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首页> 外文期刊>Journal of phycology >DESICCATION STRESS CAUSES STRUCTURAL AND ULTRASTRUCTURAL ALTERATIONS IN THE AEROTERRESTRIAL GREEN ALGA KLEBSORMIDIUM CRENULATUM (KLEBSORMIDIOPHYCEAE, STREPTOPHYTA) ISOLATED FROM AN ALPINE SOIL CRUST
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DESICCATION STRESS CAUSES STRUCTURAL AND ULTRASTRUCTURAL ALTERATIONS IN THE AEROTERRESTRIAL GREEN ALGA KLEBSORMIDIUM CRENULATUM (KLEBSORMIDIOPHYCEAE, STREPTOPHYTA) ISOLATED FROM AN ALPINE SOIL CRUST

机译:干燥应力导致从阿尔卑斯土壤结皮分离出的气陆绿色藻类克氏杆菌,链霉菌的结构和超结构变化

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Klebsormidium crenulatum (Kutz.) Lokhorst (Klebsormidiophyceae, Streptophyta) isolated from an alpine soil in Tyrol, Austria, was experimentally exposed to desiccation under various relative air humidities (RH 5, 75, and >95%, ambient air 55%-60%). The effects on the structure and ultrastructure of K crenulatum after 1, 4, or 7 d of desiccation at 5, 75, and >95% RH were investigated. The cross walls were deformed to an undulated shape, and the cell diameter was reduced to similar to 60% of the control. Regardless of the RH applied, in all cases the cytoplasm appeared denser compared to that of liquid-culture-grown cells. Electron-dense particles with diameters of 0.4 mu m-0.8 pm were observed in the cytoplasm, likely representing lipid droplets. The chloroplasts of desiccated samples contained a large number of plastoglobules. The number and appearance of mitochondria were not visibly altered, as also verified by 3,3' dihexyloxacarbocyanine iodine (DIOC6) staining. The amphi-philic styryl dye FM 1-43 resulted in staining of the plasma membrane in cells from liquid culture. In 7 d desiccated samples, a marked fluorescence is seen in similar to 40%-50% of the cells, which were dead. Actin microfilaments (MFs) were drastically disrupted after desiccation; only dotlike actin batches remained. These results demonstrate that flexibility of the cell walls and maintenance of the key organelles play a key role in the tolerance of desiccation stress in K crenulatum.
机译:从奥地利蒂罗尔州的高山土壤中分离出的酸枣假单胞菌(Klebsormidiophyceae,Streptophyta)在各种相对空气湿度(RH 5、75和> 95%),环境空气55%-60%的条件下进行了干燥实验)。研究了在5%,75和> 95%相对湿度下干燥1、4或7 d后对桔梗K的结构和超微结构的影响。横壁变形为波状形状,并且细胞直径减小至类似于对照的60%。不管使用哪种RH,在所有情况下,与液体培养生长的细胞相比,细胞质都显得更稠密。在细胞质中观察到直径为0.4μm-0.8pm的电子致密颗粒,可能代表脂质滴。干燥样品的叶绿体含有大量的质体球。线粒体的数量和外观没有明显改变,也已通过3,3'二己基氧杂碳菁菁碘(DIOC6)染色得到证实。两亲苯乙烯基染料FM 1-43导致液体培养细胞中的质膜染色。在7天的干燥样品中,在40%-50%的已死亡细胞中看到了明显的荧光。干燥后肌动蛋白微丝(MFs)被彻底破坏。只剩下点状肌动蛋白批次。这些结果表明,细胞壁的柔韧性和关键细胞器的维持在C. crenulatum脱水压力的耐受性中起着关键作用。

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