首页> 外文会议>2011 4th International Conference on Biomedical Engineering and Informatics >Effects of UV-B and UV-C radiation on the accumulation of scytonemin in a terrestrial cyanobacterium, Nostoc flagelliforme
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Effects of UV-B and UV-C radiation on the accumulation of scytonemin in a terrestrial cyanobacterium, Nostoc flagelliforme

机译:UV-B和UV-C辐射对陆生蓝藻Nostoc鞭毛虫中胞嘧啶积累的影响

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Scytonemin which is derived from cyanobacteria, has been reported to possess a variety of potent properties, including UV-screening, anti-inflammatory and anti-proliferative. Since ultraviolet radiation played a positive role in the scytonemin synthesis, we used UV-B and UV-C to study the stimulative effects on the scytonemin production in a terrestrial cyanobacterium, Nostoc flagelliforme. The results showed that UV-B or UV-C could induce the synthesis of scytonemin in N. flagelliforme. The UV-B and low level of UV-C (0.5 W/m2) radiation continually stimulated the scytonemin production without any inhibition in 48 hours. The scytonemin produced by N. flagelliforme showed positive correlation to the radiation levels and exposure time. In contrast, high levels of UV-C (1.5 and 2.5 W/m2) radiation had negative effects on the scytonemin synthesis after a long exposure time. After all, we presumed that the optimal UV source and intensity for stimulation of scytonemin in our experiment was UV-B at 3.5 W/m2, which could induce an increase of scytonemin up to 135 % as compared to the initial level after 48 hours.
机译:据报道,衍生自蓝细菌的胞嘧啶具有多种有效特性,包括紫外线屏蔽,抗炎和抗增殖。由于紫外线在scytonemin合成中发挥了积极作用,因此我们使用UV-B和UV-C研究了陆地蓝藻Nostoc鞭毛形菌对scytonemin产生的刺激作用。结果表明,UV-B或UV-C可以诱导鞭毛猪笼草中胞嘧啶的合成。 UV-B和低水平的UV-C(0.5 W / m 2 )辐射在48小时内持续刺激胞嘧啶的产生,而没有任何抑制作用。鞭毛猪笼草产生的胞嘧啶与辐射水平和暴露时间呈正相关。相反,长时间暴露后,高水平的UV-C辐射(1.5和2.5 W / m 2 )对血球蛋白的合成有不利影响。毕竟,我们认为本实验中刺激球蛋白的最佳紫外线源和强度为UV-B,为3.5 W / m 2 ,与之相比,可诱导球蛋白增加高达135%在48小时后恢复到初始水平。

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