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首页> 外文期刊>The Journal of Applied Ecology >Agricultural intensification with seasonal fallow land promotes high bee diversity in Afrotropical drylands
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Agricultural intensification with seasonal fallow land promotes high bee diversity in Afrotropical drylands

机译:季节性休耕地的农业集约化促进了非洲热带旱地蜜蜂的高度多样性

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Abstract The exponential increase in the human population in tandem with increased food demand has caused agriculture to be the global‐dominant form of land use. Afrotropical drylands are currently facing the loss of natural savannah habitats and agricultural intensification with largely unknown consequences for bees. Here we investigate the effects of agricultural intensification on bee assemblages in the Afrotropical drylands of northern Tanzania. We disentangled the direct effects of agricultural intensification and temperature on bee richness from indirect effects mediated by changes in floral resources. We collected data from 24 study sites representing three levels of management intensity (natural savannah, moderate intensive and highly intensive agriculture) spanning an extensive gradient of mean annual temperature (MAT) in northern Tanzania. We used ordinary linear models and path analysis to test the effects of agricultural intensity and MAT on bee species richness, bee species composition and body‐size variation of bee communities. We found that bee species richness increased with agricultural intensity and with increasing temperature. The effects of agricultural intensity and temperature on bee species richness were mediated by the positive effects of agriculture and temperature on the richness of floral resources used by bees. During the off‐growing season, agricultural land was characterized by an extensive period of fallow land holding a very high density of flowering plants with unique bee species composition. The increase in bee diversity in agricultural habitats paralleled an increasing variation of bee body sizes with agricultural intensification that, however, diminished in environments with higher temperatures. Synthesis and applications. Our study reveals that bee assemblages in Afrotropical drylands benefit from agricultural intensification in the way it is currently practiced. However, further land‐use intensification, including year‐round irrigated crop monocultures and excessive use of agrochemicals, is likely to exert a negative impact on bee diversity and pollination services, as reported in temperate regions. Moreover, several bee species were restricted to natural savannah habitats. To conserve bee communities and guarantee pollination services in the region, a mixture of savannah and agriculture, with long periods of fallow land should be maintained.
机译:摘要人类指数增加人口与粮食需求增加造成农业地理全球主导的土地利用形式。目前面临的天然草原栖息地和农业集约化主要对蜜蜂未知的后果。研究农业的影响强化对蜜蜂的组合Afrotropical坦桑尼亚北部的旱地。树立农业的直接影响集约化和温度对蜜蜂丰富性从间接影响的变化介导的花卉资源。网站代表三个级别的管理强度(天然草原,中度强化和高度集约农业)生成一个广泛的年平均温度梯度在坦桑尼亚北部(垫)。线性模型和路径分析测试农业强度和垫对蜜蜂的影响蜜蜂物种丰富度,物种组成身体重心蜜蜂社区的大小变化。蜜蜂物种丰富度增加农业和强度增加温度。强度和温度对蜜蜂物种丰富度由的积极作用农业和温度上的丰富花蜜蜂所使用的资源。优先生长季节,农业用地特点是一个广泛的休耕期土地控股开花非常高的密度植物具有独特的蜜蜂种类成分。蜜蜂增加多样性的农业栖息地的变化蜜蜂的身体大小和农业集约化然而,在环境中减少更高的温度。我们的研究显示,蜜蜂组合Afrotropical旱地农业中获益强化目前的方式练习。强化,包括年一轮灌溉单一作物和过度使用农用化学品,可能会产生负面的对蜜蜂的影响多样性和授粉服务,在温带地区报道。几只蜜蜂物种自然受到限制草原栖息地。并保证授粉服务在该地区,萨凡纳的混合物和农业领域,而长时间的休耕土地应该保持。

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