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Variety, the spice of life and essential for robustness in excitation energy transfer in light-harvesting complexes

机译:品种,生命的调味品,在闪电复合物中激发能量转移中的鲁棒性必不可少

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For over a decade there has been some significant excitement and speculation that quantum effects may be important in the excitation energy transport process in the light harvesting complexes of certain bacteria and algae, in particular via the Fenna-Matthews-Olsen (FMO) complex. Whilst the excitement may have waned somewhat with the realisation that the observed long-lived oscillations in two-dimensional electronic spectra of FMO are probably due to vibronic coherences, it remains a question whether these coherences may play any important role. We review our recent work showing how important the site-to-site variation in coupling between chloroplasts in FMO and their protein scaffold environment is for energy transport in FMO and investigate the role of vibronic modes in this transport. Whilst the effects of vibronic excitations seem modest for FMO, we show that for bilin-based pigment-protein complexes of marine algae, in particular PC645, the site-dependent vibronic excitations seem essential for robust excitation energy transport, which may again open the door for important quantum effects to be important in these photosynthetic complexes.
机译:在十年上,已经有一些显着的兴奋和猜测,即量子效应在某些细菌和藻类的光学络合物中的激发能量运输过程中可能是重要的,特别是通过FENNA-MATTHEWS-OLSEN(FMO)复合物。虽然兴奋可能已经有所了解,但是,在实现FMO的二维电子光谱中观察到的长寿振荡可能是由于颤音的相干性,因此这些一致性可能发挥任何重要作用。我们审查了我们最近的工作,展示了FMO和蛋白质脚手架环境中叶绿体之间耦合的网站到现场变异的重要性是用于FMO中的能量运输,并调查振动模式在这种运输中的作用。虽然FMO的振动激励效果似乎适度,但我们表明,对于海藻的毕林基颜料 - 蛋白质复合物,特别是PC645,依赖于PC645,依赖于稳健的励磁能量运输似乎是必不可少的,这可能再次打开门对于重要的量子效应,在这些光合复合物中很重要。

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