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Plant responses to elevated temperatures: a field study on phenological sensitivity and fitness responses to simulated climate warming.

机译:植物对升高的温度的响应:对模拟气候变暖的物候敏感性和适应性响应的田野研究。

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Significant changes in plant phenology have been observed in response to increases in mean global temperatures. There are concerns that accelerated phenologies can negatively impact plant populations. However, the fitness consequence of changes in phenology in response to elevated temperature is not well understood, particularly under field conditions. We address this issue by exposing a set of recombinant inbred lines of Arabidopsis thaliana to a simulated global warming treatment in the field. We find that plants exposed to elevated temperatures flower earlier, as predicted by photothermal models. However, contrary to life-history trade-off expectations, they also flower at a larger vegetative size, suggesting that warming probably causes acceleration in vegetative development. Although warming increases mean fitness (fruit production) by ca. 25%, there is a significant genotype-by-environment interaction. Changes in fitness rank indicate that imminent climate change can cause populations to be maladapted in their new environment, if adaptive evolution is limited. Thus, changes in the genetic composition of populations are likely, depending on the species' generation time and the speed of temperature change. Interestingly, genotypes that show stronger phenological responses have higher fitness under elevated temperatures, suggesting that phenological sensitivity might be a good indicator of success under elevated temperature at the genotypic level as well as at the species level.
机译:已观察到响应于全球平均温度升高,植物物候发生了显着变化。有人担心,物候加速可能会对植物种群产生负面影响。但是,人们对响应于高温的物候变化的适应性后果还没有很好地理解,特别是在野外条件下。通过将拟南芥的一组重组自交系暴露于该领域的模拟全球变暖处理中,我们解决了这个问题。我们发现,暴露于高温的植物如光热模型所预测的早开花。但是,与生命历史的权衡取舍相反,它们还以更大的植物生长,这表明变暖可能导致植物生长加速。尽管变暖使平均健康度(水果产量)提高了约。 25%的环境存在显着的基因型相互作用。适应等级的变化表明,如果适应性进化受到限制,即将到来的气候变化可能会导致人们在新环境中适应不良。因此,种群的遗传组成可能会发生变化,这取决于物种的产生时间和温度变化的速度。有趣的是,表现出更强的物候反应的基因型在升高的温度下具有更高的适应性,这表明物候敏感性可能是在基因型水平和物种水平下在高温下成功的良好指示。

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