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研究环形容器光生物反应器中小球藻对光变化的光合响应。

Investigation of the photosynthetic response of Chlorella vulgaris to light changes in a torus-shape photobioreactor.

机构信息

GEPEA, UMR 6144, Oniris, CNRS, Université de Nantes, 44600, Saint-Nazaire, France.

Mer-Molécules-Santé (MMS), EA 2160, Le Mans Université, Le Mans Cedex 9, France.

出版信息

Appl Microbiol Biotechnol. 2021 Dec;105(23):8689-8701. doi: 10.1007/s00253-021-11636-w. Epub 2021 Nov 1.

Abstract

An efficient use of light is essential to achieve good performances in microalgae cultivation systems. This can be challenging particularly under solar conditions where light is highly dynamic (e.g., day/night cycles, rapid changes in wind and weather conditions). Microalgae display different mechanisms to optimize light use efficiency. In the short term, when high light is encountered, several processes of photoprotection can be involved to avoid cell damages (e.g., xanthophyll cycle). In the long term, when cells are exposed to a different light intensity, pigment content changes, i.e., photoacclimation. The purpose of this study is to investigate the photosynthetic response of Chlorella vulgaris cultures grown in closed lab-scale, torus-shape photobioreactor under well-controlled light conditions, namely, constant and dynamic light transitions. Experiments were conducted in continuous mode with detailed characterization of the light attenuation conditions for each condition, as represented by the mean rate of photon absorption (MRPA), so as to characterize the time responses of the photosynthetic cells toward light changes. This enables to observe short-term and long-term responses with their own characteristic times. The mechanisms involved were found to be different between increasing and decreasing light transitions. Furthermore the MRPA was found a valuable parameter to relate the effect of light to biological responses (i.e., pigment changes) under constant light and dynamic light conditions.Key points• MRPA proved valuable to relate C. vulgaris responses to light changes.• A linear evolution was found between pigment content and MRPA in continuous light.• A rising PFD step induced fast protection and acclimation mechanisms.

摘要

有效利用光对于实现微藻培养系统的良好性能至关重要。在太阳能条件下,这可能具有挑战性,因为光具有高度动态性(例如,昼夜周期、风和天气条件的快速变化)。微藻显示出不同的机制来优化光利用效率。在短期内,当遇到高光时,可能会涉及几种光保护过程来避免细胞损伤(例如,叶黄素循环)。在长期内,当细胞暴露在不同的光强下时,色素含量会发生变化,即光适应。本研究的目的是研究在封闭的实验室规模、环形容器光生物反应器中生长的普通小球藻培养物的光合作用响应,该反应器在良好控制的光条件下,即恒定和动态光转换下。实验以连续模式进行,并详细描述了每种条件下的光衰减条件,即平均光子吸收率(MRPA),以表征光合细胞对光变化的时间响应。这使得能够观察到具有自身特征时间的短期和长期响应。发现增加和减少光转换之间涉及的机制不同。此外,发现 MRPA 是一个有价值的参数,可以将光对生物响应(即色素变化)的影响与恒光和动态光条件联系起来。

关键点

• MRPA 被证明可用于将普通小球藻的响应与光变化相关联。

• 在连续光照下,发现色素含量与 MRPA 之间存在线性关系。

• 升高的 PFD 步会诱导快速的保护和适应机制。

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