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Choosing cover crops to enhance ecological services in orchards: a multiple criteria and systemic approach applied to tropical areas

机译:选择封面作物以增强果园的生态服务:适用于热带地区的多标准和系统方法

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Conventional agriculture is based on a high level of chemical inputs such as pesticides and fertilisers, leading to serious environmental impacts, health risks and loss of biodiversity. Pesticide reduction is a priority for intensive agricultural systems such as orchards. Reintroducing biodiversity in single crop systems can enhance biological regulations, and contribute to reduce the use of chemicals and to provide additional services such as run-off and erosion control. In tropical wet areas, weed control is difficult to manage without herbicides especially when orchards are not located in easily mechanised areas and when labour force is costly. Cover plants can be easily introduced in orchards and could be efficient in weed control and other functions. Based on this assumption, we developed a specific approach for the choice of adapted cover plants in single crop orchards to control weeds and provide additional ecological services. The approach was undertaken on citrus orchards in the French West Indies. A multicriteria evaluation grid was built to select an "optimal" cover crop. In both Martinique and Guadeloupe, 202 species were first selected in the local flora, and tested on vegetative characteristics. Specific criteria were secondly defined relating to seed availability (limitation of alien species introduction), farm constraints and regulations (no invasive species). Specific features were then determined according to the agronomic potential and ecological services for an optimal cover plant. Criteria included weed control, the ability to control runoff and erosion, water and nutrient competition, pests and natural enemies hosting capacity. The whole evaluation grid combines data from literature, expert assessment and experimental measurements. Optimum cover crop functional groups were defined according to agrosystem and associated objectives. In Guadeloupe, a participatory approach led first to the selection of Fabaceae (Neonotonia wightii) characterized by high auxiliaries hosting services. These services were assessed using a bio-indicator (family of phytoseiidae). In Martinique, the need for a high covering index associated with a low production led to the selection of grasses: Urochloa mozambicensis and three Paspalum species. The multicriteria grid can be used as a generic tool to select cover plants and can be easily adapted to apply to various cropping systems. Its use for banana cropping system is currently in progress. However, the concept of an optimal single cover plant remains difficult to achieve and the elaboration of a multi-specific cover system is often required to reach the desired efficiency.
机译:常规农业基于高水平的化学投入,如农药和肥料,导致严重的环境影响,健康风险和生物多样性丧失。农药减少是果园等强化农业系统的优先事项。单一作物系统中重新引入生物多样性可以提高生物学规定,并有助于减少化学品的使用,并提供额外的服务,如耗尽和侵蚀控制。在热带潮湿的地区,杂草控制难以在没有除草剂的情况下管理,特别是当果园不在易于机械化区域以及劳动力成本高昂的时候。覆盖厂可以在果园中轻松引入植物,并且可以在杂草控制和其他功能中有效。基于这一假设,我们开发了一种特定的方法,可以选择单一作物果园中的适应覆盖厂,以控制杂草并提供额外的生态服务。该方法是在法国西印度群岛的柑橘果园进行的。建立了多标准评估网格,以选择“最佳”覆盖作物。在Martinique和Guadeloupe两者中,首先在当地的植物群中选择202种物种,并在营养特征上进行测试。特定标准是与种子可用性(外星物种的限制),农场限制和法规(无侵入物种)有关的具体标准。然后根据最佳覆盖厂的农艺潜力和生态服务确定具体特征。标准包括杂草控制,控制径流和侵蚀,水和养分竞争,害虫和自然敌人的能力的能力。整个评估网格将来自文献,专家评估和实验测量的数据结合起来。优化覆盖作物官能团根据农毒系统和相关目标定义。在瓜德罗普州,参与式方法首先选择了Fabaceae(NeoNotonia Wightii),其特征在于托管服务的高辅助。使用生物指示剂(Phytoseiidae家族)评估这些服务。在马提尼克岛,需要与低产量相关的高覆盖率指数导致选择草:urochloa mozambicensis和三种堆叠种类。多标准电网可用作选择覆盖设备的通用工具,并且可以容易地适应适用于各种裁剪系统。它用于香蕉种植系统目前正在进行中。然而,最佳单覆盖厂的概念仍然难以实现,并且通常需要达到多种特异性覆盖系统来达到所需的效率。

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