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抗坏血酸的生物合成作为极端嗜热红藻中一种由葡萄糖诱导的光保护过程

Biosynthesis of Ascorbic Acid as a Glucose-Induced Photoprotective Process in the Extremophilic Red Alga .

作者信息

Fu Han-Yi, Liu Shao-Lun, Chiang Yin-Ru

机构信息

Department of Biological Sciences, National Sun Yat-sen University, Kaohsiung, Taiwan.

Department of Life Science and Center for Ecology and Environment, Tunghai University, Taichung, Taiwan.

出版信息

Front Microbiol. 2020 Jan 14;10:3005. doi: 10.3389/fmicb.2019.03005. eCollection 2019.

Abstract

The extremophilic red alga is a facultative heterotroph that occupies mostly low-light microhabitats. However, the exceptional detection of abundant populations of in sunlight-exposed soil raises the possibility that exogenous organic carbon sources protect cells from photo-oxidative damage. The present study aimed to identify the photoprotective process activated by exogenous glucose under photo-oxidative stress. We demonstrated that exogenous glucose mitigated the photo-oxidative damage of cells exposed to 300 μmol photons m s photosynthetic active radiation. Photosynthesis carbon assimilation scarcely contributed to the cell growth in the presence of glucose, but the photosynthetic apparatus was nevertheless maintained and protected by glucose in a concentration-dependent manner. Supplementation of glucose increased expression of the L-gulonolactone oxidase gene essential for ascorbic acid biosynthesis, whereas no enhanced expression of the genes involved in carotenoid or tocopherol biosynthesis was observed. Under the photo-oxidative stress condition, the ascorbic acid content was strongly enhanced by exogenous glucose. We propose that the biosynthesis of ascorbic acid is one of the major photoprotective processes induced by exogenous glucose. The elucidation of how ascorbic acid is involved in scavenging reactive oxygen species provides key insights into the photoprotective mechanism in red algae.

摘要

这种嗜极端环境的红藻是一种兼性异养生物,主要占据低光照微生境。然而,在暴露于阳光的土壤中异常检测到大量的该红藻种群,这增加了外源性有机碳源保护细胞免受光氧化损伤的可能性。本研究旨在确定在光氧化应激下由外源性葡萄糖激活的光保护过程。我们证明,外源性葡萄糖减轻了暴露于300 μmol光子·m⁻²·s⁻¹光合有效辐射下的细胞的光氧化损伤。在有葡萄糖存在的情况下,光合作用碳同化对细胞生长几乎没有贡献,但光合装置仍以浓度依赖的方式被葡萄糖维持和保护。补充葡萄糖增加了抗坏血酸生物合成所必需的L-古洛糖酸内酯氧化酶基因的表达,而未观察到参与类胡萝卜素或生育酚生物合成的基因表达增强。在光氧化应激条件下,外源性葡萄糖强烈提高了抗坏血酸含量。我们提出,抗坏血酸的生物合成是外源性葡萄糖诱导的主要光保护过程之一。阐明抗坏血酸如何参与清除活性氧为红藻的光保护机制提供了关键见解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a6e6/6971183/73e166c6f81f/fmicb-10-03005-g001.jpg

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