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Effects of Different Short-Term UV-B Radiation Intensities on Metabolic Characteristics of

机译:不同短期UV-B辐射强度对代谢特征的影响

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摘要

The effects of ultraviolet (UV) radiation, particularly UV-B on algae, have become an important issue as human-caused depletion of the protecting ozone layer has been reported. In this study, the effects of different short-term UV-B radiation on the growth, physiology, and metabolism of Porphyra haitanensis were examined. The growth of P. haitanensis decreased, and the bleaching phenomenon occurred in the thalli. The contents of total amino acids, soluble sugar, total protein, and mycosporine-like amino acids (MAAs) increased under different UV-B radiation intensities. The metabolic profiles of P. haitanensis differed between the control and UV-B radiation-treated groups. Most of the differential metabolites in P. haitanensis were significantly upregulated under UV-B exposure. Short-term enhanced UV-B irradiation significantly affected amino acid metabolism, carbohydrate metabolism, glutathione metabolism, and phenylpropane biosynthesis. The contents of phenylalanine, tyrosine, threonine, and serine were increased, suggesting that amino acid metabolism can promote the synthesis of UV-absorbing substances (such as phenols and MAAs) by providing precursor substances. The contents of sucrose, D-glucose-6-phosphate, and beta-D-fructose-6-phosphate were increased, suggesting that carbohydrate metabolism contributes to maintain energy supply for metabolic activity in response to UV-B exposure. Meanwhile, dehydroascorbic acid (DHA) was also significantly upregulated, denoting effective activation of the antioxidant system. To some extent, these results provide metabolic insights into the adaptive response mechanism of P. haitanensis to short-term enhanced UV-B radiation.
机译:紫外线(UV)辐射,特别是UV-B对藻类的影响已成为已经报道了保护臭氧层的人造耗尽的重要问题。在这项研究中,检查了不同短期UV-B辐射对卟啉海地群岛生长,生理学和代谢的影响。 P. Haitanensis的生长减少,漂白现象发生在Thalli中。在不同的UV-B辐射强度下,总氨基酸,可溶性糖,总蛋白质和肌孢子状氨基酸(MAA)的含量增加。对照和UV-B辐射处理基团的P. haitanensis的代谢谱不同。在UV-B暴露下显着上调了P. Haitanensis的大多数差分代谢物。短期增强UV-B辐射显着影响氨基酸代谢,碳水化合物代谢,谷胱甘肽代谢和苯丙烷生物合成。增加苯丙氨酸,酪氨酸,苏氨酸和丝氨酸的含量,表明氨基酸代谢可以通过提供前体物质来促进紫外线吸收物质(例如酚和MAAS)的合成。蔗糖,D-葡萄糖-6-磷酸酯和β-D-果糖-6-磷酸酯的含量增加,表明碳水化合物代谢响应于UV-B暴露而有助于维持代谢活性的能量供应。同时,还显着上调了脱氢血酸(DHA),表示有效激活抗氧化系统。在某种程度上,这些结果提供了在短期增强的UV-B辐射到短期增强的uV-B辐射中的代谢见解。

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