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High-value biomass from microalgae production platforms: strategies and progress based on carbon metabolism and energy conversion

机译:来自微藻生产平台的高价值生物质:基于碳代谢和能量转化的策略和进展

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摘要

Microalgae are capable of producing sustainable bioproducts and biofuels by using carbon dioxide or other carbon substances in various cultivation modes. It is of great significance to exploit microalgae for the economical viability of biofuels and the revenues from high-value bioproducts. However, the industrial performance of microalgae is still challenged with potential conflict between cost of microalgae cultivation and revenues from them, which is mainly ascribed to the lack of comprehensive understanding of carbon metabolism and energy conversion. In this review, we provide an overview of the recent advances in carbon and energy fluxes of light-dependent reaction, Calvin–Benson–Bassham cycle, tricarboxylic acid cycle, glycolysis pathway and processes of product biosynthesis in microalgae, with focus on the increased photosynthetic and carbon efficiencies. Recent strategies for the enhanced production of bioproducts and biofuels from microalgae are discussed in detail. Approaches to alter microbial physiology by controlling light, nutrient and other environmental conditions have the advantages of increasing biomass concentration and product yield through the efficient carbon conversion. Engineering strategies by regulating carbon partitioning and energy route are capable of improving the efficiencies of photosynthesis and carbon conversion, which consequently realize high-value biomass. The coordination of carbon and energy fluxes is emerging as the potential strategy to increase efficiency of carbon fixation and product biosynthesis. To achieve more desirable high-value products, coordination of multi-stage cultivation with engineering and stress-based strategies occupies significant positions in a long term.
机译:微藻能够通过在各种栽培模式下使用二氧化碳或其他碳物质来生产可持续的生物产品和生物燃料。开发微藻对于生物燃料的经济可行性和高价值生物产品的收入具有重要意义。然而,微藻的工业性能仍然受到微藻种植成本和其收益之间潜在冲突的挑战,这主要归因于对碳代谢和能量转化缺乏全面的了解。在这篇综述中,我们概述了光依赖性反应,卡尔文-本森-巴斯汉姆循环,三羧酸循环,糖酵解途径和微藻中产物生物合成过程的碳通量和能量通量的最新进展,重点是提高了光合作用。和碳效率。详细讨论了提高微藻生物产品和生物燃料产量的最新策略。通过控制光照,养分和其他环境条件来改变微生物生理的方法具有通过有效的碳转化来增加生物质浓度和产品产量的优势。通过调节碳分配和能量路线的工程策略能够提高光合作用和碳转化的效率,从而实现高价值的生物质。碳和能量通量的协调正在成为提高碳固定和产物生物合成效率的潜在策略。为了获得更理想的高价值产品,长期而言,采用工程和基于压力的策略进行多阶段栽培的协调将占据重要位置。

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