白有帅,贾生海,雒天峰.覆膜滴灌条件下灌水量对玉米根系分布特征的影响[J].节水灌溉,2016(11):19. BAI Youshuai,JIA Shenghai,TIAN Tianfeng.Effects of irrigation amount on maize root distribution under drip irrigation with mulch film[J].Water Saving Irrigation,2016(11):19.
[12]
李凤英,黄占斌.夏玉米不同生育阶段干湿变化的补偿效应研究[J].中国生态农业学报,2001,9(3):61. LI Fengying, HUANG Zhanbin. A study on compensatory effect of corn at different growth stages to water deficit change[J]. Chinese Journal of Eco-Agriculture, 2001, 9(3):61.
[13]
胡田田,康绍忠.植物抗旱性中的补偿效应及其在农业节水中的应用[J].生态学报,2005,25(4):885. HU Tiantian, KANG Shaozhong. The compensatory effect in drought resistance of plants and its application in water-saving agriculture[J]. Acta Ecologica Sinica,2005,25(4):885.
[14]
LI Xianyue, ŠIMUNEK Jirí,SHI Haibin,et al.Spatial distribution of soil water,soil temperature,and plant roots in a drip-irrigated intercropping field with plastic mulch[J].European Journal of Agronomy,2017(83):47.
[15]
才卓.中国玉米栽培学[M].上海:上海科学技术出版社,2004:38. CAI Zhuo.Chinese maize cultivation[M].Shanghai:Shanghai Science and Technology Press,2004:38.
[16]
刘洋,栗岩峰,李久生,等.东北半湿润区膜下滴灌对农田水热和玉米产量的影响[J].农业机械学报,2015,40(10):93. LIU Yang,LI Yanfeng,LI Jiusheng,et al.Influence of farmland water heat and maize yield of drip irrigation in northeast semi humid area[J].Transactions of the CSAM,2015,40(10):93.