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在不同汇条件下的电子平衡揭示了对集胞藻PCC 6803的光子效率和代谢活性的积极影响。

Electron balancing under different sink conditions reveals positive effects on photon efficiency and metabolic activity of sp. PCC 6803.

作者信息

Grund Marcel, Jakob Torsten, Wilhelm Christian, Bühler Bruno, Schmid Andreas

机构信息

1Department of Solar Materials, Helmholtz Center for Environmental Research GmbH-UFZ, Permoserstraße 15, 04318 Leipzig, Germany.

2Plant Physiology Group, Institute for Biology, University of Leipzig, Johannisallee 21-23, 04103 Leipzig, Germany.

出版信息

Biotechnol Biofuels. 2019 Feb 27;12:43. doi: 10.1186/s13068-019-1378-y. eCollection 2019.

Abstract

BACKGROUND

Cyanobacteria are ideal model organisms to exploit photosynthetically derived electrons or fixed carbon for the biotechnological synthesis of high value compounds and energy carriers. Much effort is spent on the rational design of heterologous pathways to produce value-added chemicals. Much less focus is drawn on the basic physiological responses and potentials of phototrophs to deal with natural or artificial electron and carbon sinks. However, an understanding of how electron sinks influence or regulate cellular physiology is essential for the efficient application of phototrophic organisms in an industrial setting, i.e., to achieve high productivities and product yields.

RESULTS

The physiological responses of the cyanobacterium sp. PCC 6803 to electron sink variation were investigated in a systematic and quantitative manner. A variation in electron demand was achieved by providing two N sources with different degrees of reduction. By additionally varying light and CO availabilities, steady state conditions with strongly differing source-sink ratios were established. Balancing absorbed photons and electrons used for different metabolic processes revealed physiological responses to sink/source ratio variation. Surprisingly, an additional electron sink under light and thus energy limitation was found not to hamper growth, but was compensated by improved photosynthetic efficiency and activity. In the absence of carbon and light limitation, an increase in electron demand even stimulated carbon assimilation and growth.

CONCLUSION

The metabolism of sp. PCC 6803 is highly flexible regarding the compensation of additional electron demands. Under light limitation, photosynthesis obviously does not necessarily run at its maximal capacity, possibly for the sake of robustness. Increased electron demands can even boost photosynthetic activity and growth.

摘要

背景

蓝细菌是利用光合衍生电子或固定碳进行高价值化合物和能量载体生物技术合成的理想模式生物。人们在合理设计用于生产增值化学品的异源途径上投入了大量精力。而对于光合生物应对自然或人工电子和碳汇的基本生理反应和潜力的关注则少得多。然而,了解电子汇如何影响或调节细胞生理对于光合生物在工业环境中的高效应用至关重要,即实现高生产率和高产品产量。

结果

以系统和定量的方式研究了蓝细菌sp. PCC 6803对电子汇变化的生理反应。通过提供两种还原程度不同的氮源来实现电子需求的变化。通过额外改变光照和二氧化碳可用性,建立了源汇比差异很大的稳态条件。平衡用于不同代谢过程的吸收光子和电子揭示了对汇/源比变化的生理反应。令人惊讶的是,发现在光照和能量限制下的额外电子汇不会阻碍生长,而是通过提高光合效率和活性得到补偿。在没有碳和光照限制的情况下,电子需求的增加甚至刺激了碳同化和生长。

结论

sp. PCC 6803的代谢在补偿额外电子需求方面具有高度灵活性。在光照限制下,光合作用显然不一定以其最大能力运行,这可能是为了稳健性。增加的电子需求甚至可以促进光合活性和生长。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/29ef/6391784/0314d239fe97/13068_2019_1378_Fig1_HTML.jpg

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