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来源与资源:营养物质、资源分配及生态学在微藻脂质积累培养中的重要性

Sources and resources: importance of nutrients, resource allocation, and ecology in microalgal cultivation for lipid accumulation.

作者信息

Fields Matthew W, Hise Adam, Lohman Egan J, Bell Tisza, Gardner Rob D, Corredor Luisa, Moll Karen, Peyton Brent M, Characklis Gregory W, Gerlach Robin

机构信息

Department of Microbiology and Immunology, Montana State University, 109 Lewis Hall, Bozeman, MT, 59717, USA,

出版信息

Appl Microbiol Biotechnol. 2014 Jun;98(11):4805-16. doi: 10.1007/s00253-014-5694-7. Epub 2014 Apr 3.

Abstract

Regardless of current market conditions and availability of conventional petroleum sources, alternatives are needed to circumvent future economic and environmental impacts from continued exploration and harvesting of conventional hydrocarbons. Diatoms and green algae (microalgae) are eukaryotic photoautotrophs that can utilize inorganic carbon (e.g., CO2) as a carbon source and sunlight as an energy source, and many microalgae can store carbon and energy in the form of neutral lipids. In addition to accumulating useful precursors for biofuels and chemical feed stocks, the use of autotrophic microorganisms can further contribute to reduced CO2 emissions through utilization of atmospheric CO2. Because of the inherent connection between carbon, nitrogen, and phosphorus in biological systems, macronutrient deprivation has been proven to significantly enhance lipid accumulation in different diatom and algae species. However, much work is needed to understand the link between carbon, nitrogen, and phosphorus in controlling resource allocation at different levels of biological resolution (cellular versus ecological). An improved understanding of the relationship between the effects of N, P, and micronutrient availability on carbon resource allocation (cell growth versus lipid storage) in microalgae is needed in conjunction with life cycle analysis. This mini-review will briefly discuss the current literature on the use of nutrient deprivation and other conditions to control and optimize microalgal growth in the context of cell and lipid accumulation for scale-up processes.

摘要

无论当前的市场状况以及常规石油资源的可获取性如何,都需要寻找替代方案,以规避因持续勘探和开采常规碳氢化合物而对未来经济和环境造成的影响。硅藻和绿藻(微藻)是真核光合自养生物,它们可以利用无机碳(如二氧化碳)作为碳源,利用阳光作为能源,并且许多微藻能够以中性脂质的形式储存碳和能量。除了积累生物燃料和化学原料的有用前体之外,利用自养微生物还可以通过利用大气中的二氧化碳进一步减少二氧化碳排放。由于生物系统中碳、氮和磷之间存在内在联系,已证明大量营养素缺乏会显著增强不同硅藻和藻类物种中的脂质积累。然而,需要开展大量工作来理解碳、氮和磷在不同生物分辨率水平(细胞层面与生态层面)控制资源分配方面的联系。结合生命周期分析,需要更好地理解氮、磷和微量营养素的可利用性对微藻中碳资源分配(细胞生长与脂质储存)的影响之间的关系。本综述将简要讨论当前关于在扩大生产过程中,利用营养缺乏和其他条件来控制和优化微藻生长以及细胞和脂质积累方面的文献。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8356/4024127/b66e40b131ff/253_2014_5694_Fig1_HTML.jpg

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