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首页> 外文期刊>The Journal of Applied Ecology >Effects of agricultural management practices on earthworm populations and crop yield: validation and application of a mechanistic modelling approach
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Effects of agricultural management practices on earthworm populations and crop yield: validation and application of a mechanistic modelling approach

机译:农业管理实践的影响蚯蚓种群和作物产量:验证和应用的机械造型方法

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摘要

There is little consensus on how agriculture will meet future food demands sustainably. Soils and their biota play a crucial role by mediating ecosystem services that support agricultural productivity. However, a multitude of site-specific environmental factors and management practices interact to affect the ability of soil biota to perform vital functions, confounding the interpretation of results from experimental approaches. Insights can be gained through models, which integrate the physiological, biological and ecological mechanisms underpinning soil functions. We present a powerful modelling approach for predicting how agricultural management practices (pesticide applications and tillage) affect soil functioning through earthworm populations. By combining energy budgets and individual-based simulation models, and integrating key behavioural and ecological drivers, we accurately predict population responses to pesticide applications in different climatic conditions. We use the model to analyse the ecological consequences of different weed management practices. Our results demonstrate that an important link between agricultural management (herbicide applications and zero, reduced and conventional tillage) and earthworms is the maintenance of soil organic matter (SOM). We show how zero and reduced tillage practices can increase crop yields while preserving natural ecosystem functions. This demonstrates how management practices which aim to sustain agricultural productivity should account for their effects on earthworm populations, as their proliferation stimulates agricultural productivity.Synthesis and applications. Our results indicate that conventional tillage practices have longer term effects on soil biota than pesticide control, if the pesticide has a short dissipation time. The risk of earthworm populations becoming exposed to toxic pesticides will be reduced under dry soil conditions. Similarly, an increase in soil organic matter could increase the recovery rate of earthworm populations. However, effects are not necessarily additive and the impact of different management practices on earthworms depends on their timing and the prevailing environmental conditions. Our model can be used to determine which combinations of crop management practices and climatic conditions pose least overall risk to earthworm populations. Linking our model mechanistically to crop yield models would aid the optimization of crop management systems by exploring the trade-off between different ecosystem services.
机译:几乎没有共识农业将如何可持续地满足未来粮食需求。调解他们的生物群起到至关重要的作用支持农业的生态系统服务生产力。特定环境因素和管理实践影响交互土壤生物的执行能力至关重要的功能,混杂的结果的解释实验方法。通过模型的集成生理、生物和生态土壤功能机制支撑。提供一个强大的建模方法预测农业管理实践(农药应用程序和耕作)影响土壤功能通过蚯蚓的数量。结合能源预算和基于单独的仿真模型和集成的关键行为和生态的司机,我们准确预测人口对农药的反应应用程序在不同的气候条件。使用该模型来分析生态不同的杂草管理的后果实践。重要的农业管理之间的联系(除草剂应用程序和零,减少,传统耕作制)和蚯蚓维护土壤有机质(SOM)。实践可以免耕或少耕技术如何提高作物产量,同时保存了自然生态系统的功能。管理实践旨在维持农业生产力应该占对蚯蚓的数量的影响,因为他们的增殖刺激农业生产力。结果表明,常规耕作长期实践对土壤生物的影响农药控制,如果农药消耗时间短。人群接触到有毒农药在干燥的土壤条件下将减少。类似地,土壤有机质的增加可以增加蚯蚓的回收率人群。添加剂和不同管理的影响实践蚯蚓取决于他们的时机和盛行的环境条件。模型可以用来确定哪些组合作物管理措施和气候条件对蚯蚓构成整体风险最小人群。作物产量模型将援助的优化通过探索作物管理系统不同的生态系统服务之间的权衡。

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