首页> 外文期刊>Frontiers in Plant Science >Unraveling the Photoprotective Response of Lichenized and Free-Living Green Algae (Trebouxiophyceae, Chlorophyta) to Photochilling Stress
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Unraveling the Photoprotective Response of Lichenized and Free-Living Green Algae (Trebouxiophyceae, Chlorophyta) to Photochilling Stress

机译:揭示了苔藓化和自由活动的绿藻(霸藻,绿藻)对光冷胁迫的光保护反应

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Lichens and free-living terrestrial algae are widespread across many habitats and develop successfully in ecosystems where a cold winter limits survival. With the goal of comparing photoprotective responses in free-living and lichenized algae, the physiological responses to chilling and photochilling conditions were studied in three lichens and their isolated algal photobionts together as well as in a fourth free-living algal species. We specifically addressed the following questions: (i) Are there general patterns of acclimation in green algae under chilling and photochilling stresses? (ii) Do free-living algae exhibit a similar pattern of responses as their lichenized counterparts? (iii) Are these responses influenced by the selection pressure of environmental conditions or by the phylogenetic position of each species? To answer these questions, photosynthetic fluorescence measurements as well as pigment and low molecular weight carbohydrate pool analyses were performed under controlled laboratory conditions. In general, photochemical efficiency in all free-living algae decreased with increasing duration of the stress, while the majority of lichens maintained an unchanged photochemical activity. Nevertheless, these patterns cannot be generalized because the alga Trebouxia arboricola and the lichen Ramalina pollinaria (associated with Trebouxia photobionts) both showed a similar decrease in photochemical efficiency. In contrast, in the couple Elliptochloris bilobata - Baeomyces rufus , only the algal partner exhibited a broad physiological performance under stress. This study also highlights the importance of the xanthophyll cycle in response to the studied lichens and algae to photochilling stress, while the accumulation of sugars was not related to cold acclimation, except in the alga E. bilobata . The differences in response patterns detected among species can be mainly explained by their geographic origin, although the phylogenetic position should also be considered, especially in some species.
机译:地衣和自由生活的陆地藻类遍布许多生境,并在寒冷的冬季限制生存的生态系统中成功发展。为了比较自由生活和地衣藻中的光保护反应,研究了三种地衣及其分离的藻类光合生物以及第四种自由生活藻类对低温和光冷条件的生理响应。我们专门解决了以下问题:(i)在低温和光冷胁迫下,绿藻是否有一般的适应模式? (ii)自由生存的藻类是否表现出与地衣藻类相似的反应模式? (iii)这些反应是否受环境条件选择压力或每种物种的系统发生位置影响?为了回答这些问题,在受控实验室条件下进行了光合荧光测量以及色素和低分子量碳水化合物池分析。一般而言,所有自由活动藻类的光化学效率随胁迫持续时间的增加而降低,而大多数地衣则保持不变的光化学活性。然而,这些模式不能一概而论,因为藻类Trebouxia arboricola和地衣Ramalina花粉病(与Trebouxia光生生物有关)都显示出类似的光化学效率下降。相反,在夫妇的Elliptochloris bilobata-Baeomyces rufus中,只有藻类伴侣在压力下表现出广泛的生理性能。这项研究还强调了叶黄素循环对研究的地衣和藻类对光致冷胁迫的响应的重要性,而糖的积累与冷驯化无关,除了在藻类E. bilobata中。尽管还应考虑系统发育的位置,尤其是在某些物种中,但物种之间检测到的响应模式的差异主要可以通过其地理起源来解释。

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