A suitable planting pattern and irrigation strategy are essential for optimizing winter wheat yield and water use efficiency (WUE). The study aimed to evaluate the impact of planting pattern and irrigation frequency on grain yield and WUE of winter wheat. During the 2013-2014 and 2014-2015 winter wheat growing seasons in the North China Plain, the effects of planting patterns and irrigation frequencies were determined on tiller number, grain yield, and WUE. The two planting patterns tested were wide-precision and conventional-cultivation. Each planting pattern had three irrigation regimes: irrigation (120 mm) at the jointing stage; irrigation (60 mm) at both the jointing and heading stages; and irrigation (40 mm) at the jointing, heading, a...
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by ...
The ridge-furrow supplementary irrigation (RFI) system is an important method to improve water use e...
Shortage of water resources is a major limiting factor for wheat (Triticum aestivum L.) production i...
The world food demand is expected to double by 2050 and the availability and quality of irrigation w...
Limited precipitation restricts yield of winter wheat grown in the North China Plain (NCP). Irrigati...
Wheat production is threatened by water shortages and groundwater over-draft in the North China Plai...
Irrigation has been identified as the main driving factor of groundwater drawdown in the North China...
Irrigation has been identified as the main driving factor of groundwater drawdown in the North China...
This work studied the effect of irrigation measures on water changes and crop growth in wheat fields...
<div><p>Improving winter wheat grain yield and water use efficiency (WUE) with minimum irrigation is...
Research has revealed that summer fallow sowing improves the water use efficiency (WUE) and grain yi...
<div><p>The North China Plain is one of the most important grain production regions in China, but is...
Reducing irrigation water use by improving water use efficiency (WUE) in grain production is critica...
<div><p>Winter wheat is threatened by drought in the Huang-Huai-Hai Plain of China, thus, effective ...
Unreasonably high irrigation levels and excessive nitrogen (N) supplementation are common occurrence...
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by ...
The ridge-furrow supplementary irrigation (RFI) system is an important method to improve water use e...
Shortage of water resources is a major limiting factor for wheat (Triticum aestivum L.) production i...
The world food demand is expected to double by 2050 and the availability and quality of irrigation w...
Limited precipitation restricts yield of winter wheat grown in the North China Plain (NCP). Irrigati...
Wheat production is threatened by water shortages and groundwater over-draft in the North China Plai...
Irrigation has been identified as the main driving factor of groundwater drawdown in the North China...
Irrigation has been identified as the main driving factor of groundwater drawdown in the North China...
This work studied the effect of irrigation measures on water changes and crop growth in wheat fields...
<div><p>Improving winter wheat grain yield and water use efficiency (WUE) with minimum irrigation is...
Research has revealed that summer fallow sowing improves the water use efficiency (WUE) and grain yi...
<div><p>The North China Plain is one of the most important grain production regions in China, but is...
Reducing irrigation water use by improving water use efficiency (WUE) in grain production is critica...
<div><p>Winter wheat is threatened by drought in the Huang-Huai-Hai Plain of China, thus, effective ...
Unreasonably high irrigation levels and excessive nitrogen (N) supplementation are common occurrence...
Crop yield and water use efficiency (WUE) in a wheat-maize double cropping system are influenced by ...
The ridge-furrow supplementary irrigation (RFI) system is an important method to improve water use e...
Shortage of water resources is a major limiting factor for wheat (Triticum aestivum L.) production i...