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首页> 外文期刊>Plant and cell physiology >The Road to C-4 Photosynthesis: Evolution of a Complex Trait via Intermediary States
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The Road to C-4 Photosynthesis: Evolution of a Complex Trait via Intermediary States

机译:C-4光合作用之路:通过中间状态演化复杂性状

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摘要

C-4 photosynthesis enables high photosynthetic energy conversion efficiency as well as high nitrogen and water use efficiencies. Given the multitude of biochemical, structural and molecular changes in comparison with C-3 photosynthesis, it appears unlikely that such a complex trait would evolve in a single step. C-4 photosynthesis is therefore believed to have evolved from the ancestral C-3 state via intermediary stages. Consequently, the identification and detailed characterization of plant species representing transitory states between C-3 and C-4 is important for the reconstruction of the sequence of evolutionary events, especially since C-4 evolution occurred in very different phylogenetic backgrounds. There is also significant interest in engineering of C-4 or at least C-4-like elements into C-3 crop plants. A detailed and mechanistic understanding of C-3-C-4 intermediates is likely to provide guidance for the experimental design of such approaches. Here we provide an overview on the most relevant results obtained on C-3-C-4 intermediates to date. Recent knowledge gains in this field will be described in more detail. We thereby concentrate especially on biochemical and physiological work. Finally, we will provide a perspective and outlook on the continued importance of research on C-3-C-4 intermediates.
机译:C-4光合作用可实现高的光合作用能量转换效率以及高的氮和水利用效率。与C-3光合作用相比,鉴于生化,结构和分子的众多变化,这种复杂性状似乎不可能一步一步形成。因此,据信C-4光合作用是从祖先的C-3状态经过中间阶段演变而来的。因此,鉴定和详细表征代表C-3和C-4之间过渡状态的植物物种对于重建进化事件的序列非常重要,尤其是因为C-4进化发生在非常不同的系统发育背景中。将C-4或至少是C-4-样元素工程化为C-3作物植物也引起了极大兴趣。对C-3-C-4中间体的详细机械理解可能为此类方法的实验设计提供指导。在这里,我们概述了迄今为止在C-3-C-4中间体上获得的最相关的结果。将更详细地描述该领域中的最新知识。因此,我们特别专注于生化和生理工作。最后,我们将提供关于C-3-C-4中间体研究的持续重要性的观点和展望。

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