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Antarctic Moss Biflavonoids Show High Antioxidant and Ultraviolet-Screening Activity

机译:南极苔藓双链蛋白显示出高抗氧化和紫外线筛选活动

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摘要

Ceratodon purpureus is a cosmopolitan moss that survives some of the harshest places on Earth: from frozen Antarctica to hot South Australian deserts. In a study on the survival mechanisms of the species, nine compounds were isolated from Australian and Antarctic C. purpureus. This included five biflavonoids, with complete structural elucidation of 1 and 2 reported here for the first time, as well as an additional four known phenolic compounds. Dispersion-corrected DFT calculations suggested a rotational barrier, leading to atropisomerism, resulting in the presence of diastereomers for compound 2. All isolates absorbed strongly in the ultraviolet (UV) spectrum, e.g., biflavone 1 (UV-A, 315-400 nm), which displayed the strongest radical-scavenging activity, 13% more efficient than the standard rutin; p-coumaric acid and trans-ferulic acid showed the highest UV-B (280-315 nm) absorption. The more complex and abundant 1 and 2 presumably have dual roles as both UV-screening and antioxidant compounds. They are strongly bound to Antarctic moss cell walls as well as located inside the cells of moss from both locations. The combined high stability and photoprotective abilities of these isolates may account for the known resilience of this species to UV-B radiation and its survival in some of the toughest locations in the world.
机译:Ceratodon Purpureus是一个过度的苔藓,幸存了地球上的一些最恶劣的地方:从冰冻的南极洲到热南澳大利亚沙漠。在研究物种的存活机制的研究中,从澳大利亚和南极C. purpureus中分离九种化合物。这包括五个双链烷,其在此首次报告的1和2的完全结构阐明,以及另外的四种已知的酚类化合物。分散校正的DFT计算表明,导致阿比异构化的旋转屏障,导致化合物2的非对映异构体存在。所有分离物在紫外(UV)光谱中强烈吸收,例如,双行链球菌1(UV-A,315-400nm) ,呈现出最强的激进活性,比标准芦丁更高的效率为13%; p-香豆酸和转铁酸显示出最高UV-B(280-315nm)的吸收。更复杂和丰富的1和2可能具有双重作用作为紫外线筛选和抗氧化化合物。它们强烈地绑定到南极苔细胞壁以及位于两个地方的苔藓细胞内。这些分离物的合并的高稳定性和光保护能力可能考虑到这种物种对UV-B辐射的已知弹性及其在世界上最艰难的位置的生存。

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