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首页> 外文期刊>Bioresource Technology: Biomass, Bioenergy, Biowastes, Conversion Technologies, Biotransformations, Production Technologies >Enhancing microalgal biomass productivity by engineering a microalgal-bacterial community
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Enhancing microalgal biomass productivity by engineering a microalgal-bacterial community

机译:通过改造微藻细菌群落来提高微藻生物量生产力

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This study demonstrates that ecologically engineered bacterial consortium could enhance microalgal biomass and lipid productivities through carbon exchange. Phycosphere bacterial diversity analysis in xenic Chlorella vulgaris (XCV) confirmed the presence of growth enhancing and inhibiting microorganisms. Co-cultivation of axenic C. vulgaris (ACV) with four different growth enhancing bacteria revealed a symbiotic relationship with each bacterium. An artificial microalgal-bacterial consortium (AMBC) constituting these four bacteria and ACV showed that the bacterial consortium exerted a statistically significant (P < 0.05) growth enhancement on ACV. Moreover, AMBC had superior flocculation efficiency, lipid content and quality. Studies on carbon exchange revealed that bacteria in AMBC might utilize fixed organic carbon released by microalgae, and in return, supply inorganic and low molecular weight (LMW) organic carbon influencing algal growth and metabolism. Such exchanges, although species specific, have enormous significance in carbon cycle and can be exploitated by microalgal biotechnology industry. (C) 2014 Elsevier Ltd. All rights reserved.
机译:这项研究表明,生态工程细菌财团可以通过碳交换提高微藻生物量和脂质生产力。普通小球藻(XCV)的气圈细菌多样性分析证实了生长促进和抑制微生物的存在。与四种不同的生长促进细菌共同培养寻常型梭状芽胞杆菌(ACV)揭示了与每种细菌的共生关系。构成这四种细菌和ACV的人工微藻-细菌财团(AMBC)表明,该细菌财团对ACV发挥了统计学显着(P <0.05)的增长。此外,AMBC具有优异的絮凝效率,脂质含量和质量。关于碳交换的研究表明,AMBC中的细菌可能利用微藻释放的固定有机碳,并反过来提供影响藻类生长和代谢的无机和低分子量(LMW)有机碳。这种交换,尽管是特定物种,但在碳循环中具有重大意义,可以被微藻生物技术产业利用。 (C)2014 Elsevier Ltd.保留所有权利。

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