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The contribution of crop-rotation organization in farms to crop-mosaic patterning at local landscape scales

机译:农场的轮作组织对当地景观尺度上的作物镶嵌格局的贡献

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Farming activities are major drivers of the landscape-related ecological patterning because of their multiple influences on both non-arable and arable landscape elements and mosaics. Uncertainties still remain about the way individual farmer decisions and the aggregation of their activities in space contribute to these mosaics at local landscape scales, therefore about possible levers of action in farms for ensuring sustainable landscapes. The general objective of the present study was to give an assessment of the way farms contribute to crop-mosaic patterning at local landscape scales. We developed a method for comparing five contrasted local study cases of agriculture (five farm sets), by combining a statistical modeling of crop-rotation organization in farms, from empirical data, and a crop-mosaic simulation approach, applied in each case. Statistical rules of crop rotation allocation to fields in farms were defined from tests involving the following potential allocation factors: (1) farm household-enterprise, (2) field physical environment and (3) farm territory configuration. The statistical rules set up from each set of factors were implemented in rule-based simulations separately for each of the five local study cases. We used a raster representation of fields (one pixel by field), to concentrate on crop-rotation management-related effects, independently from the shape of fields and of diverse perennial landscape elements. An index of connectedness was measured for each mosaic, and was used as an indicator of crop-clustering effects due to crop-rotation organization in farms. The results showed that crop-clustering effects at local landscape scales differed according to the following factors of crop-mosaic patterning: (a) the spatial distribution of crop-rotation allocation factors over the field mosaic, (b) the specialization of crop rotations to their allocation factors, and (c) the development of crop rotations over time. These results also demonstrated that crop rotations, even if run as regular crop sequences over time, lead to significant year to year crop-mosaic variability. The results finally made explicit the differences between local study cases. We conclude from these results by pinpointing trade-offs to find between farm and landscape management.
机译:农业活动是与景观相关的生态格局的主要驱动力,因为它们对非耕地和耕地景观要素和马赛克都有多重影响。农民个人决策及其在空间中的活动的聚集如何影响当地景观尺度上的这些马赛克仍然存在不确定性,因此农场中为确保可持续景观而可能采取的行动杠杆仍存在不确定性。本研究的总体目标是评估农场对当地景观尺度上的作物-马赛克格局的贡献。我们通过结合经验数据中农场的农作物轮作组织的统计模型和每种情况下应用的作物镶嵌模拟方法,开发了一种方法,用于比较五个对比的当地农业研究案例(五个农场集)。从涉及以下潜在分配因子的测试中定义了农作物轮作分配给农田的统计规则:(1)农场家庭企业,(2)田间自然环境和(3)农场领土配置。在五个区域研究案例中,分别在基于规则的模拟中实施了由每个因素集建立的统计规则。我们使用场的栅格表示(每个场一个像素)来专注于与轮作管理相关的效果,而与场的形状和不同的多年生景观元素无关。测量每个镶嵌物的连通性指数,并用作由于农场中作物轮作组织而产生的集群效应的指标。结果表明,当地景观尺度上的作物聚类效果因作物马赛克图案的以下因素而异:(a)田间镶嵌植物中作物轮作分配因子的空间分布,(b)作物轮作的专业化为它们的分配因子,以及(c)随着时间的推移轮作的发展。这些结果还表明,即使轮作按时间顺序进行,轮作也会导致逐年明显的作物-马赛克变异。结果最终明确了本地研究案例之间的差异。我们从这些结果得出结论,指出了可以在农场管理和景观管理之间进行权衡的地方。

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