Suppr超能文献

通过将生理生态学与系统生物学相结合来提高藻类的光合作用生产力。

Increasing algal photosynthetic productivity by integrating ecophysiology with systems biology.

机构信息

Department of Biology, Colorado State University, Fort Collins, CO 80523, USA.

出版信息

Trends Biotechnol. 2014 Nov;32(11):551-555. doi: 10.1016/j.tibtech.2014.09.007. Epub 2014 Oct 8.

Abstract

Oxygenic photosynthesis is the process by which plants, algae, and cyanobacteria convert sunlight and CO2 into chemical energy and biomass. Previously published estimates suggest that algal photosynthesis is, at best, able to convert approximately 5-7% of incident light energy to biomass and there is opportunity for improvement. Recent analyses of in situ photophysiology in mass cultures of algae and cyanobacteria show that cultivation methods can have detrimental effects on a cell's photophysiology - reinforcing the need to understand the complex responses of cell biology to a highly variable environment. A systems-based approach to understanding the stresses and efficiencies associated with light-energy harvesting, CO2 fixation, and carbon partitioning will be necessary to make major headway toward improving photosynthetic yields.

摘要

好氧光合作用是植物、藻类和蓝细菌将阳光和二氧化碳转化为化学能量和生物质的过程。先前发表的估计表明,藻类光合作用充其量只能将大约 5-7%的入射光能转化为生物质,因此有改进的空间。最近对藻类和蓝细菌大规模培养中的原位光生理学的分析表明,培养方法可能对细胞的光生理学产生有害影响——这进一步强调了需要了解细胞生物学对高度变化的环境的复杂反应。为了在提高光合作用产量方面取得重大进展,有必要采用系统方法来理解与光能收集、二氧化碳固定和碳分配相关的压力和效率。

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