Arid
DOI10.3389/fpls.2017.01408
Planting Patterns and Deficit Irrigation Strategies to Improve Wheat Production and Water Use Efficiency under Simulated Rainfall Conditions
Ali, Shahzad1,2; Xu, Yueyue1,2; Ma, Xiangcheng1,2; Ahmad, Irshad1,2; Kamran, Muhammad1,2; Dong, Zhaoyun1,2; Cai, Tie1,2; Jia, Qianmin1,2; Ren, Xiaolong1,2; Zhang, Peng1,2; Jia, Zhikuan1,2
通讯作者Cai, Tie ; Jia, Zhikuan
来源期刊FRONTIERS IN PLANT SCIENCE
ISSN1664-462X
出版年2017
卷号8
英文摘要

The ridge furrow (RF) rainwater harvesting systemis an efficient way to enhance rainwater accessibility for crops and increase winter wheat productivity in semi-arid regions. However, the RF system has not been promoted widely in the semi-arid regions, which primarily exist in remote hilly areas. To exploit its efficiency on a large-scale, the RF system needs to be tested at different amounts of simulated precipitation combined with deficit irrigation. Therefore, in during the 2015-16 and 2016-17 winter wheat growing seasons, we examined the effects of two planting patterns: (1) the RF system and (2) traditional flat planting (TF) with three deficit irrigation levels (150, 75, 0mm) under three simulated rainfall intensity (1: 275, 2: 200, 3: 125mm), and determined soil water storage profile, evapotranspiration rate, grain filling rate, biomass, grain yield, and net economic return. Over the two study years, the RF treatment with 200mm simulated rainfall and 150mm deficit irrigation (RF2(150)) significantly (P < 0.05) increased soil water storage in the depth of (200 cm); reduced ET at the field scale by 33%; increased total dry matter accumulation per plant; increased the grain-filling rate; and improved biomass (11%) and grain (19%) yields. The RF2(150) treatment thus achieved a higher WUE (76%) and RIWP (21%) compared to TF. Grain-filling rates, grain weight of superior and inferior grains, and net economic profit of winter wheat responded positively to simulated rainfall and deficit irrigation under both planting patterns. The 200mm simulated rainfall amount was more economical than other precipitation amounts, and led to slight increases in soil water storage, total dry matter per plant, and grain yield; there were no significant differences when the simulated rainfall was increased beyond 200mm. The highest (12,593 Yuan ha(-1)) net income profit was attained using the RF system at 200mm rainfall and 150mm deficit irrigation, which also led to significantly higher grain yield, WUE, and RIWP than all other treatments. Thus, we recommend the RF2(150) treatment for higher productivity, income profit, and improve WUE in the dry-land farming system of China.


英文关键词deficit irrigation simulated rainfall winter wheet yields planting patterns grain filling rate WUE economic profits
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000408209400002
WOS关键词SEMIARID LOESS PLATEAU ; ZEA-MAYS L. ; WINTER-WHEAT ; RIDGE-FURROW ; CROP PRODUCTION ; SUPPLEMENTAL IRRIGATION ; NORTHWEST CHINA ; SPRING WHEAT ; HARVESTING SYSTEM ; SOIL-TEMPERATURE
WOS类目Plant Sciences
WOS研究方向Plant Sciences
来源机构西北农林科技大学
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/199101
作者单位1.Northwest A&F Univ, Inst Water Saving Agr, Arid Areas China, Yangling, Peoples R China;
2.Northwest A&F Univ, Minist Agr, Key Lab Crop Physiecol & Tillage Sci North Wester, Yangling, Peoples R China
推荐引用方式
GB/T 7714
Ali, Shahzad,Xu, Yueyue,Ma, Xiangcheng,et al. Planting Patterns and Deficit Irrigation Strategies to Improve Wheat Production and Water Use Efficiency under Simulated Rainfall Conditions[J]. 西北农林科技大学,2017,8.
APA Ali, Shahzad.,Xu, Yueyue.,Ma, Xiangcheng.,Ahmad, Irshad.,Kamran, Muhammad.,...&Jia, Zhikuan.(2017).Planting Patterns and Deficit Irrigation Strategies to Improve Wheat Production and Water Use Efficiency under Simulated Rainfall Conditions.FRONTIERS IN PLANT SCIENCE,8.
MLA Ali, Shahzad,et al."Planting Patterns and Deficit Irrigation Strategies to Improve Wheat Production and Water Use Efficiency under Simulated Rainfall Conditions".FRONTIERS IN PLANT SCIENCE 8(2017).
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