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Combined resistance to oxidative stress and reduced antenna size enhance light-to-biomass conversion efficiency in Chlorella vulgaris cultures

机译:结合抗氧化应力和减小天线尺寸提高了小球藻培养物中光生物量的转化效率

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摘要

BackgroundMicroalgae are efficient producers of lipid-rich biomass, making them a key component in developing a sustainable energy source, and an alternative to fossil fuels. Chlorella species are of special interest because of their fast growth rate in photobioreactors. However, biological constraints still cast a significant gap between the high cost of biofuel and cheap oil, thus hampering perspective of producing CO2-neutral biofuels. A key issue is the inefficient use of light caused by its uneven distribution in the culture that generates photoinhibition of the surface-exposed cells and darkening of the inner layers. Efficient biofuel production, thus, requires domestication, including traits which reduce optical density of cultures and enhance photoprotection.
机译:背景技术微藻类是富含脂质的生物质的有效生产者,使其成为开发可持续能源的重要组成部分,是化石燃料的替代品。由于小球藻在光生物反应器中的快速生长,因此特别引人关注。然而,生物限制仍然在生物燃料的高成本和廉价石油之间造成了巨大的差距,从而阻碍了生产二氧化碳中性生物燃料的前景。关键问题是由于光在培养物中的不均匀分布而导致光的利用效率低下,从而导致表面暴露的细胞发生光抑制,并使内层变暗。因此,有效的生物燃料生产需要驯化,包括降低培养物光密度并增强光保护作用的性状。

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