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Algal-bacterial consortia for bioproduct generation and wastewater treatment

机译:生物制作生成和废水处理的藻类组成

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摘要

Microalgae have been developed as promising candidates for bioenergy production, coupled with answering challenges related to water pollution and global warming. When combined with wastewater, microalgal biomass production could be freed from a strong dependence on freshwater and chemical nutrients, as well as achieve the additional advantage of wastewater reclamation. However, despite those dual benefits, certain limitations on the growing of algae in wastewater remain to be resolved, including the inevitable presence of bacteria in wastewater, which influences biomass productivity and quality in various ways. Pointing at microalgal-bacterial relationships, this study provides an updated review of the application of microalgal-bacterial consortia (MABC) to benefit biomass yield and harvest, and in wastewater remediation, focusing on the main interactions established between the microorganisms integrated within MABC and the factors influencing the behaviours of MABC. The challenges faced by the MABC biotechnology are also discussed, which are primarily rooted in undesirable bacteria that parasitically eat microalgal products and inhibit algal growth through nutrient competition, lysate exudation, or reducing the algal resistance to biotic stress. However, there is a lack of systematic studies on maintaining stable and effective operation of MABCs for wastewater cultivation and high-value bioproduct generation. Knowledge gaps are identified as including systematic information about the responses of MABC to culture conditions and wastewater-borne bacterial communities, and the metabolic mechanisms underpinning the interactions between algae and bacteria in wastewater. Further research focuses and methodologies are proposed in this review, making full use of the advent of omics and computational technology.
机译:微藻已成为生物能源生产的承诺候选人,再加上与水污染和全球变暖有关的挑战。当与废水结合时,微藻生物量产生可能免于对淡水和化学营养素的强烈依赖,并达到废水填海的额外优势。然而,尽管这些双重效益,对废水中藻类生长的某些限制仍然被解决,包括废水中细菌的必然存在,这影响了各种方式的生物量生产率和质量。本研究指向微藻 - 细菌关系,提供了对微藻 - 细菌结合(MABC)的应用,使生物质产量和收获以及废水补救措施的更新审查,重点是在MABC内整合的微生物之间建立的主要相互作用。影响MABC行为的因素。还讨论了MABC生物技术面临的挑战,其主要是根植于不良细菌,可通过营养竞争,裂解液体渗透,或降低生物应力的藻类抗性,抑制藻类生长。然而,缺乏对维持MABCS的稳定有效运作的系统性研究,用于废水栽培和高价值生物植物生成。知识差距被确定为包括关于MABC对培养条件和废水传播的细菌群体的反应的系统信息,以及基于废水中藻类和细菌之间的相互作用的代谢机制。在本综述中提出了进一步的研究重点和方法,充分利用了OMICS和计算技术的出现。

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