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群体水平的压力对熊蜂授粉服务影响的证据不明确。

Equivocal Evidence for Colony Level Stress Effects on Bumble Bee Pollination Services.

作者信息

Greenop Arran, Mica-Hawkyard Nevine, Walkington Sarah, Wilby Andrew, Cook Samantha M, Pywell Richard F, Woodcock Ben A

机构信息

UK Centre for Ecology & Hydrology, Maclean Building, Crowmarsh Gifford, Wallingford, Oxfordshire OX10 8BB, UK.

Lancaster Environment Centre, Library Avenue, Lancaster University, Lancaster LA1 4YQ, UK.

出版信息

Insects. 2020 Mar 18;11(3):191. doi: 10.3390/insects11030191.

Abstract

Climate change poses a threat to global food security with extreme heat events causing drought and direct damage to crop plants. However, by altering behavioural or physiological responses of insects, extreme heat events may also affect pollination services on which many crops are dependent. Such effects may potentially be exacerbated by other environmental stresses, such as exposure to widely used agro-chemicals. To determine whether environmental stressors interact to affect pollination services, we carried out field cage experiments on the buff-tailed bumble bee (). Using a Bayesian approach, we assessed whether heat stress (colonies maintained at an ambient temperature of 25 °C or 31 °C) and insecticide exposure (5 ng g of the neonicotinoid insecticide clothianidin) could induce behavioural changes that affected pollination of faba bean (). Only the bumble bee colonies and not the plants were exposed to the environmental stress treatments. Bean plants exposed to heat-stressed bumble bee colonies (31 °C) had a lower proportional pod set compared to colonies maintained at 25 °C. There was also weak evidence that heat stressed colonies caused lower total bean weight. Bee exposure to clothianidin was found to have no clear effect on plant yields, either individually or as part of an interaction. We identified no effect of either colony stressor on bumble bee foraging behaviours. Our results suggest that extreme heat stress at the colony level may impact on pollination services. However, as the effect for other key yield parameters was weaker (e.g. bean yields), our results are not conclusive. Overall, our study highlights the need for further research on how environmental stress affects behavioural interactions in plant-pollinator systems that could impact on crop yields.

摘要

气候变化对全球粮食安全构成威胁,极端高温事件会导致干旱并直接损害农作物。然而,极端高温事件可能会通过改变昆虫的行为或生理反应,进而影响许多作物所依赖的授粉服务。其他环境压力,如接触广泛使用的农用化学品,可能会加剧这种影响。为了确定环境压力因素是否相互作用以影响授粉服务,我们对 buff-tailed 大黄蜂( )进行了田间笼养实验。我们采用贝叶斯方法,评估热应激(蜂群维持在 25℃或 31℃的环境温度下)和接触杀虫剂(5 纳克/克的新烟碱类杀虫剂噻虫胺)是否会引发行为变化,从而影响蚕豆( )的授粉。只有大黄蜂蜂群而非植物接受环境压力处理。与维持在 25℃的蜂群相比,接触热应激大黄蜂蜂群(31℃)的蚕豆植株结荚比例较低。也有微弱证据表明,热应激蜂群导致蚕豆总重量降低。结果发现,无论是单独接触噻虫胺还是作为相互作用的一部分,蜜蜂接触噻虫胺对植物产量均无明显影响。我们未发现任何一种蜂群压力因素对大黄蜂觅食行为有影响。我们的研究结果表明,蜂群层面的极端热应激可能会影响授粉服务。然而,由于对其他关键产量参数的影响较弱(如蚕豆产量),我们的研究结果并不具有决定性。总体而言,我们的研究强调需要进一步研究环境压力如何影响植物 - 传粉者系统中的行为相互作用,而这种相互作用可能会影响作物产量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d9e2/7142647/0b83a6668981/insects-11-00191-g001.jpg

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