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酷热会影响蓝莓花粉营养、蜜蜂健康和植物繁殖。

Extreme heat affects blueberry pollen nutrition, bee health, and plant reproduction.

作者信息

Walters Jenna, Fisher Robin, Sharkey Thomas D, Isaacs Rufus, Santiago James P

机构信息

Department of Entomology, Michigan State University, East Lansing, MI, 48824, USA.

School of Biology and Ecology, University of Maine, Orono, ME, USA.

出版信息

Sci Rep. 2025 Feb 20;15(1):6249. doi: 10.1038/s41598-025-90676-y.

Abstract

Extreme heat events are increasingly common, and if these align with pollen development, they can alter pollen nutrient composition. However, no studies have examined how the timing of heat relative to bud development affects the role of pollen in plant pollination and bee health. To explore this, we exposed highbush blueberry plants to extreme heat (37.5 °C) or normal (25 °C) conditions for 4 h across several floral bud stages. Pollen was analyzed for protein, carbohydrate, and amino acid content. We found that blueberry floral buds vary in their sensitivity to heat, with bud swell being the most heat-sensitive developmental stage with significant reductions in pollen protein, total and several individual amino acids. When pollen from blueberry plants exposed to the same conditions was fed to Osmia lignaria larvae, we found that individuals fed heat-stressed pollen were 7 times more likely to die compared to those fed non-stressed pollen. Blueberry flowers exposed to the same conditions were used for a hand pollination study, where we observed a 39% reduction in fruit set following heat stress at bud swell. This study reveals how extreme heat can disrupt both plant pollination and bee survival through changes in pollen nutritional composition.

摘要

极端高温事件越来越普遍,如果这些事件与花粉发育同步,就会改变花粉的营养成分。然而,尚无研究探讨高温时间相对于芽发育的情况如何影响花粉在植物授粉和蜜蜂健康中的作用。为了探究这一点,我们在几个花芽阶段将高丛蓝莓植株置于极端高温(37.5°C)或正常(25°C)条件下4小时。对花粉的蛋白质、碳水化合物和氨基酸含量进行了分析。我们发现蓝莓花芽对高温的敏感性各不相同,芽膨大期是对高温最敏感的发育阶段,此时花粉蛋白质、总氨基酸和几种个别氨基酸显著减少。当将处于相同条件下的蓝莓植株的花粉喂给红木蜂幼虫时,我们发现,与喂食未受胁迫花粉的幼虫相比,喂食受高温胁迫花粉的幼虫死亡可能性高7倍。将处于相同条件下的蓝莓花用于人工授粉研究,我们观察到在芽膨大期受到高温胁迫后,坐果率降低了39%。这项研究揭示了极端高温如何通过改变花粉营养成分来扰乱植物授粉和蜜蜂生存。

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