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Diversifying crop rotations with pulses enhances system productivity

机译:通过脉冲使作物轮作多样化提高系统生产力

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摘要

Agriculture in rainfed dry areas is often challenged by inadequate water and nutrient supplies. Summerfallowing has been used to conserve rainwater and promote the release of nitrogen via the N mineralization of soil organic matter. However, summerfallowing leaves land without any crops planted for one entire growing season, creating lost production opportunity. Additionally, summerfallowing has serious environmental consequences. It is unknown whether alternative systems can be developed to retain the beneficial features of summerfallowing with little or no environmental impact. Here, we show that diversifying cropping systems with pulse crops can enhance soil water conservation, improve soil N availability, and increase system productivity. A 3-yr cropping sequence study, repeated for five cycles in Saskatchewan from 2005 to 2011, shows that both pulse- and summerfallow-based systems enhances soil N availability, but the pulse system employs biological fixation of atmospheric N2, whereas the summerfallow-system relies on ‘mining’ soil N with depleting soil organic matter. In a 3-yr cropping cycle, the pulse system increased total grain production by 35.5%, improved protein yield by 50.9%, and enhanced fertilizer-N use efficiency by 33.0% over the summerfallow system. Diversifying cropping systems with pulses can serve as an effective alternative to summerfallowing in rainfed dry areas.
机译:雨水干旱地区的农业经常受到水和营养供应不足的挑战。夏季休耕已被用来保存雨水并通过土壤有机质的氮矿化促进氮的释放。但是,夏季休耕期的土地在整个生长季节中都没有任何农作物的种植,从而造成了生产机会的损失。此外,夏季休耕会对环境造成严重影响。尚不清楚是否可以开发出其他系统来保留夏季休耕的有益功能,而对环境的影响很小或没有。在这里,我们表明,以豆类作物为主的种植系统多样化可以增强土壤水养护,提高土壤氮素利用率并提高系统生产力。一项为期3年的种植序列研究,于2005年至2011年在萨斯喀彻温省进行了五个周期的重复研究,结果表明,基于脉冲和夏季的系统均能提高土壤氮素的利用率,但脉冲系统采用了大气N2的生物固定作用,而基于夏季的系统依赖“消耗”土壤中的N并消耗土壤中的有机物。在3年的种植周期中,与夏季休耕系统相比,豆类系统使谷物总产量提高了35.5%,蛋白产量提高了50.9%,氮肥利用率提高了33.0%。豆类作物的多样化种植系统可以替代雨育干旱地区的夏季作物。

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