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Methodology to design agroecological orchards: Learnings from on-station and on-farm experiences

机译:设计农业科果园的方法:从车站和农场经验的学习

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Agricultural research has to tackle complex questions such as the design of sustainable cropping systems. System experiments are innovative approaches to address this challenge and a framework to iteratively design annual cropping systems has been proposed by Debaeke et al. (2009). However, specificities of some other cropping systems are not considered. Orchards are complex perennial agroecosystems formed of grass and tree layers aiming at the production of fresh fruit that require specific design and management over space and time. To identify orchard specificities and adapt the design framework to such perennial systems, we used two case studies of orchards aiming at decreasing pesticide use in temperate (apple, system experiment) and tropical (citrus, on-farm network) fruit productions. Specificities to take into account in the design framework are: (1) the spatial heterogeneity of the orchard with grass and tree layers, and tree rows and alleys; (2) the succession and interrelations among a young unproductive and then a productive stage; (3) the permanency of the fruit-tree crop constraining the management of soil fertility, (4) ground cover and (5) pest control, especially for pests that complete their lifecycle in the orchard and can build up important populations or inoculum across years. This is especially true in tropical areas where there is no dormant season. (6) Conversely, the permanency of the orchard habitats facilitates the sowing, planting or conservation of plant assemblages (e.g., ground covers, lining hedgerows) to enhance conservation biocontrol and/or compete weeds, provided non-disruptive practices are applied.
机译:农业研究必须解决复杂的问题,如可持续种植系统的设计。系统实验是解决这一挑战的创新方法,并通过DeBaeke等人提出了迭代设计年度种植系统的框架。 (2009)。然而,不考虑一些其他裁剪系统的特异性。果园是由旨在生产特定设计和管理的新鲜水果的草和树木制成的复杂多年生yloecosystems。为了识别果园的特殊性并使设计框架适应这种多年生系统,我们使用了两种果园研究旨在减少温带(Apple,System实验)和热带(柑橘,农场网络)果制品的农药使用。在设计框架中考虑的具体是:(1)果园的空间异质性与草和树木层,树行和小巷; (2)年轻的非生产性和生产阶段的继承和相互关系; (3)果树作物的永久性限制土壤肥力管理,(4)地面覆盖和(5)害虫防治,特别是对于在果园中完成生物的害虫,可以在几年内积聚重要人群或接种物。在没有休眠季节的热带地区,这尤其如此。 (6)相反,果园栖息地的永久性促进了播种,种植或保护植物组合(例如,地面盖,衬里Hedgerows)来增强保护生物控制和/或竞争杂草,提供了非中断实践。

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