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来自北极的绿藻接合藻属(接合藻纲)在成熟细胞(前游动孢子)中表现出很强的耐霜性。

The conjugating green alga Zygnema sp. (Zygnematophyceae) from the Arctic shows high frost tolerance in mature cells (pre-akinetes).

机构信息

Faculty of Science, Department of Botany, Charles University, Benátská 2, 128 00, Prague, Czech Republic.

Institute of Botany, Functional Plant Biology, University of Innsbruck, Sternwartestraße 15, 6020, Innsbruck, Austria.

出版信息

Protoplasma. 2019 Nov;256(6):1681-1694. doi: 10.1007/s00709-019-01404-z. Epub 2019 Jul 10.

Abstract

Green algae of the genus Zygnema form extensive mats and produce large amounts of biomass in shallow freshwater habitats. Environmental stresses including freezing may perturb these mats, which usually have only annual character. To estimate the limits of survival at subzero temperatures, freezing resistance of young Zygnema sp. (strain MP2011Skan) cells and pre-akinetes was investigated. Young, 2-week-old cultures were exposed to temperatures of 0 to - 14 °C at 2-K steps, whereas 8-month-old cultures were frozen from - 10 to - 70 °C at 10-K intervals. Cell viability after freezing was determined by 0.1% auramine O vital fluorescence staining and measurements of the effective quantum yield of photosystem II (Ф). At - 8 °C, the young vegetative cells were unable to recover from severe frost damage. But temperatures even slightly below zero (- 2 °C) negatively affected the cells' physiology. Single pre-akinetes could survive even at - 70 °C, but their LT value was - 26.2 °C. Severe freezing cytorrhysis was observed via cryo-microscopy at - 10 °C, a temperature found to be lethal for young cells. The ultrastructure of young cells appeared unchanged at - 2 °C, but severe damage to biomembranes and formation of small foamy vacuoles was observed at - 10 °C. Pre-akinetes did not show ultrastructural changes at - 20 °C; however, vacuolization increased, and gas bubbles appeared at - 70 °C. Our results demonstrate that the formation of pre-akinetes increases freezing resistance. This adaptation is crucial for surviving the harsh temperature conditions prevailing in the High Arctic in winter and a key feature in seasonal dynamics of Zygnema sp.

摘要

席藻属绿藻形成广泛的垫状并在浅淡水生境中产生大量生物量。包括冻结在内的环境胁迫可能会扰乱这些垫状物,这些垫状物通常只有一年生的特征。为了估计在零下温度下的生存极限,研究了年轻的席藻属(MP2011Skan 株)细胞和前动体的抗冻性。将 2 周龄的年轻培养物在 0 至-14°C 的温度下以 2-K 的步长暴露,而 8 个月龄的培养物在-10 至-70°C 的温度下以 10-K 的间隔冷冻。通过 0.1%吖啶橙活荧光染色和测定光合作用系统 II(Ф)的有效量子产率来确定冷冻后的细胞活力。在-8°C,年轻的营养细胞无法从严重的霜害中恢复。但是,甚至略低于零的温度(-2°C)也会对细胞的生理产生负面影响。单个前动体甚至可以在-70°C 下存活,但它们的 LT 值为-26.2°C。在-10°C 通过低温显微镜观察到严重的冷冻细胞破裂,发现该温度对年轻细胞是致命的。在-2°C 时,年轻细胞的超微结构没有变化,但在-10°C 时观察到生物膜严重受损和小泡沫状液泡的形成。在前动体在-20°C 时没有显示出超微结构的变化;然而,在-70°C 时液泡化增加,出现气泡。我们的结果表明,前动体的形成增加了抗冻性。这种适应对于在冬季高北极地区恶劣的温度条件下生存至关重要,也是席藻属季节性动态的关键特征。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8466/6820810/048c466244c2/709_2019_1404_Fig1_HTML.jpg

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