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首页> 外文期刊>Molecular Biology >Survival Strategy of Photosynthetic Organisms.1.Variability of the Extent of Light-Harvesting Pigment Aggregation as a Structural Factor Optimizing the Function of Oligomeric Photosynthetic Antenna.Model Calculations
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Survival Strategy of Photosynthetic Organisms.1.Variability of the Extent of Light-Harvesting Pigment Aggregation as a Structural Factor Optimizing the Function of Oligomeric Photosynthetic Antenna.Model Calculations

机译:光合生物的生存策略1.光吸收性色素聚集程度的变化作为结构因子,优化了寡聚光合天线的功能。模型计算

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In accordance with our concept of rigorous optimization of photosynthetic machinery by a functional criterion,this series of papers continues purposeful search in natural photosynthetic units (PSU) for the basic principles of their organization that we predicted theoretically for optimal model light-harvesting systems.This approach allowed us to determine the basic principles for the organization of a PSU of any fixed size.This series of papers deals with the problem of structure optimization for light-harvesting antennae of variable size controlled in vivo by the light intensity during the growth of organisms,which accentuates the problem of antenna structure optimization because optimization requirements become more stringent as the PSU increases in size.In this work,using mathematical modeling for the functioning of natural PSUs,we have shown that the aggregation of pigments of model light-harvesting antenna,being one of universal optimizing factors,furthermore allows controlling the antenna efficiency if the extent of pigment aggregation is a variable parameter.In this case,the efficiency of antenna increases with the size of the elementary antenna aggregate,thus ensuring the high efficiency of the PSU irrespective of its size;i.e.,variation in the extent of pigment aggregation controlled by the size of light-harvesting antenna is biologically expedient.
机译:按照我们通过功能准则对光合机械进行严格优化的概念,本系列论文继续在自然光合单元(PSU)中进行有目的的搜索,以寻找其组织的基本原理,我们从理论上预测了最佳模型光收集系统。该方法使我们能够确定组织任何固定大小的PSU的基本原理。该系列论文研究了在生物生长过程中受光强度控制的,体内可变大小的采光触角的结构优化问题。 ,这会加剧天线结构的优化问题,因为随着PSU尺寸的增加,对优化的要求也越来越严格。作为通用优化因素之一,还允许控制如果色素聚集程度是一个可变参数,则天线效率高。在这种情况下,天线效率随基本天线聚集体的大小而增加,从而确保了PSU的高效率,而不论其尺寸如何;即,受光收集天线尺寸控制的颜料聚集程度在生物学上是有利的。

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