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Optimising spatial distribution of mass-flowering patches at the landscape scale to increase crop pollination

机译:优化mass-flowering的空间分布斑块在景观尺度增加作物授粉

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1. The addition of floral resources is often recommended to improve entomophilous crop pollination. However, implanting new plots of mass-flowering resources in landscapes can have both positive and negative effects on pollinator visitation rates to crops. 2. We investigated the effects of plot characteristics (size and nesting quantities) on the best places to locate new co-flowering plots to optimise crop pollination. First, we parameterised and validated an existing pollination model with field data. We set up experiments to simulate the conversion of random plots into new sunflower fields versus wildflower plots (intended to provide more nesting sites than sunflower fields and co-flowering with sunflower) and quantified the change in pollinator visitation rates to existing target sunflower fields. 3. We predicted a decrease in visitation rates (competition) when floral plots were established next to target fields and an increase in visitation rates (facilitation) when floral plots were established farther away. We identified the competition-facilitation transition distance (CF distance) and the distance at which facilitation was maximal (Fmax distance). We interpreted competition effects as a dilution of pollinators among the floral resources and facilitation effects as an increase in habitat quality, thus supporting bigger pollinator populations. Implanting floral resources that provide more nesting sites, such as wildflower plots versus new sunflower fields, significantly increased facilitation and reduced CF distance (713 m vs. 1,241 m) and Fmax distance (1,138 m vs. 1,788 m). The size of the converted plot did not affect CF or Fmax distance. 4. We predicted a benefit in isolating rather than aggregating multiple sunflower fields in terms of global crop pollination. 5. Synthesis and applications. Our findings highlight the opportunity to optimise the spatial distribution of mass-flowering resources at the landscape scale to enhance crop pollination. We also s
机译:1. 建议提高虫媒的作物授粉。mass-flowering资源景观对传粉者正面和负面的影响探视利率作物。情节特征(大小和嵌套的影响最好的地方找到新的数量)co-flowering情节优化作物授粉。首先,我们parameterised和验证现有的授粉与现场数据模型。实验模拟随机的转换情节到新的向日葵字段和野花情节(为了提供更多的筑巢地点比和co-flowering向日葵字段向日葵)和量化的变化传粉者访问现有目标利率向日葵的领域。当花情节探视利率(竞争)下个目标字段和一个建立了吗探视的增加率(促进)花卉阴谋建立了远了。确定了竞争促进距离距离(CF)和过渡便利化最大(Fmax距离距离)。稀释的植物的传粉者资源和便利的影响增加栖息地质量,从而支持更大传粉者数量。资源网站,提供更多的嵌套野花的情节与新的向日葵字段,显著增加便利和减少CF距离(713和1241)和Fmax距离(1138比1788),转换的大小情节并不影响CF或Fmax距离。预测在隔离而不是受益聚合多个的向日葵田全球农作物授粉。应用程序。优化空间分布的机会mass-flowering资源的格局规模提高农作物授粉。

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