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Green algae in alpine biological soil crust communities: acclimation strategies against ultraviolet radiation and dehydration

机译:高山生物土壤地壳群落中的绿藻:抗紫外线辐射和脱水的适应策略

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摘要

Green algae are major components of biological soil crusts in alpine habitats. Together with cyanobacteria, fungi and lichens, green algae form a pioneer community important for the organisms that will succeed them. In their high altitudinal habitat these algae are exposed to harsh and strongly fluctuating environmental conditions, mainly intense irradiation, including ultraviolet radiation, and lack of water leading to desiccation. Therefore, green algae surviving in these environments must have evolved with either avoidance or protective strategies, as well as repair mechanisms for damage. In this review we have highlighted these mechanisms, which include photoprotection, photochemical quenching, and high osmotic values to avoid water loss, and in some groups flexibility of secondary cell walls to maintain turgor pressure even in water-limited situations. These highly specialized green algae will serve as good model organisms to study desiccation tolerance or photoprotective mechanisms, due to their natural capacity to withstand unfavorable conditions. We point out the urgent need for modern phylogenetic approaches in characterizing these organisms, and molecular methods for analyzing the metabolic changes involved in their adaptive strategies.
机译:绿藻是高山生境中生物土壤结皮的主要成分。绿藻与蓝细菌,真菌和地衣一起形成了一个先驱者社区,这对于继承它们的生物至关重要。这些藻类在海拔高度较高的生境中暴露于恶劣且剧烈波动的环境条件下,主要是强烈的辐射(包括紫外线辐射)和缺乏水而导致干燥。因此,在这些环境中生存的绿藻必须在避免或保护性策略以及破坏修复机制的前提下进化。在这篇综述中,我们重点介绍了这些机制,包括光保护,光化学猝灭和高渗透值以避免水分流失,并且在某些群体中,即使在水有限的情况下,次级细胞壁也能保持膨胀压力。这些高度专业化的绿藻由于其天然的承受不利条件的能力,将成为研究耐干燥性或光保护机制的良好模式生物。我们指出了表征这些生物的现代系统发育方法的迫切需求,以及分析其适应性策略所涉及的代谢变化的分子方法。

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