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E-photosynthesis: a comprehensive modeling approach to understand chlorophyll fluorescence transients and other complex dynamic features of photosynthesis in fluctuating light

机译:电子光合作用:了解叶绿素荧光瞬变和波动中光合作用的其他复杂动态特征的综合建模方法

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摘要

Plants are exposed to a temporally and spatially heterogeneous environment, and photosynthesis is well adapted to these fluctuations. Understanding of the complex, non-linear dynamics of photosynthesis in fluctuating light requires novel-modeling approaches that involve not only the primary light and dark biochemical reactions, but also networks of regulatory interactions. This requirement exceeds the capacity of the existing molecular models that are typically reduced to describe a partial process, dynamics of a specific complex or its particular dynamic feature. We propose a concept of comprehensive model that would represent an internally consistent, integral framework combining information on the reduced models that led to its construction. This review explores approaches and tools that exist in engineering, mathematics, and in other domains of biology that can be used to develop a comprehensive model of photosynthesis. Equally important, we investigated techniques by which one can rigorously reduce such a comprehensive model to models of low dimensionality, which preserve dynamic features of interest and, thus, contribute to a better understanding of photosynthesis under natural and thus fluctuating conditions. The web-based platform www.e-photosynthesis.org is introduced as an arena where these concepts and tools are being introduced and tested.
机译:植物在时间和空间上均处于异质环境,光合作用很好地适应了这些波动。要了解光波动中光合作用的复杂,非线性动力学,需要新颖的建模方法,该方法不仅涉及主要的明暗生物化学反应,还涉及调节相互作用的网络。该要求超出了现有分子模型的能力,这些分子模型通常被简化为描述部分过程,特定复合物的动力学或其特定动力学特征。我们提出了一个综合模型的概念,该模型将代表一个内部一致的整体框架,该框架结合了导致模型构建的简化模型的信息。这篇综述探索了工程,数学和生物学的其他领域中存在的方法和工具,这些方法和工具可用于开发光合作用的综合模型。同样重要的是,我们研究了可以严格地将这种综合模型简化为低维模型的技术,这些模型可以保留感兴趣的动态特征,从而有助于更好地理解自然条件和波动条件下的光合作用。基于Web的平台www.e-photosynthesis.org是作为介绍和测试这些概念和工具的场所而引入的。

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