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Modelling the effect of spatially variable soil properties on the distribution of weeds

机译:模拟空间可变土壤特性对杂草分布的影响

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摘要

The patch spraying of weeds is an area of precision agriculture that has had limited uptake. This is in part due to the perceived risks associated with not controlling individual weeds. Nevertheless, the inherent patchiness of weeds makes them ideal targets for site-specific management. We propose using a mechanistic model to identify areas of a field vulnerable to invasion by weeds, allowing the creation of treatment maps that are risk averse. We developed a spatially-explicit mechanistic model of the life-cycle of Alopecurus myosuroides, a particularly problematic weed of cereal crops in the UK. In the model, soil conditions which vary across the field, affect the life-cycle of A. myosuroides. The model was validated using data on the within-field distribution of A. myosuroides on commercial farms and its co-location with soil properties. We demonstrate the important role played by soil properties in determining the within-field distribution of A. myosuroides. We also show that scale-dependent correlations between A. myosuroides and soil properties observed in the field are an emergent property of the modelled dynamics of the A. myosuroides life-cycle. Our model could therefore support effective site-specific management of A. myosuroides within fields by predicting areas that are vulnerable to A. myosuroides. The usefulness of this model in its ability to predict patch locations for A. myosuroides highlights the possibility of using similar models for other species where data are available on the response of the species to various soil properties.
机译:杂草的斑块喷洒是精密农业的一个领域,其吸收受到限制。这部分是由于与不控制单个杂草相关的感知风险。尽管如此,杂草固有的斑驳性使它们成为特定地点管理的理想目标。我们建议使用一种机械模型来识别易受杂草入侵的田地区域,从而创建可避免风险的治疗图。我们开发了Aurocurus myosuroides(在英国谷物作物中特别成问题的杂草)生命周期的空间明确机理模型。在该模型中,整个田间土壤条件各异,影响了神经节叶螨的生命周期。该模型已使用关于商业养殖场中的A. myosuroides的田间分布及其与土壤特性的共置数据进行了验证。我们证明了土壤性质在确定A. myosuroides的田间分布中所起的重要作用。我们还表明,A。myosuroides生命周期中的动力学模型的新兴属性是A. myosuroides与土壤特性之间的尺度相关性。因此,我们的模型可以通过预测易受神经节气单胞菌侵害的区域,来支持对田间神经节律杆菌进行现场特定的管理。该模型在预测黑麦芽孢杆菌的斑块位置的能力方面的实用性凸显了对其他物种使用类似模型的可能性,其中可获得有关该物种对各种土壤特性的响应的数据。

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