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生物技术中的微藻共生关系。

Microalgal symbiosis in biotechnology.

作者信息

Santos Carla A, Reis Alberto

机构信息

LNEG, Unidade de Bioenergia, Estrada do Paço do Lumiar, 22, ed. F, 1649-038, Lisbon, Portugal.

出版信息

Appl Microbiol Biotechnol. 2014 Jul;98(13):5839-46. doi: 10.1007/s00253-014-5764-x. Epub 2014 May 10.

Abstract

This review provides an analysis of recent published work on interactions between microorganisms, especially the ones involving mainly nutrient exchanges and at least with one microalga species. Examples of microbial partners are given, with a remark to the potential application of cultures of an autotroph and a heterotroph, which grow simultaneously, taking advantage of the complementary metabolisms. These are particularly interesting, either due to economic or sustainable aspects, and some applications have already reached the commercial stage of development. The added advantages of these symbiotic cultures are biomass, lipid, and other products productivity enhancement a better utilization of resources and the reduction or even elimination of process residues (including carbon dioxide and other greenhouse gases) to conduct an increasingly greener biotechnology. Among the several symbiotic partners referred, the microalgae and yeast cultures are the most used. The interaction between these two microorganisms shows how to enhance the lipid production for biodiesel purposes compared with separated (stand-alone) cultures.

摘要

本综述分析了近期发表的有关微生物间相互作用的研究工作,特别是主要涉及营养物质交换且至少包含一种微藻物种的相互作用。文中给出了微生物伙伴的实例,并提及了自养生物和异养生物同时生长的培养物的潜在应用,它们利用互补代谢。由于经济或可持续性方面的原因,这些应用特别有趣,并且一些应用已经达到了商业开发阶段。这些共生培养物的额外优势在于提高了生物质、脂质和其他产品的生产率,更好地利用了资源,减少甚至消除了工艺残留物(包括二氧化碳和其他温室气体),从而实现了日益绿色的生物技术。在所提及的几种共生伙伴中,微藻和酵母培养物是最常用的。这两种微生物之间的相互作用表明,与单独(独立)培养相比,如何提高用于生物柴油目的的脂质产量。

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