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极端微生物及其在生物技术中的潜在贡献。

Extremophilic micro-algae and their potential contribution in biotechnology.

机构信息

Department of Chemical Engineering, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India; School of Biological Sciences, Monash University, Clayton, Victoria 3800, Australia; IIT Bombay Monash Research Academy, CSE Building, 2nd Floor, Indian Institute of Technology Bombay, Powai, Mumbai 400076, India.

School of Biological Sciences, Monash University, Clayton, Victoria 3800, Australia.

出版信息

Bioresour Technol. 2015 May;184:363-372. doi: 10.1016/j.biortech.2014.11.040. Epub 2014 Nov 15.

Abstract

Micro-algae have potential as sustainable sources of energy and products and alternative mode of agriculture. However, their mass cultivation is challenging due to low survival under harsh outdoor conditions and competition from other, undesired, species. Extremophilic micro-algae have a role to play by virtue of their ability to grow under acidic or alkaline pH, high temperature, light, CO2 level and metal concentration. In this review, we provide several examples of potential biotechnological applications of extremophilic micro-algae and the ranges of tolerated extremes. We also discuss the adaptive mechanisms of tolerance to these extremes. Analysis of phylogenetic relationship of the reported extremophiles suggests certain groups of the Kingdom Protista to be more tolerant to extremophilic conditions than other taxa. While extremophilic microalgae are beginning to be explored, much needs to be done in terms of the physiology, molecular biology, metabolic engineering and outdoor cultivation trials before their true potential is realized.

摘要

微藻具有作为可持续能源和产品以及替代农业模式的潜力。然而,由于在恶劣的户外条件下存活率低以及受到其他不受欢迎的物种的竞争,它们的大规模培养具有挑战性。耐极端环境的微藻因其能够在酸性或碱性 pH 值、高温、光照、CO2 水平和金属浓度下生长的能力而具有重要作用。在这篇综述中,我们提供了耐极端环境的微藻的几种潜在生物技术应用的实例以及可耐受的极端范围。我们还讨论了对这些极端情况的耐受的适应机制。对报道的耐极端环境微生物的系统发育关系的分析表明,与其他分类群相比,原生生物界的某些群体对耐极端环境的条件更具耐受性。虽然耐极端环境的微藻才刚刚开始被探索,但在实现它们的真正潜力之前,还需要在生理学、分子生物学、代谢工程和户外培养试验方面进行大量的工作。

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