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On the question of the light-harvesting role of β-carotene in photosystem II and photosystem I core complexes

机译:关于β-胡萝卜素在光系统II和光系统I核心复合物中的集光作用问题

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β-Carotene is the only carotenoid present in the core complexes of Photosystems I and II. Its proximity to chlorophyll a molecules enables intermolecular electronic interactions, including β-carotene to chlorophyll a electronic excitation transfers. However, it has been well documented that, compared to chlorophylls and to phycobilins, the light harvesting efficiency of β-carotenes for photosynthetic O2 evolution is poor. This is more evident in cyanobacteria than in plants and algae because they lack accessory light harvesting pigments with absorptions that overlap the β-carotene absorption. In the present work we investigated the light harvesting role of β-carotenes in the cyanobacterium Synechococcus sp. PCC 7942 using selective β-carotene excitation and selective Photosystem detection of photo-induced electron transport to and from the intersystem plastoquinones (the plastoquinone pool).We report that, although selectively excited β-carotenes transfer electronic excitation to the chlorophyll a of both photosystems, they enable only the oxidation of the plastoquinone pool by Photosystem I but not its reduction by Photosystem II. This may suggest a light harvesting role for the β-carotenes of the Photosystem I core complex but not for those of the Photosystem II core complex. According to the present investigation, performed with whole cyanobacterial cells, the lower photosynthesis yields measured with β-Carabsorbed light can be attributed to the different excitation trapping efficiencies in the reaction centers of PSI and PSII.
机译:β-胡萝卜素是存在于光系统I和II的核心复合物中的唯一类胡萝卜素。它与叶绿素a分子的接近使分子间电子相互作用成为可能,包括β-胡萝卜素向叶绿素a的电子激发转移。然而,已经有充分的文献证明,与叶绿素和藻胆素相比,β-胡萝卜素对光合作用O2的捕光效率很低。在蓝细菌中,这比在植物和藻类中更明显,因为它们缺乏吸收性与β-胡萝卜素吸收重叠的辅助光收集色素。在目前的工作中,我们研究了β-胡萝卜素在蓝藻Synechococcus sp。中的光捕获作用。 PCC 7942使用选择性β-胡萝卜素激发和选择性光系统检测光诱导的电子往返于系统间质体醌(质体醌池)的传输。我们报告,尽管选择性激发的β-胡萝卜素将电子激发转移到两个光系统的叶绿素a ,它们只能通过Photosystem I氧化质体醌库,而不能通过Photosystem II还原。这可能暗示了光系统I核心复合物的β-胡萝卜素的光捕获作用,而不是光系统II核心复合物的β-胡萝卜素。根据目前对整个蓝细菌细胞进行的研究,用β-碳吸收的光测得的较低的光合作用产量可归因于PSI和PSII反应中心的激发俘获效率不同。

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