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Identifying the landscape drivers of agricultural insecticide use leveraging evidence from 100000 fields

机译:利用十万个田地的证据确定农业杀虫剂使用的景观驱动因素

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摘要

Agricultural landscape intensification has enabled food production to meet growing demand. However, there are concerns that more simplified cropland with lower crop diversity, less noncrop habitat, and larger fields results in increased use of pesticides due to a lack of natural pest control and more homogeneous crop resources. Here, we use data on crop production and insecticide use from over 100,000 field-level observations from Kern County, California, encompassing the years 2005–2013 to test if crop diversity, field size, and cropland extent affect insecticide use in practice. Overall, we find that higher crop diversity does reduce insecticide use, but the relationship is strongly influenced by the differences in crop types between diverse and less diverse landscapes. Further, we find insecticide use increases with increasing field size. The effect of cropland extent is distance-dependent, with nearby cropland decreasing insecticide use, whereas cropland further away increases insecticide use. This refined spatial perspective provides unique understanding of how different components of landscape simplification influence insecticide use over space and for different crops. Our results indicate that neither the traditionally conceived “simplified” nor “complex” agricultural landscape is most beneficial to reducing insecticide inputs; reality is far more complex.
机译:农业景观集约化使粮食生产能够满足日益增长的需求。然而,由于缺乏自然害虫控制和更均匀的农作物资源,人们更加担心耕地的简化,作物多样性的降低,非农作物栖息地的减少以及田地的扩大导致农药的使用增加。在这里,我们使用从加利福尼亚州克恩县(Kern County)(加利福尼亚州2005-2013年)进行的100,000多个田间观测得出的作物产量和杀虫剂使用数据,以检验作物的多样性,田间面积和耕地范围在实践中是否会影响杀虫剂的使用。总体而言,我们发现较高的农作物多样性确实减少了杀虫剂的使用,但是这种关系受到不同和较少多样性景观之间作物类型差异的强烈影响。此外,我们发现杀虫剂的使用随着田间规模的增加而增加。农田范围的影响取决于距离,附近的农田减少了杀虫剂的使用,而更远的农田增加了杀虫剂的使用。这种精妙的空间观点使人们对景观简化的不同组成部分如何影响空间和不同农作物的杀虫剂使用产生了独特的理解。我们的结果表明,传统上设想的“简化”或“复杂”的农业景观都没有最有利于减少杀虫剂的投入。现实要复杂得多。

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