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Changes in floral bouquets from compound-specific responses to increasing temperatures

机译:从特定于化合物的响应到温度升高,花束的变化

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We addressed the potential effects of changes in ambient temperature on the profiles of volatile emissions from flowers and tested whether warming could induce significant quantitative and qualitative changes in floral emissions, which would potentially interfere with plant-pollinator chemical communication. We measured the temperature responses of floral emissions of various common species of Mediterranean plants using dynamic headspace sampling and used GC-MS to identify and quantify the emitted terpenes. Floral emissions increased with temperature to an optimum and thereafter decreased. The responses to temperature modeled here predicted increases in the rates of floral terpene emission of 0.03-1.4-fold, depending on the species, in response to an increase of 1 degrees C in the mean global ambient temperature. Under the warmest projections that predict a maximum increase of 5 degrees C in the mean temperature of Mediterranean climates in the Northern Hemisphere by the end of the century, our models predicted increases in the rates of floral terpene emissions of 0.34-9.1-fold, depending on the species. The species with the lowest emission rates had the highest relative increases in floral terpene emissions with temperature increases of 1-5 degrees C. The response of floral emissions to temperature differed among species and among different compounds within the species. Warming not only increased the rates of total emissions, but also changed the ratios among compounds that constituted the floral scents, i.e. increased the signal for pollinators, but also importantly altered the signal fidelity and probability of identification by pollinators, especially for specialists with a strong reliance on species-specific floral blends.
机译:我们研究了环境温度变化对花卉挥发性排放物的潜在影响,并测试了变暖是否会导致花卉排放物发生重大的数量和质量变化,从而可能干扰植物授粉媒介的化学通讯。我们使用动态顶空进样测量了地中海常见植物各种花卉排放物的温度响应,并使用GC-MS鉴定和量化了排放的萜烯。花香排放物随温度升高至最佳状态,然后降低。在这里建模的温度响应预测,由于全球平均环境温度每升高1摄氏度,花卉萜烯排放速率将增加0.03-1.4倍,具体取决于物种。根据最温暖的预测,到本世纪末,北半球地中海气候的平均温度最高增加5摄氏度,我们的模型预测花萜的排放速率增加0.34-9.1倍,具体取决于在物种上。排放速率最低的物种在温度升高1-5摄氏度时花萜烯排放的相对增加最高。花排放对温度的响应在物种之间以及物种内不同化合物之间有所不同。变暖不仅增加了总排放量,而且改变了构成花香的化合物之间的比率,即增加了授粉媒介的信号,而且重要地改变了信号的保真度和被授粉媒介识别的可能性,特别是对于具有较强气味的专家而言。依赖特定物种的花卉混纺。

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