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Comparing crop rotations between organic and conventional farming

机译:比较有机耕作和常规耕作之间的轮作

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摘要

Cropland use activities are major drivers of global environmental changes and of farming system resilience. Rotating crops is a critical land-use driver, and a farmers’ key strategy to control environmental stresses and crop performances. Evidence has accumulated that crop rotations have been dramatically simplified over the last 50 years. In contrast, organic farming stands as an alternative production way that promotes crop diversification. However, our understanding of crop rotations is surprisingly limited. In order to understand if organic farming would result in more diversified and multifunctional landscapes, we provide here a novel, systematic comparison of organic-to-conventional crop rotations at the global scale based on a meta-analysis of the scientific literature, paired with an independent analysis of organic-to-conventional land-use. We show that organic farming leads to differences in land-use compared to conventional: overall, crop rotations are 15% longer and result in higher diversity and evener crop species distribution. These changes are driven by a higher abundance of temporary fodders, catch and cover-crops, mostly to the detriment of cereals. We also highlighted differences in organic rotations between Europe and North-America, two leading regions for organic production. This increased complexity of organic crop rotations is likely to enhance ecosystem service provisioning to agroecosystems.
机译:耕地使用活动是全球环境变化和耕作系统适应力的主要驱动力。轮作作物是土地使用的关键驱动力,也是农民控制环境压力和作物生长的关键策略。已有证据表明,过去50年来,作物轮作得到了极大的简化。相反,有机农业是促进作物多样化的替代生产方式。但是,我们对作物轮作的理解令人惊讶地受到限制。为了了解有机耕作是否会带来更加多样化和多功能的景观,在此我们根据对科学文献进行的荟萃分析,在全球范围内提供了一种新颖,系统的有机转常规作物轮作的比较方法,并结合了对有机土地和常规土地利用的独立分析。我们证明,与传统耕作相比,有机耕作导致土地利用方面的差异:总体而言,轮作时间延长15%,并导致更高的多样性和更均匀的农作物种分布。这些变化是由大量的临时饲料,渔获物和农作物造成的,主要是对谷物的危害。我们还强调了欧洲和北美这两个有机生产的主要地区之间的有机轮换差异。有机作物轮作的这种增加的复杂性可能会增强向农业生态系统提供生态系统服务的能力。

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