Arid
DOI10.1016/j.agwat.2022.107852
Can rainwater harvesting replace conventional irrigation for winter wheat production in dry semi-humid areas in China?
Liu, Xiaoli; Wang, Yandong; Zhang, Yuehe; Ren, Xiaolong; Chen, Xiaoli
通讯作者Ren, XL ; Chen, XL
来源期刊AGRICULTURAL WATER MANAGEMENT
ISSN0378-3774
EISSN1873-2283
出版年2022
卷号272
英文摘要The plastic-mulched ridge and furrow rainwater harvesting (PRFRH) planting practice is widely used in rain-fed arid and semi-arid areas. However, it remains unknown whether PRFRH can replace or reduce irrigation to achieve a high and stable wheat yield in dry semi-humid areas. In this study, two cultivation practices (PRFRH and conventional flat planting [CK]) were used in combination with three irrigation regimes (0, 75, and 150 mm) to evaluate the efficacy of PRFRH in different precipitation year types (dry, normal, and wet years). Results showed that PRFRH increased soil temperature and pre-jointing soil water storage at 0-80 cm depth, whereas irrigation increased post-anthesis soil water storage at 0-80 cm depth. Furthermore, PRFRH prolonged the duration of the jointing-anthesis stages and thereby increasing the kernel number. Both PRFRH and irrigation increased dry matter accumulation and the leaf area index. PRFRH accelerated the grain-filling rate but short-ened the effective grain-filling duration, while irrigation extended the effective grain-filling duration. PRFRH did not significantly influence kernel weight, whereas irrigation increased kernel weight. Overall, PRFRH reduced the effective wheat planted area and thereby reducing spike number, although it increased the kernel number, resulting in yields that were 13.7% lower than those under CK. The yield under PRFRH was significantly higher than that under CK only in the dry year but lower in the normal and wet years. Irrigation increased the yield; however, the yield did not significantly differ between the 75 and 150 mm irrigation regimes. The water productivity and net profit under 75 mm irrigation were relatively high. In conclusion, in dry semi-humid areas, PRFRH combined with a 75 mm irrigation volume could mitigate drought stress to improve yield, water productivity, and net profit in dry years only.
英文关键词Dry semi-humid areas Winter wheat Plastic-mulched ridge and furrow rainwater harvesting planting practice Irrigation Grain yield
类型Article
语种英语
收录类别SCI-E
WOS记录号WOS:000861240400001
WOS关键词WATER-USE EFFICIENCY ; ZEA-MAYS L. ; RIDGE-FURROW ; LOESS PLATEAU ; ADAPTIVE MANAGEMENT ; GRAIN NUMBER ; MAIZE ; YIELD ; PRECIPITATION ; GROWTH
WOS类目Agronomy ; Water Resources
WOS研究方向Agriculture ; Water Resources
资源类型期刊论文
条目标识符http://119.78.100.177/qdio/handle/2XILL650/391639
推荐引用方式
GB/T 7714
Liu, Xiaoli,Wang, Yandong,Zhang, Yuehe,et al. Can rainwater harvesting replace conventional irrigation for winter wheat production in dry semi-humid areas in China?[J],2022,272.
APA Liu, Xiaoli,Wang, Yandong,Zhang, Yuehe,Ren, Xiaolong,&Chen, Xiaoli.(2022).Can rainwater harvesting replace conventional irrigation for winter wheat production in dry semi-humid areas in China?.AGRICULTURAL WATER MANAGEMENT,272.
MLA Liu, Xiaoli,et al."Can rainwater harvesting replace conventional irrigation for winter wheat production in dry semi-humid areas in China?".AGRICULTURAL WATER MANAGEMENT 272(2022).
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