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斯瓦尔巴群岛(高北极地区)自然干燥条件下鱼腥藻属(接合藻纲,有胚植物)野外种群的渗透胁迫和恢复。

Osmotic stress and recovery in field populations of Zygnema sp. (Zygnematophyceae, Streptophyta) on Svalbard (High Arctic) subjected to natural desiccation.

机构信息

Institute of Botany, Academy of Sciences of the Czech Republic, Třeboň, Czech Republic; Department of Botany, Faculty of Science, Charles University in Prague, Prague, Czech Republic.

出版信息

FEMS Microbiol Ecol. 2014 Aug;89(2):270-80. doi: 10.1111/1574-6941.12288. Epub 2014 Feb 19.

DOI:10.1111/1574-6941.12288
PMID:24476153
Abstract

Zygnema is a genus of filamentous green algae belonging to the class of Zygnematophyceae (Streptophyta). In the Arctic, it typically forms extensive mats in habitats that regularly dry out during summer, and therefore, mechanisms of stress resistance are expected. We investigated its natural populations with respect to production of specialized desiccation-resistant cells and osmotic acclimation. Six populations in various stages of natural desiccation were selected, from wet biomass floating in water to dried paper-like crusts. After rewetting, plasmolysis and osmotic stress effects were studied using hypertonic sorbitol solutions, and the physiological state was estimated using chlorophyll a fluorescence parameters. All populations of Zygnema sp. formed stationary-phase cells filled with storage products. In green algal research, such cells are traditionally called akinetes. However, the populations differed in their reaction to osmotic stress. Whereas the wet-collected samples were strongly impaired, the osmotic stress resistance of the naturally dried samples was comparable to that of true aeroterrestrial algae. We showed that arctic populations of Zygnema acclimate well to natural desiccation via hardening that is mediated by slow desiccation. As no other types of specialized cells were observed, we assume that the naturally hardened akinetes also play a key role in winter survival.

摘要

席藻是绿藻门丝藻纲(Streptophyta)的一属丝状绿藻。在北极地区,它通常在夏季经常干涸的栖息地形成广泛的垫状,因此预计会有抵抗压力的机制。我们研究了其自然种群中专门的抗干燥细胞的产生和渗透适应。选择了六个处于自然干燥不同阶段的种群,从漂浮在水中的湿生物量到干燥的纸状外壳。重新润湿后,使用高渗山梨醇溶液研究质壁分离和渗透胁迫效应,并使用叶绿素 a 荧光参数估计生理状态。所有席藻属的种群都形成了充满储存产物的定殖期细胞。在绿藻研究中,这种细胞传统上被称为厚壁孢子。然而,种群对渗透胁迫的反应不同。湿采集的样本受到强烈损伤,而自然干燥样本的渗透胁迫抗性与真正的气生藻类相当。我们表明,通过缓慢干燥介导的硬化,北极地区的席藻种群很好地适应了自然干燥。由于没有观察到其他类型的专门细胞,我们假设自然硬化的厚壁孢子也在冬季生存中起着关键作用。

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