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A promising approach to enhance microalgae productivity by exogenous supply of vitamins

机译:通过外源提供维生素来提高微藻生产率的一种有前途的方法

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摘要

In order to reduce the consumption of traditional fossil fuels and their impact on the environment, strategies to mitigate greenhouse gas emissions especially carbon dioxide needs exploration. Microalgae-based biofuels can be the best-fit plant based feed-stocks for diminishing a majority of the Universe’s energy problems. Interestingly, the eukaryotic microalgae aid in fixation of almost 50% of the global carbon in the environment. Thus, determination of parameters that will enhance microalgal growth and productivity is crucial, if they are to be used as future renewable energy sources. A large percentage of phytoplankton species are auxotroph for one or more vitamins. These species, in turn, are also dependent upon the vitamin biosynthetic pathways for processing of these vitamins. The present study serves as a base to discuss the prevalence of vitamin auxotrophy in microalgae and the methods of its acquirement from external sources such as heterotrophic bacteria. The next section of the paper sheds light on possible species-specific symbiotic interactions among microalgae and bacteria. Lastly is the discussion on how heterotrophic bacteria can act as a vitamin prototroph for an explicit microalgal vitamin auxotroph. The overall focus is placed upon harnessing these symbiotic interactions with intentions to obtain enhancements in microalgal biomass, lipid productivity, and flocculation rates. Moreover, the growth and distribution of a microalgal cell that thrives on a specific vitamin is perhaps met by growing it with the bacterial communities that nourish it. Thus, possibly by ecologically engineering a potential species-specific microalgal–bacterial consortium, it could tremendously contribute to the acceleration of photosynthetic activity, microalgal productivity, exchange of primary metabolites and other biogeochemical nutrients within the mini ecosystem.
机译:为了减少传统化石燃料的消耗及其对环境的影响,需要探索减少温室气体尤其是二氧化碳排放的策略。基于微藻的生物燃料可以成为最合适的基于植物的原料,从而减少大部分宇宙的能源问题。有趣的是,真核微藻类有助于固定环境中近50%的全球碳。因此,如果要将其用作未来的可再生能源,确定将增强微藻生长和生产力的参数至关重要。浮游植物的很大一部分是一种或多种维生素的营养缺陷型。这些物种进而也依赖于用于加工这些维生素的维生素生物合成途径。本研究为讨论微藻中维生素营养缺陷型的流行及其从外部来源(如异养细菌)获取维生素的方法提供了依据。本文的下一部分阐明了微藻与细菌之间可能存在的物种特异性共生相互作用。最后是关于异养细菌如何充当明确的微藻维生素营养缺陷型的维生素营养缺陷型的讨论。总体重点放在利用这些共生相互作用上,以期提高微藻生物量,脂质生产率和絮凝速率。此外,依靠特定维生素生长的微藻细胞的生长和分布也许可以通过滋养它的细菌群落来满足。因此,可能通过对潜在的物种特异性微藻-细菌联盟进行生态工程设计,它可以极大地促进小型生态系统内光合作用的加速,微藻生产力,主要代谢产物和其他生物地球化学养分的交换。

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