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光波动对集胞藻 PCC 6803 光合作用和代谢通量的影响。

Effect of light fluctuations on photosynthesis and metabolic flux in Synechocystis sp. PCC 6803.

机构信息

Department of Bioinformatic Engineering, Graduate School of Information Science and Technology, Osaka University, Osaka, Japan.

出版信息

Biotechnol Prog. 2023 May-Jun;39(3):e3326. doi: 10.1002/btpr.3326. Epub 2023 Feb 8.

Abstract

In nature, photosynthetic organisms are exposed to fluctuating light, and their physiological systems must adapt to this fluctuation. To maintain homeostasis, these organisms have a light fluctuation photoprotective mechanism, which functions in both photosystems and metabolism. Although the photoprotective mechanisms functioning in the photosystem have been studied, it is unclear how metabolism responds to light fluctuations within a few seconds. In the present study, we investigated the metabolic response of Synechocystis sp. PCC 6803 to light fluctuations using C-metabolic flux analysis. The light intensity and duty ratio were adjusted such that the total number of photons or the light intensity during the low-light phase was equal. Light fluctuations affected cell growth and photosynthetic activity under the experimental conditions. However, metabolic flux distributions and cofactor production rates were not affected by the light fluctuations. Furthermore, the estimated ATP and NADPH production rates in the photosystems suggest that NADPH-consuming electron dissipation occurs under fluctuating light conditions. Although we focused on the water-water cycle as the electron dissipation path, no growth effect was observed in an flv3-disrupted strain under fluctuating light, suggesting that another path contributes to electron dissipation under these conditions.

摘要

在自然界中,光合生物会受到光强波动的影响,它们的生理系统必须适应这种波动。为了维持体内平衡,这些生物具有光强波动光保护机制,它在光合作用系统和代谢中都起作用。虽然已经研究了在光合作用系统中起作用的光保护机制,但对于代谢如何在几秒钟内对光强波动做出响应还不清楚。在本研究中,我们使用 C-代谢通量分析研究了集胞藻 PCC 6803 对光强波动的代谢响应。通过调整光强和占空比,使得低光阶段的总光子数或光强相等。在实验条件下,光强波动会影响细胞生长和光合作用活性。然而,代谢通量分布和辅助因子产生率不受光强波动的影响。此外,对光合作用系统中 ATP 和 NADPH 产生速率的估算表明,在波动的光条件下,NADPH 消耗电子的耗散会发生。尽管我们专注于水-水循环作为电子耗散途径,但在波动的光条件下,flv3 缺失株没有观察到生长效应,这表明在这些条件下存在另一条电子耗散途径。

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