有限水分条件下不同播法对小麦增产和水分利用效率的评价

Q4 Agricultural and Biological Sciences
A. Riaz, M. Aziz, A. Ghaffar, W. Ahmed, K. Mubeen, M. Usman
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引用次数: 0

摘要

干旱是全球粮食安全的严重威胁。小麦是世界上受干旱影响最严重的水敏感作物。选择合适的播种方式对提高水分利用效率至关重要。通过2018-19冬季的田间试验,研究了不同播种方式对春小麦花期水分亏缺的水分利用效率的影响。小麦采用撒播、钻播和增沟播三种不同的播种方式和正常灌溉和花期亏水灌溉两种不同的灌溉方式。在整个试验过程中,所有的农艺操作都是统一的。不同的播种方式和灌溉制度对小麦籽粒和秸秆产量有显著影响。不同播种方式中,增沟法播种的小麦株高最高,为111 cm;每平方米分蘖数(427),千粒重(37.93 g),籽粒产量(4.73吨公顷-1)和秸秆产量(4.24吨公顷-1)。小麦开花期水分亏缺条件下增沟播种的灌溉水利用效率最高(17.72 kg ha-1 mm-1),效益成本比最高(1.34)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Evaluation of differnt sowing methods for enhancing productivity and water use efficiency of wheat under limited water condition
Drought is a serious threat for food security worldwide. Wheat is most popular staple crop of world severely affected by drought at water sensitive crop growth stages. Selection of appropriate sowing method is very important for improving water use efficiency. A field trial was conducted in winter season of 2018-19 to investigate the impact of different sowing methods on water use efficiency of spring wheat exposed to water deficit at anthesis. Wheat was sown with three different sowing methods viz. broadcast sowing, drill sowing and augmented furrow sowing and two different irrigation regimes i.e. normal irrigation and water deficit at anthesis stage. All agronomic practices were kept uniform throughout the experiment. Different sowing methods and irrigation regimes significantly affected grain and straw yield of wheat. Among different sowing methods, wheat crop sown with augmented furrow method produced maximum plant height (111 cm), no. of tillers per m2 (427),  1000 grain weight (37.93 g), grain yield (4.73 t ha-1) and straw yield (4.24 t ha-1). Maximum irrigation water use efficiency (17.72 kg ha-1 mm-1) and benefit cost ratio (1.34) was recorded in augmented furrow method of sowing of wheat exposed to water deficit at anthesis stage. 
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来源期刊
International Journal of Agricultural Extension
International Journal of Agricultural Extension Agricultural and Biological Sciences-Plant Science
自引率
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发文量
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