Agroecology: Principles for the Conversion and Redesign of Farming Systems

C. Nicholls, M. Altieri, L. Vázquez
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引用次数: 132

Abstract

Modern agroecosystems require systemic change, but new redesigned farming systems will not emerge from simply implementing a set of practices (rotations, composting, cover cropping, etc.) but rather from the application of already well defined agroecological principles. These principles can be applied using various practices and strategies, each having different effects on productivity, stability and resiliency of the target farming system. By breaking the monoculture nature of farming systems, agroecological diversification aims at mimicking ecological processes leading to optimal nutrient cycling and organic matter turnover, soil biological activation, closed energy flows, water and soil conservation and balanced pest-natural enemy populations. All these processes are key maintaining the agroecosystem’s health, productivity and its self-sustaining capacity. By enhancing functional biodiversity, a major goal of the conversion process is achieved: strengthening the weak ecological functions in the agroecosystem, allowing farmers to gradually eliminate inputs altogether by relying instead on ecological processes and interactions.
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农业生态学:农业系统转换和重新设计的原则
现代农业生态系统需要系统性的改变,但新的重新设计的农业系统不会仅仅通过实施一套实践(轮作、堆肥、覆盖种植等)而产生,而是来自已经明确定义的农业生态原则的应用。这些原则可以通过各种做法和战略加以应用,每种做法和战略对目标农业系统的生产力、稳定性和复原力都有不同的影响。通过打破农业系统的单一栽培性质,农业生态多样化旨在模仿生态过程,从而实现最佳的养分循环和有机质周转、土壤生物激活、封闭的能量流动、水土保持和平衡的害虫-天敌种群。所有这些过程都是维持农业生态系统健康、生产力及其自我维持能力的关键。通过增强功能性生物多样性,实现了转换过程的一个主要目标:加强农业生态系统中的弱生态功能,使农民能够通过依赖生态过程和相互作用来逐步消除全部投入。
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