您好,欢迎访问山东省农业科学院文献资源数据库平台

Comparison of conventional, flood irrigated, flat planting with furrow irrigated, raised bed planting for winter wheat in China

文献类型: 外文期刊

作者: Fahong, W 1 ; Wang, X 2 ; Sayre, K 2 ;

作者机构: 1.CIMMYT Int, Mexico City 06600, DF, Mexico

2.CIMMYT Int, Mexico City 06600, DF, Mexico; Shandong Acad Agr Sci, Shandong 250100, Peoples R China

关键词: winter wheat;furrow irrigation;bed planting;canopy microclimate;powdery mildew;sharp eyespot

期刊名称:FIELD CROPS RESEARCH ( 影响因子:5.224; 五年影响因子:6.19 )

ISSN: 0378-4290

年卷期: 2004 年 87 卷 1 期

页码:

收录情况: SCI

摘要: China is the most populous nation and largest food producer and consumer in the world. In terms of planted area and output, wheat (Triticum aestivum L.) (including both winter and spring habit wheat) is the number one crop in northern China, and currently almost all irrigated wheat is conventionally planted in narrow spaced rows on the flat and is irrigated by flood irrigation within bordered basins. Conventional flat planting for winter wheat has some disadvantages. The use of flood irrigation can result in a low potential irrigation water use efficiency and inefficient use of nitrogen. It can also cause crusting of the soil surface following irrigation and can contribute to the degradation of some soil properties. In addition, it can result in higher levels of crop lodging. A raised bed-planting system with a number of defined rows (usually two to four rows) planted on top of the bed with furrow irrigation was found to overcome these disadvantages. The benefits of the raised bed-planting system with furrow irrigation compared with conventional flat planting with flood irrigation were found as follows: first, there was a savings in some years of as much as 30% of applied irrigation water combined with enhanced water use efficiency by changing from flood to furrow irrigation; second, the crust problem on the soil surface was eliminated and soil physical status was greatly improved; third, nitrogen use efficiency could be improved by 10% or more because of improved nitrogen placement possibilities; fourth, the microclimate within the field was changed due to the orientation of the wheat plants in rows on the beds with the bed-planting system, which reduced crop lodging and decreased the incidence of some wheat diseases. These advantages, interacting together, were found to improve grain quality and increase grain yield by more than 10%. (C) 2003 Elsevier B.V. All rights reserved.

  • 相关文献

[1]Molecular cloning, functional verification, and evolution of TmPm3, the powdery mildew resistance gene of Triticum monococcum L.. Zhao, C. Z.,Li, Y. H.,Dong, H. T.,Geng, M. M.,Liu, W. H.,Li, F.,Ni, Z. F.,Xie, C. J.,Sun, Q. X.,Zhao, C. Z.,Dong, H. T.,Geng, M. M.,Liu, W. H.,Li, F.,Ni, Z. F.,Xie, C. J.,Sun, Q. X.,Zhao, C. Z.,Wang, X. J.. 2016

[2]Control of Powdery Mildew in Organic Greenhouse Melon Cultivation. Qin, F. F.,Xu, H. L.,Xu, Q. C.. 2011

[3]Molecular cytogenetic characterization of two partial wheat Elytrigia elongata amphiploids resistant to powdery mildew. He, Fang,Xu, Jinqiu,Qi, Xiaolei,Bao, Yinguang,Li, Xingfeng,Wang, Honggang,Zhao, Fengtao.

[4]Morphological and yield responses of winter wheat (Triticum aestivum L.) to raised bed planting in Northern China. Wang, Fahong,Kong, Ling'an,Li, Shengdong,Si, Jisheng,Feng, Bo,Zhang, Bin,Wang, Fahong,Sayre, Ken. 2011

[5]Extracting Winter Wheat Planting Area Based on Cropping System with Remote Sensing. Li, Shaokun,Zhu, Zhenlin,Sui, Xueyan,Zhang, Xiaodong,Zhu, Zhenlin,Sun, Xiaoqing,Li, Shaokun. 2011

[6]Estimating on-farm wheat yield response to potassium and potassium uptake requirement in China. Zhan, Ai,Zou, Chunqin,Cui, Zhenling,Chen, Xinping,Ye, Youliang,Liu, Zhaohui.

作者其他论文 更多>>