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Stress-induced changes in the ultrastructure of the photosynthetic apparatus of green microalgae

机译:绿色微藻光合仪超微结构的应力引起的变化

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摘要

In photosynthetic organisms including unicellular algae, acclimation to and damage by environmental stresses are readily apparent at the level of the photosynthetic apparatus. Phenotypic manifestations of the stress responses include rapid and dramatic reduction of photosynthetic activity and pigment content aimed at mitigating the risk of photooxidative damage. Although the physiological and molecular mechanisms of these events are well known, the ultrastructural picture of the stress responses is often elusive and frequently controversial. We analyzed an extensive set of transmission electron microscopy images of the microalgal cells obtained across species of Chlorophyta and in a wide range of growth conditions. The results of the analysis allowed us to pinpoint distinct ultrastructural changes typical of normal functioning and emergency reduction of the chloroplast membrane system under high light exposure and/or mineral nutrient starvation. We demonstrate the patterns of the stress-related ultrastructural changes including peculiar thylakoid rearrangements and autophagy-like processes and provide an outlook on their significance for implementation of the stress responses.
机译:在包括单细胞藻类的光合生物中,在光合仪的水平下,环境应力的适应和损坏是显而易见的。应激反应的表型表现包括光合活性和颜料含量的快速和显着降低,旨在减轻光氧化损伤的风险。虽然这些事件的生理和分子机制是众所周知的,但压力反应的超微结构图像通常是难以捉摸的并且经常有争议的。我们分析了跨叶绿素种类和各种生长条件的微藻细胞的广泛透射电子显微镜图像。分析结果允许我们确定高光暴露和/或矿物质饥饿下叶绿体膜系统的正常功能和应急降低的明显超微结构变化。我们展示了与压力相关的超微结构变化的模式,包括特殊的类囊体重排和类似的自噬流程,并提供了对其对应力反应实施的重要性的观点。

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