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首页> 外文期刊>Photosynthesis Research: An International Journal >Protective dissipation of excess absorbed energy by photosynthetic apparatus of cyanobacteria: role of antenna terminal emitters.
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Protective dissipation of excess absorbed energy by photosynthetic apparatus of cyanobacteria: role of antenna terminal emitters.

机译:蓝细菌光合作用装置对过量吸收的能量的保护性消散:天线终端发射器的作用。

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摘要

Two mechanisms of photoprotective dissipation of the excessively absorbed energy by photosynthetic apparatus of cyanobacteria are described that divert energy from reaction centers. Energy dissipation, monitored as nonphotochemical fluorescence quenching, occurs at different steps of energy transfer within the phycobilisomes or core antenna of photosystem I. Although these mechanisms differ significantly, in both cases, energy dissipates mainly from terminal emitters: allophycocyanin B or core membrane linker protein (L(CM)) in phycobilisomes, or the longest-wavelength chlorophylls in photosystem I antenna. It is supposed that carotenoid-induced energy dissipation in phycobilisomes is triggered by light-induced transformation of the nonquenched state of antenna into quenched state due to conformation changes caused by orange carotinoid-binding protein (OCP)-phycobilisome interaction. Fluorescence of the longest-wavelength chlorophylls of photosystem I antenna is strongly quenched by P700 cation radical or by P700 triplet state, dependent on redox state of the acceptor side cofactors of photosystem I.
机译:描述了由蓝细菌的光合作用装置光吸收过量吸收的能量的光保护性消散的两种机理,其将能量从反应中心转移出去。能量耗散以非光化学荧光猝灭监测,发生在光系统I的藻胆体或核心天线内能量转移的不同步骤。尽管这些机制存在显着差异,但在两种情况下,能量主要从末端发射体耗散:别藻蓝蛋白B或核心膜连接蛋白(L(CM))在藻胆体中,或在光系统I天线中最长波长的叶绿素。据推测,由于橙色类胡萝卜素结合蛋白(OCP)-藻胆体相互作用引起的构象变化,藻类体内的类胡萝卜素诱导的能量耗散是由天线的非猝灭态向猝灭态的光诱导转变触发的。取决于光系统I受体侧辅因子的氧化还原状态,光系统I天线的最长波长叶绿素的荧光被P700阳离子自由基或P700三重态强烈淬灭。

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