Effects of light and low oxygen tension on pigment biosynthesis in Halobacterium salinarum, revealed by a novel method to quantify both retinal and carotenoids

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Abstract

A novel method for analyzing halobacterial pigments was developed, in which retinal was liberated from halobacterial rhodopsins as retinal oxime by hydroxylamine, ethyl β-apo-8′-carotenoate was introduced as an internal standard, and the pigments including bacterioruberin and β-carotene were analyzed by HPLC at the same time. With this method, we revealed that light enhances the biosynthesis of bacterioruberin and the conversion of β-carotene to retinal, but does not affect β-carotene biosynthesis in Halobacterium salinarum strain Oyon Moussa-16. Low oxygen tension given in the light brought a slight increase in retinal accumulation, although its biosynthesis from β-carotene is an oxygenation reaction. This paradox could be explained by the increase in β-carotene biosynthesis.

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El-Sayed, W. S. M., Takaichi, S., Saida, H., Kamekura, M., Abu-Shady, M., Seki, H., & Kuwabara, T. (2002). Effects of light and low oxygen tension on pigment biosynthesis in Halobacterium salinarum, revealed by a novel method to quantify both retinal and carotenoids. Plant and Cell Physiology, 43(4), 379–383. https://doi.org/10.1093/pcp/pcf044

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