首页> 外文期刊>Plant Science: An International Journal of Experimental Plant Biology >Mechanistic insights on the responses of plant and ecosystem gas exchange to global environmental change: lessons from biosphere 2.
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Mechanistic insights on the responses of plant and ecosystem gas exchange to global environmental change: lessons from biosphere 2.

机译:关于植物和生态系统气体交换对全球环境变化的响应的机械观点:来自生物圈的经验教训2。

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Scaling up leaf processes to canopy/ecosystem level fluxes is critical for examining feedbacks between vegetation and climate. Collectively, studies from Biosphere 2 Laboratory have provided important insight of leaf-to-ecosystem investigations of multiple environmental parameters that were not before possible in enclosed or field studies. B2 L has been a testing lab for the applicability of new technologies such as spectral approaches to detect spatial and temporal changes in photosynthesis within canopies, or for the development of cavity ring-down isotope applications for ecosystem evapotranspiration. Short and long term changes in atmospheric CO 2, drought or temperature allowed for intensive investigation of the interactions between photosynthesis and leaf, soil and ecosystem respiration. Experiments conducted in the rainforest biome have provided some of the most comprehensive dataset to date on the effects of climate change variables on tropical ecosystems. Results from these studies have been later corroborated in natural rainforest ecosystems and have improved the predictive capabilities of models that now show increased resilience of tropics to climate change. Studies of temperature and CO 2 effects on ecosystem respiration and its leaf and soil components have helped reconsider the use of simple first-order kinetics for characterizing respiration in models. The B2 L also provided opportunities to quantify the rhizosphere priming effect, or establish the relationships between net primary productivity, atmospheric CO 2 and isoprene emissions.
机译:将叶子过程扩大到冠层/生态系统水平的通量对于检查植被和气候之间的反馈至关重要。总体而言,生物圈2实验室的研究提供了从叶到生态系统研究多个环境参数的重要见解,而封闭或田间研究以前是不可能的。 B2 L一直是测试实验室,以测试诸如光谱方法等新技术的适用性,以检测冠层内光合作用的时空变化,或开发用于生态系统蒸散的腔衰荡同位素应用。大气中CO 2的短期和长期变化,干旱或温度允许深入研究光合作用与叶片,土壤和生态系统呼吸之间的相互作用。在雨林生物群落中进行的实验提供了迄今为止有关气候变化变量对热带生态系统影响的一些最全面的数据集。这些研究的结果后来在天然雨林生态系统中得到证实,并提高了模型的预测能力,这些模型现在显示出热带地区对气候变化的适应能力增强。温度和CO 2对生态系统呼吸作用及其叶和土壤成分的影响的研究有助于重新考虑使用简单的一阶动力学来表征模型中的呼吸作用。 B2 L还提供了量化根际启动效应或建立净初级生产力,大气CO 2和异戊二烯排放之间关系的机会。

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