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Correlation between thermotolerance and membrane properties in Paramecium aurelia

机译:黄履带草耐热性与膜特性的相关性

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摘要

The relationship between thermotolerance and membrane properties was studied by using a ciliated protozoan, Paramecium aurelia. P. aurelia is a complex of sibling species termed 'syngens' whose cell morphology appear similar on microscopic examination. From the comparison of tolerance to increasing temperature among 14 syngens of P. aurelia, we selected syngens 2 and 3 as low thermotolerant examples, and syngens 8 and 10 as high thermotolerant examples. The membrane resistance of high thermotolerant syngens measured by injection of a constant inward current was greater than that of low thermotolerant syngens. Membrane fluidity measurements of living cells using the fluorescent dye, 6-lauroyl-2-dimethylaminonaphtalene (laurdan) showed that the fluidity at the cultured temperature was decreased in high thermotolerant syngens compared to that of low thermotolerant syngens. However, when the temperature was increased to the killing temperature of each syngens, the fluidity was increased to almost the same level irrespective of syngen. Furthermore, analysis of fatty acids extracted from whole cells showed that the ratios of unsaturated to saturated fatty acids was smaller in high thermotolerant syngens than in low thermotolerant syngens. These results suggest that the thermotolerance of P. aurelia syngens is determined by the membrane fluidity which is related to the fatty acids composition.
机译:通过使用纤毛原生动物,草履虫,研究了耐热性与膜性能之间的关系。金黄色葡萄球菌是同胞种的复合物,称为“ syngens”,其细胞形态在显微镜下看起来相似。通过比较金黄色葡萄球菌的14种合成物对温度升高的耐受性,我们选择合成物2和3作为低耐热性实例,选择合成物8和10作为高耐热性实例。通过注入恒定的内向电流测量的高耐热性合成物的膜电阻大于低耐热性合成物的膜电阻。使用荧光染料6-月桂酰基-2-二甲基氨基萘(laurdan)对活细胞进行的膜流动性测量显示,与低耐热性同源物相比,高耐热性同源物在培养温度下的流动性降低了。然而,当温度升高至每种合成物的杀灭温度时,流动性增加至几乎相同的水平,而与合成物无关。此外,对从全细胞中提取的脂肪酸的分析表明,高耐热性合成物中的不饱和脂肪酸与饱和脂肪酸的比率要小于低耐热性合成物中的不饱和脂肪酸与饱和脂肪酸的比率。这些结果表明,金黄色葡萄球菌合成酶的耐热性由与脂肪酸组成有关的膜流动性决定。

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