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集胞藻6803的光激活异养生长:一个需要蓝光的过程。

Light-activated heterotrophic growth of the cyanobacterium Synechocystis sp. strain PCC 6803: a blue-light-requiring process.

作者信息

Anderson S L, McIntosh L

机构信息

MSU-DOE Plant Research Laboratory, Michigan State University, East Lansing 48824.

出版信息

J Bacteriol. 1991 May;173(9):2761-7. doi: 10.1128/jb.173.9.2761-2767.1991.

Abstract

A glucose-tolerant strain of Synechocystis sp. strain 6803 will not grow on glucose under complete darkness unless given a daily pulse of white light, typically 5 min of 40 mumol m-2 s-1 (light-pulsed conditions). The light pulse is insufficient for photoautotrophy, as glucose is required and growth yield is dependent on glucose concentration. Growth rate is independent of fluence, but growth yield is dependent on fluence, saturating at 40 to 75 mumol m-2 s-1. A Synechocystis strain 6803 psbA mutant strain grows under light-pulsed conditions at rates similar to those for the glucose-tolerant strain, indicating that photosystem II is not required for growth. The relative spectral sensitivity of the growth of light-pulsed cultures (growth only in blue light, 400 to 500 nm, maximum at 450 nm) precludes energetic contribution from cyclic electron transport around photosystem I. Pulses of long-wavelength light (i.e., 550 and 650 nm) did not support the growth of Synechocystis strain 6803 and, when supplied before or after a blue-light pulse, did not inhibit blue-light-stimulated growth of Synechocystis strain 6803. We conclude that the required blue-light pulse does not support growth via photosynthetic electron transport but appears instead to function as an environmental signal regulating heterotrophic metabolism, cell division, or other photomorphogenic processes. We have termed the growth of Synechocystis strain 6803 pulsed with light and kept otherwise in complete darkness light-activated heterotrophic growth. This observation of a blue-light requirement for the growth of Synechocystis strain 6803 represents a novel blue light effect on the growth of a cyanobacterium.

摘要

集胞藻6803的一个耐葡萄糖菌株在完全黑暗条件下,若不给每日的白光脉冲(通常为5分钟、40微摩尔·平方米⁻²·秒⁻¹,即光脉冲条件),就无法在葡萄糖上生长。该光脉冲不足以支持光合自养,因为需要葡萄糖且生长产量取决于葡萄糖浓度。生长速率与光通量无关,但生长产量取决于光通量,在40至75微摩尔·平方米⁻²·秒⁻¹时达到饱和。集胞藻6803的一个psbA突变菌株在光脉冲条件下的生长速率与耐葡萄糖菌株相似,这表明光系统II对于生长并非必需。光脉冲培养物生长的相对光谱敏感性(仅在蓝光,400至500纳米下生长,在450纳米处达到最大值)排除了围绕光系统I的循环电子传递对能量的贡献。长波长光脉冲(即550和650纳米)不支持集胞藻6803的生长,并且在蓝光脉冲之前或之后提供时,也不抑制集胞藻6803的蓝光刺激生长。我们得出结论,所需的蓝光脉冲并非通过光合电子传递来支持生长,而是似乎作为一种环境信号来调节异养代谢、细胞分裂或其他光形态建成过程。我们将在光脉冲处理且其他情况下保持完全黑暗条件下集胞藻6803的生长称为光激活异养生长。集胞藻6803生长对蓝光的这种需求的观察结果代表了对蓝细菌生长的一种新型蓝光效应。

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