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Land use intensification in the Rolling Pampa, Argentina: Diversifying crop sequences to increase yields and resource use

机译:土地利用在滚动PAMPA,阿根廷:多样化作物序列增加产量和资源使用

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Increasing and maintaining high productivity levels presents a major challenge facing farmers today and will continue into the near future. More integrative and complex approaches to decision-making, besides adopting new technologies, are necessary for redesigning more productive, stable, and sustainable farming systems. Thus, novel crop sequences should be implemented to improve these properties of farming systems. The aim of our research was to characterize how different preceding crops that open recurrent sequences will impact on the productivity and resource use of the following crops, in order to determine the possibilities of increasing the frequency of double crops in rotations. Three field experiments were conducted under rainfed conditions at three sites in the Rolling Pampas of Argentina. The effects of seven cropping systems on the productivity of succeeding crops were evaluated at each location. The seven cropping systems included five double crops (rapeseed/soybean, wheat/soybean, barley/soybean, field pea/soybean, and field pea/maize) and two single crops (maize and soybean). The seven cropping systems were followed by the same crop sequence: wheat/soybean double crop and maize single crop in the first and second growing seasons, respectively. Radiation use and grain yield, water use and nitrogen uptake were evaluated for each crop in the sequence. Results indicate that repeating cereal crops in the cropping sequence reduces their productivities, while well balanced sequences that include legumes resulted in the highest productivities of cereal crops. Our findings highlight that diversifying cropping systems by adopting different double crops are practical options that can contribute to a more sustainable intensification of cropping systems specialized for grain crops. Increasing crop diversity in sequence influenced nitrogen uptake, among other factors, and may explain the enhanced crop yield in such systems. Our research highlights that crop diversification is critical in designing efficient and sustainable intensified crop sequences. (C) 2016 Elsevier B.V. All rights reserved.
机译:增加和维持高生产率水平提出了当今农民面临的主要挑战,并将继续进入不久的将来。除了采用新技术之外,决策的更加综合和复杂的方法是重新设计更加生产,稳定和可持续的农业系统所必需的。因此,应该实施新的作物序列以改善农业系统的这些性质。我们的研究目的是表征了开放的复发序列的特征如何影响以下作物的生产率和资源使用,以确定增加旋转频率的双重作物频率的可能性。在阿根廷滚动钢板中的三个地点进行了三个现场实验。在每个位置评估七种种植系统对后续作物生产率的影响。七种种植系统包括五种双人作物(菜籽/大豆,小麦/大豆,大麦/大豆,豌豆/大豆,豌豆/玉米)和两种单一作物(玉米和大豆)。七种种植系统之后是相同的作物序列:小麦/大豆双重作物和玉米单一作物分别在第一和第二生长季节。序列中每种作物评价辐射使用和籽粒产量,水使用和氮吸收。结果表明,在种植序列中重复谷物作物降低了它们的生产力,而包括豆类的良好平衡序列导致谷物作物的最高产品。我们的调查结果强调,通过采用不同的双重作物多样化种植系统是实用的选择,可以有助于更可持续地强化专门用于粮食作物的种植系统。在序列中增加作物多样性影响氮吸收,以及其他因素,可以解释这种系统中的增强的作物产量。我们的研究突出显示庄稼多样化对于设计有效和可持续的加强作物序列至关重要。 (c)2016年Elsevier B.v.保留所有权利。

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