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Light exposure during growth increases riboflavin production, reactive oxygen species accumulation and DNA damage in Ashbya gossypii riboflavin-overproducing strains

机译:生长期间的曝光会增加核黄素生产,Ashbya Gossypii核黄素过度菌株的反应性氧物种积累和DNA损伤

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摘要

The overproduction of riboflavin (vitamin B-2) by Ashbya gossypii, one of the most distinctive traits of this filamentous hemiascomycete, has been proposed to act as an ecological defense mechanism, since it is triggered by environmental stress. The interaction of endogenous riboflavin with light generates reactive oxygen species (ROS) and induces oxidative DNA damage in mammalian cells, but exogenous riboflavin was shown to protect A. gossypii spores against ultraviolet light. Envisioning a better understanding of this biotechnologically relevant trait, here we investigated the putative genotoxic effects associated with the overproduction of riboflavin by A. gossypii. For assessing that we developed the Ashbya Comet Assay, which was able to reproducibly measure oxidative (H2O2/menadione-mediated) and non-oxidative (camptothecin-mediated) DNA damage in A. gossypii. Using this protocol, we determined that exposure to sunlight-mimicking light during growth significantly increased the DNA damage accumulation in riboflavin-overproducing cells, but not in non-overproducing ones. The exposure of overproducing cells to light induced the intracellular accumulation of ROS and increased the production of riboflavin 1.5-fold. These results show that riboflavin-overproducing strains are highly susceptible to photo-induced oxidative DNA damage and draw attention for the importance of controlling the exposure to light of biotechnological riboflavin production processes with A. gossypii.
机译:已经提出了通过Ashbya Gossypii进行核黄素(维生素B-2)的过量生产,这是这种丝状血肿性最鲜明的性状,这是一种生态防御机制,因为它被环境压力引发。内源性核黄素与光的相互作用产生反应性氧物质(ROS)并诱导哺乳动物细胞中的氧化DNA损伤,但显示外源核黄素,用于保护A. Gossypii孢子免受紫外线。设想更好地理解这种生物技术相关性状,在这里我们研究了与A.Gossypii过量相关的推定遗传毒性作用。为评估我们开发了Ashbya Comet测定,其能够可重复测量氧化(H2O2 / menadione介导)和非氧化(Camptothecin介导的)DNA损伤在A.Gossypii中。使用本协议,我们确定在生长期间暴露于阳光模拟光显着增加了核黄素过上交细胞中的DNA损伤积累,但不在非过额外的细胞中增加。过度发育的细胞暴露于光的诱导罗斯的细胞内积聚并增加核黄素1.5倍的产生。这些结果表明,核黄素过度菌株高易受光诱导的氧化DNA损伤的影响,并提请注意控制与A.Gossypii的生物技术核苷酸生产过程的暴露的暴露的重要性。

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