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Microalgal bioengineering for sustainable energy development: Recent transgenesis and metabolic engineering strategies

机译:用于可持续能源开发的微藻生物工程:最新的转基因和代谢工程策略

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Exploring the efficiency of algae to produce remarkable products can be directly benefitted by studying its mechanism at systems level. Recent advents in biotechnology like flux balance analysis (FBA), genomics and in silico proteomics minimize the wet lab exertion. It is understood that FBA predicts the metabolic products, metabolic pathways and alternative pathway to maximize the desired product, and these are key components for microalgae bio-engineering. This review encompasses recent transgenesis techniques and metabolic engineering strategies applied to different microalgae for improving different traits. Further it also throws light on RNAi and riboswitch engineering based methods which may be advantageous for high throughput microalgal research. A valid and optimally designed microalga can be developed where every engineering strategies meet each other successfully and will definitely fulfill the market needs. It is also to be noted that Omics (viz. genetic and metabolic manipulation with bioinformatics) should be integrated to develop a strain which could prove to be a futuristic solution for sustainable development for energy.
机译:通过在系统层面研究藻类的机理,可以直接受益于探索藻类生产卓越产品的效率。生物技术的最新出现,例如通量平衡分析(FBA),基因组学和计算机蛋白质组学,将湿实验室的工作量降到了最低。可以理解的是,FBA预测代谢产物,代谢途径和替代途径,以使所需产物最大化,这些是微藻生物工程的关键组成部分。这篇综述涵盖了应用于不同微藻以改善不同性状的最新转基因技术和代谢工程策略。此外,它还阐明了基于RNAi和核糖开关工程的方法,这些方法可能对高通量微藻类研究具有优势。可以开发出有效且经过优化设计的微藻,其中每种工程策略都能成功地相互满足,并且一定会满足市场需求。还应注意,应整合Omics(即使用生物信息学进行遗传和代谢操作)以开发菌株,该菌株可以证明是能源可持续发展的未来解决方案。

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