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Sensitivity of plants to changing atmospheric CO2 concentration: from the geological past to the next century

机译:植物对大气二氧化碳浓度变化的敏感性:从过去的地质学到下个世纪

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摘要

The rate of CO2 assimilation by plants is directly influenced by the concentration of CO2 in the atmosphere, ca. As an environmental variable, ca also has a unique global and historic significance. Although relatively stable and uniform in the short term, global ca has varied substantially on the timescale of thousands to millions of years, and currently is increasing at seemingly an unprecedented rate. This may exert profound impacts on both climate and plant function. Here we utilise extensive datasets and models to develop an integrated, multi-scale assessment of the impact of changing ca on plant carbon dioxide uptake and water use. We find that, overall, the sensitivity of plants to rising or falling ca is qualitatively similar across all scales considered. It is characterised by an adaptive feedback response that tends to maintain 1 − ci/ca, the relative gradient for CO2 diffusion into the leaf, relatively constant. This is achieved through predictable adjustments to stomatal anatomy and chloroplast biochemistry. Importantly, the long-term response to changing ca can be described by simple equations rooted in the formulation of more commonly studied short-term responses.
机译:植物对二氧化碳的吸收速率直接受大气中二氧化碳浓度的影响。作为环境变量,ca也具有独特的全球和历史意义。尽管短期内相对稳定和统一,但全球ca在数千到数百万年的时间范围内已经发生了很大变化,并且目前正以前所未有的速度增长。这可能会对气候和植物功能产生深远影响。在这里,我们利用广泛的数据集和模型来开发一个综合的,多尺度的评估,以评估ca的变化对植物二氧化碳吸收和用水的影响。我们发现,总体而言,在所有考虑的尺度上,植物对钙升高或降低的敏感性在质上都相似。它的特征在于自适应反馈响应,该响应趋于保持1-ci / ca,即CO2扩散到叶片中的相对梯度相对恒定。这是通过对气孔解剖结构和叶绿体生物化学的可预测调整来实现的。重要的是,对ca变化的长期响应可以通过植根于更常用的短期响应公式的简单方程式来描述。

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