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本地蜜蜂缓冲了气候变暖对西瓜作物中蜜蜂授粉的负面影响。

Native bees buffer the negative impact of climate warming on honey bee pollination of watermelon crops.

机构信息

Department of Entomology, Rutgers, The State University of New Jersey, 93 Lipman Drive, New Brunswick, NJ, 08901, USA.

出版信息

Glob Chang Biol. 2013 Oct;19(10):3103-10. doi: 10.1111/gcb.12264. Epub 2013 Jul 14.

Abstract

If climate change affects pollinator-dependent crop production, this will have important implications for global food security because insect pollinators contribute to production for 75% of the leading global food crops. We investigate whether climate warming could result in indirect impacts upon crop pollination services via an overlooked mechanism, namely temperature-induced shifts in the diurnal activity patterns of pollinators. Using a large data set on bee pollination of watermelon crops, we predict how pollination services might change under various climate change scenarios. Our results show that under the most extreme IPCC scenario (A1F1), pollination services by managed honey bees are expected to decline by 14.5%, whereas pollination services provided by most native, wild taxa are predicted to increase, resulting in an estimated aggregate change in pollination services of +4.5% by 2099. We demonstrate the importance of native biodiversity in buffering the impacts of climate change, because crop pollination services would decline more steeply without the native, wild pollinators. More generally, our study provides an important example of how biodiversity can stabilize ecosystem services against environmental change.

摘要

如果气候变化影响到依赖传粉者的作物生产,这将对全球粮食安全产生重要影响,因为昆虫传粉者为全球 75%的主要粮食作物的生产做出了贡献。我们研究了气候变暖是否会通过一个被忽视的机制,即传粉者昼夜活动模式的温度诱导变化,对作物传粉服务产生间接影响。利用关于西瓜作物蜜蜂授粉的大量数据集,我们预测了在各种气候变化情景下授粉服务可能会如何变化。我们的研究结果表明,在最极端的 IPCC 情景 (A1F1) 下,管理的蜜蜂授粉服务预计将下降 14.5%,而大多数本地、野生类群提供的授粉服务预计将增加,到 2099 年,授粉服务的总变化估计为+4.5%。我们证明了本地生物多样性在缓冲气候变化影响方面的重要性,因为如果没有本地、野生的传粉者,作物授粉服务的下降幅度将更加陡峭。更一般地说,我们的研究提供了一个重要的例子,说明生物多样性如何能够稳定生态系统服务以应对环境变化。

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