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Pollinators, pests and soil properties interactively shape oilseed rape yield

机译:授粉媒介,害虫和土壤特性相互作用地影响油菜的产量

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摘要

Pollination, pest control, and soil properties are well known to affect agricultural production. These factors might interactively shape crop yield, but most studies focus on only one of these factors at a time. We used 15 winter oilseed rape (Brass/co napus L.) fields in Sweden to study how variation among fields in pollinator visitation rates, pollen beetle attack rates and soil properties (soil texture, pH and organic carbon) interactively determined crop yield. The fields were embedded in a landscape gradient with contrasting proportions of arable and semi-natural land. In general, pollinator visitation and pest levels were negatively correlated and varied independently of soil properties. This may reflect that above- and below-ground processes react at landscape and local spatial scales, respectively. The above-ground biotic interactions and below-ground abiotic factors interactively affected crop yield. Pollinator visitation was the strongest predictor positively associated with yield. High soil pH also benefited yield, but only at tower pest loads. Surprisingly, high pest loads increased the pollinator benefits for yield. Implementing management plans at different spatial scales can create synergies among above- and below-ground ecosystem processes, hut both scales are needed given that different processes react al different sptitial scales.
机译:授粉,害虫控制和土壤特性众所周知会影响农业生产。这些因素可能以交互方式影响农作物的产量,但是大多数研究一次只关注其中一个因素。我们使用了瑞典的15个冬季油菜(Brass / co napus L.)田地,以研究授粉媒介访视率,花粉甲虫侵袭率和土壤特性(土壤质地,pH和有机碳)之间的变化如何交互地决定了作物的产量。这些田地被埋在景观梯度中,耕地和半自然土地的比例不同。通常,传粉媒介访视和害虫水平呈负相关,且与土壤性质无关。这可能反映出地上和地下过程分别在景观和局部空间尺度上反应。地上生物相互作用和地上非生物因子相互作用影响作物产量。授粉媒介访视是与产量成正比的最强预测因子。高土壤pH值也有利于增产,但仅限于塔害虫负荷下。令人惊讶的是,高害虫负荷增加了授粉媒介的增产收益。在不同的空间尺度上实施管理计划可以在地上和地下生态系统过程之间产生协同作用,但是鉴于不同的过程对不同的空间尺度有不同的反应,因此需要两个尺度。

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