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Spectral inhomogeneity of photosystem I and its influence on excitation equilibration and trapping in the cyanobacterium Synechocystis sp. PCC6803 at 77 K.

机译:光系统I的光谱不均匀性及其对蓝藻Synechocystis sp。中激发平衡和捕获的影响。 PCC6803在77 K.

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摘要

Ultrafast transient absorption spectroscopy was used to probe excitation energy transfer and trapping at 77 K in the photosystem I (PSI) core antenna from the cyanobacterium Synechocystis sp. PCC 6803. Excitation of the bulk antenna at 670 and 680 nm induces a subpicosecond energy transfer process that populates the Chl a spectral form at 685--687 nm within few transfer steps (300--400 fs). On a picosecond time scale equilibration with the longest-wavelength absorbing pigments occurs within 4-6 ps, slightly slower than at room temperature. At low temperatures in the absence of uphill energy transfer the energy equilibration processes involve low-energy shifted chlorophyll spectral forms of the bulk antenna participating in a 30--50-ps process of photochemical trapping of the excitation by P(700). These spectral forms might originate from clustered pigments in the core antenna and coupled chlorophylls of the reaction center. Part of the excitation is trapped on a pool of the longest-wavelength absorbing pigments serving as deep traps at 77 K. Transient hole burning of the ground-state absorption of the PSI with excitation at 710 and 720 nm indicates heterogeneity of the red pigment absorption band with two broad homogeneous transitions at 708 nm and 714 nm (full-width at half-maximum (fwhm) approximately 200--300 cm(-1)). The origin of these two bands is attributed to the presence of two chlorophyll dimers, while the appearance of the early time bleaching bands at 683 nm and 678 nm under excitation into the red side of the absorption spectrum (>690 nm) can be explained by borrowing of the dipole strength by the ground-state absorption of the chlorophyll a monomers from the excited-state absorption of the dimeric red pigments.
机译:超快速瞬态吸收光谱用于探测来自蓝藻集胞藻属(Synechocystis sp。)的光系统I(PSI)核心天线中77 K处的激发能量转移和捕获。 PCC6803。在670和680 nm处激发大体积天线会引发亚皮秒级的能量转移过程,该过程在几个转移步骤(300--400 fs)内将Ch1的光谱形式填充到685--687 nm。在皮秒级的时间范围内,与吸收最长波长的颜料的平衡发生在4-6 ps之内,比室温下要慢一些。在没有上坡能量传递的低温下,能量平衡过程涉及体天线的低能量移位的叶绿素光谱形式,参与了P(700)激发的30--50ps光化学捕获过程。这些光谱形式可能源自核心天线中的聚集颜料和反应中心耦合的叶绿素。激发的一部分被捕获在波长最长的吸收颜料池上,该吸收池在77 K处用作深陷阱。在710和720 nm的激发下,PSI的基态吸收的瞬态空穴燃烧表明红色颜料吸收的异质性带在708 nm和714 nm处有两个宽的均匀过渡(半峰全宽(fwhm)约为200--300 cm(-1))。这两个谱带的起源归因于两个叶绿素二聚体的存在,而在683 nm和678 nm处激发到吸收光谱的红边(> 690 nm)的早期漂白谱带的出现可以解释为叶绿素a单体的基态吸收是二聚体红色颜料的激发态吸收借来的偶极强度。

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