Arid
DOI10.1016/j.fcr.2018.10.003
Straw retention and plastic mulching enhance water use via synergistic regulation of water competition and compensation in wheat-maize intercropping systems
Yin, Wen1,2; Yu, Aizhong1,2; Guo, Yao1,2; Wang, Yifan1,2; Zhao, Cai1,2; Fan, Zhilong1,2; Hu, Falong1,2; Chai, Qiang1,2
通讯作者Chai, Qiang
来源期刊FIELD CROPS RESEARCH
ISSN0378-4290
EISSN1872-6852
出版年2018
卷号229页码:78-94
英文摘要

Synergistic regulation of water competition and compensation is critical for the effective use of water in sustainable intercropping systems. A field experiment was conducted on different measures of plastic mulching and straw retention (no-tillage with straw standing in wheat strip and two-year plastic mulching in maize strip, NTSSI2; no-tillage with straw covering in wheat strip and two-year plastic mulching in maize strip, NTSI2; conventional tillage with straw incorporation in wheat strip and annual new plastic mulching in maize strip, TSI; and conventional tillage without straw retention in wheat strip and annual new plastic mulching in maize strip, CTI), which were used in strip intercropping from 2014 to 2016. We determined the effects of integrated measures on coordinating water competition and compensation between inter-strips. The intercropped wheat competed for soil water from the maize strips during the wheat growth period. After wheat harvest, the intercropped maize obtained compensatory soil water from the wheat strips. The results showed that the NTSI2 treatment favorably weakened wheat competition of soil water from the maize strip and strengthened wheat strip compensation of soil water for maize growth compared with CTI treatment. Thus, compared to the CTI treatment, the potential movement amount of soil water in NTSI2 was lowest, decreased by 25.8-58.9% during wheat growth period, but it arrived at the highest, increased by 42.2-60.8% after wheat harvest. The NTSI2 treatment improved grain yield by 13.8-17.1% and enhanced WUE by 12.4-17.2% compared with CTI. The improvement in crop yield and WUE was partly attributed to the coordinated water competition between the inter-strips and the water compensation effect from the early-maturing wheat to the late-maturing maize.


英文关键词Soil water movement Crop yield Intercropping No tillage Arid areas
类型Article
语种英语
国家Peoples R China
收录类别SCI-E
WOS记录号WOS:000449895400009
WOS关键词NORTH CHINA PLAIN ; USE EFFICIENCY ; WINTER-WHEAT ; SUSTAINABLE INTENSIFICATION ; RADIATION INTERCEPTION ; CROP PRODUCTIVITY ; SOIL EVAPORATION ; BARE SOIL ; YIELD ; TILLAGE
WOS类目Agronomy
WOS研究方向Agriculture
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/209281
作者单位1.Gansu Prov Key Lab Aridland Crop Sci, Lanzhou, Gansu, Peoples R China;
2.Gansu Agr Univ, Coll Agron, Lanzhou, Gansu, Peoples R China
推荐引用方式
GB/T 7714
Yin, Wen,Yu, Aizhong,Guo, Yao,et al. Straw retention and plastic mulching enhance water use via synergistic regulation of water competition and compensation in wheat-maize intercropping systems[J],2018,229:78-94.
APA Yin, Wen.,Yu, Aizhong.,Guo, Yao.,Wang, Yifan.,Zhao, Cai.,...&Chai, Qiang.(2018).Straw retention and plastic mulching enhance water use via synergistic regulation of water competition and compensation in wheat-maize intercropping systems.FIELD CROPS RESEARCH,229,78-94.
MLA Yin, Wen,et al."Straw retention and plastic mulching enhance water use via synergistic regulation of water competition and compensation in wheat-maize intercropping systems".FIELD CROPS RESEARCH 229(2018):78-94.
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