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首页> 外文期刊>European Journal of Agronomy >Assessing the effect of soil tillage on crop growth: A meta-regression analysis on European crop yields under conservation agriculture
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Assessing the effect of soil tillage on crop growth: A meta-regression analysis on European crop yields under conservation agriculture

机译:评估土壤耕作对作物生长的影响:保护性农业下欧洲作物产量的元回归分析

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摘要

Many strategies exist to combat soil degradation through erosion and compaction on agricultural fields. One of these strategies is conservation agriculture (CA). Reduced or no-tillage techniques, together with crop residue management and crop rotation are the pillars of CA. The term reduced tillage covers a range of tillage practices but it never involves inverting the soil. In this way, soil disturbance is minimised and crop residues are left on the soil. Studies in many European countries have shown that CA can indeed be very effective in combating soil erosion. However, soil and water conservation do not appear as main drivers in farmers' decisions to shift or not to CA. Economic factors tend to be more important, but there are a lot of uncertainties on this domain. Studies show that production costs are mostly reduced, mainly by reduced fuel costs. Although many European studies have investigated the effect of reduced soil tillage on crop yields, a lot of uncertainties still exist. Most of the studies only cover a small range of field experiments, in one region. We present a meta-regression analysis (47 European studies, 563 observations) that compares crop yields under conventional tillage (CT), reduced tillage (RT) and no-tillage (NT) techniques. We analysed the possible influence on the relative yield ((RT or NT)/CT) of crop type, tillage depth, crop rotation, climate, CT yield and length of application of RT or NT. Our analysis shows that, while the introduction of conservation tillage in Europe may indeed have some negative effect on yields, these effects can be expected to be limited: the overall average reduction we found was ca. 4.5%. NT reduces crop yield on average with 8.5%. However, RT leads to a reduction in crop yields for maize and winter cereals only. By applying a linear mixed model, the importance of tillage depth and crop type as classification effects could be confirmed. Surprisingly, no-tillage did perform worse under drier climatic conditions. Negative effects such as an increased prevalence of pests and a lower quality of seed placement seem to outweigh possible gains due to increased water availability. On clay and sandy soils, however, this negative effect of no-tillage is counteracted, and all conservation tillage techniques perform better under drier climatic conditions. Another important finding is that, in cereals only rotations, relative yields under conservation tillage tend to decrease with time.Our analysis shows that conservation tillage is certainly a viable option for European agriculture from the viewpoint of agricultural productivity. Potential negative effects on agricultural productivity can be strongly reduced by applying sufficiently deep tillage and using a crop rotation including crops other than cereals
机译:存在许多通过在农田上的侵蚀和压实来对抗土壤退化的策略。这些策略之一是保护性农业(CA)。减少或免耕技术以及作物残留管理和作物轮作是CA的基础。减少耕种一词涵盖了一系列耕作实践,但绝不涉及将土壤倒置。通过这种方式,可以最大程度地减少土壤干扰,并在土壤上残留农作物残留物。欧洲许多国家的研究表明,CA在防治土壤侵蚀方面确实非常有效。但是,水土保持并没有成为农民决定是否转移到CA的主要驱动力。经济因素往往更重要,但是在此领域存在很多不确定性。研究表明,主要是通过降低燃料成本来降低生产成本。尽管许多欧洲研究已经调查了减少耕作对作物产量的影响,但仍然存在许多不确定因素。大多数研究只涉及一个地区的一小部分现场实验。我们提供了一项元回归分析(47项欧洲研究,563项观测值),比较了传统耕作(CT),减耕(RT)和免耕(NT)技术下的农作物产量。我们分析了可能对作物类型的相对产量((RT或NT)/ CT),耕作深度,作物轮作,气候,CT产量以及RT或NT施用时间的影响。我们的分析表明,尽管在欧洲引入保护性耕作确实可能对单产产生一些负面影响,但可以预期这些影响是有限的:我们发现总体平均减少量约为。 4.5%。 NT使平均单产降低了8.5%。但是,逆转录仅导致玉米和冬季谷物的农作物减产。通过应用线性混合模型,可以确认耕作深度和作物类型作为分类效果的重要性。令人惊讶的是,在干旱的气候条件下,免耕的确表现更差。有害影响,例如害虫的流行增加和种子放置质量降低,似乎超过了由于增加的水供应而可能获得的收益。但是,在粘土和沙质土壤上,这种免耕的不利影响得以抵消,并且所有保护性耕作技术在干燥的气候条件下均表现更好。另一个重要发现是,仅在轮作谷物中,保护性耕作下的相对产量会随着时间而降低。我们的分析表明,从农业生产率的角度来看,保护性耕作对于欧洲农业无疑是一个可行的选择。进行足够深的耕作并使用轮作作物(包括谷物以外的其他作物),可以大大减少对农业生产力的潜在负面影响

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