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理解精准氮胁迫以优化产油微藻的生长和脂质含量的权衡。

Understanding precision nitrogen stress to optimize the growth and lipid content tradeoff in oleaginous green microalgae.

机构信息

Department of Plants, Soils, and Climate, Utah State University, 4820 Old Main Hill, Logan, UT 84322, USA.

出版信息

Bioresour Technol. 2013 Mar;131:188-94. doi: 10.1016/j.biortech.2012.12.143. Epub 2012 Dec 29.

Abstract

Nitrogen deficiency promotes lipid formation in many microalgae, but also limits growth and lipid productivity. In spite of numerous studies, there is poor understanding of the interactions of growth and lipid content, the time course of lipid accumulation and the magnitude of nitrogen deficiency required to stimulate lipid formation. These relationships were investigated in six species of oleaginous green algae, comparing high and low levels of deficiency. Nitrogen stress typically had disproportionate effects on growth and lipid content, with profound differences among species. Optimally balancing the tradeoffs required a wide range in nitrogen supply rate among species. Some species grew first and then accumulated lipids, while other species grew and accumulated lipids concurrently which resulted in increased lipid productivity. Accumulation of high lipid content generally resulted from a response to minimal stress. The data highlight the tremendous biodiversity that may be exploited to optimally produce lipids with precision nitrogen stress.

摘要

氮缺乏会促进许多微藻的脂类形成,但也会限制其生长和脂类生产力。尽管进行了大量研究,但人们对生长和脂类含量的相互作用、脂类积累的时间进程以及刺激脂类形成所需的氮缺乏程度的了解仍很有限。本研究在六种产油绿藻中进行了这些关系的研究,比较了高氮缺乏和低氮缺乏的情况。氮胁迫通常对生长和脂类含量有不成比例的影响,不同物种之间存在显著差异。要实现最佳平衡,需要在不同物种之间广泛调整氮供应率。一些物种先生长然后积累脂类,而其他物种则同时生长和积累脂类,从而提高了脂类生产力。高脂含量的积累通常是对最小应激的反应。这些数据突出了巨大的生物多样性,可加以利用以精准的氮胁迫来最佳地生产脂类。

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