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从鱼腥藻中分离和鉴定耐高温突变体。

Isolation and characterization of high temperature tolerant mutant from the cyanobacterium Anabaena doliolum.

机构信息

Centre for Conservation and Utilization of BGA, ICAR-Indian Agricultural Research Institute, New Delhi, India.

出版信息

J Basic Microbiol. 2019 Mar;59(3):314-322. doi: 10.1002/jobm.201800447. Epub 2019 Jan 14.

Abstract

The mutant strain of the diazotrophic cyanobacterium Anabaena doliolum able to tolerate high temperature was isolated by induced mutation techniques using ethyl methane sulphonate. This mutant strain exhibited higher temperature tolerance than the wild type. The wild type was able tolerate temperature up to 40 °C whereas the mutant was able to grow at an elevated temperature of 48 °C. This mutant exhibited higher growth rate, heterocyst frequency, and nitrogen fixation. Mutant strains exhibited comparable levels of chlorophyll, phycocyanin, PS II activity, and O evolution as compared to unexposed control. Results also showed that the mutant accumulated low levels of peroxides and lipid peroxidation products with enhanced activity of antioxidant enzymes. The FAME analysis revealed quantitative and qualitative changes in the profile of fatty acids in the mutant strain. Maximum number of saturated fatty acids was observed in the mutant strain followed by control whereas the wild type exposed to elevated temperature showed least diversity of fatty acids. Enhanced level of antioxidant enzymes coupled with efficient modulation of fatty acid profile could therefore enhance the mutant to resist the high temperature stress. The results could be exploited further to decipher molecular mechanisms underlying the temperature tolerance and enhancing the utility of A. doliolum as efficient biofertilizer for rice paddy keeping in view of the future climatic change scenario.

摘要

采用乙基甲烷磺酸盐诱变技术,从固氮蓝藻鱼腥藻中分离出一种能够耐受高温的突变株。该突变株比野生型具有更高的温度耐受性。野生型能够耐受高达 40°C 的温度,而突变型能够在 48°C 的高温下生长。该突变株表现出更高的生长速率、异形胞频率和固氮能力。与未经暴露的对照相比,突变株表现出相当水平的叶绿素、藻蓝蛋白、PS II 活性和 O 2 的释放。结果还表明,与野生型相比,突变体积累的过氧化物和脂质过氧化产物水平较低,抗氧化酶活性增强。脂肪酸甲酯分析显示突变株的脂肪酸谱发生了定量和定性变化。突变株中观察到最高数量的饱和脂肪酸,其次是对照,而暴露于高温的野生型表现出最少的脂肪酸多样性。因此,增强的抗氧化酶水平和有效的脂肪酸谱调节可以增强突变体对高温胁迫的抵抗力。鉴于未来的气候变化情景,可以进一步利用这些结果来阐明鱼腥藻耐温的分子机制,并提高鱼腥藻作为水稻稻田高效生物肥料的利用效率。

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