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107 strains producing protease were screened from 260 strains of Antarctic psychrophilic bacteria, among which proteolytic activity of five strains was more than 45 U ml^-1. The 16S rRNA gcne sequences homology and phylogcnetic analysis of five Antarctic psychrophillc bacteria showed that NJ276, NJS-9, NJ16-70,NJ345 belonged tO the described genus Pseudoalteromonas and NJ341 belonged to the genus Colwellia. The growth and the protease characteristic of four Antarctic psychrophilic bacteria had been studied, and the result showed that the 6ptimal temperature for growth and protease-produeing of four strains was about 10℃. Their growth and protease-produeing were still high during incubatlng 2-5 days. The maximum proteolytic activity occurred at pH 9 for four Antarctic psychrophilic bacteria. The optimal temperature of protease action of both strains NJ276 and NJ5-9 was about 50℃, however, the optimal temperature of protease aetlon of both strains NJ341 and NJ345 was about 40 ℃, and their proteolytic activity under 0℃ exhibited nearly 30% of the maximum activity, but their thermal stabilities were weaker. These results indicated that proteases from NJ341 and NJ345 were low-temperature proteases.  相似文献   
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<正> 107 strains producing protease were screened from 260 strains of Ant-arctic psychrophilic bacteria,among which proteolytic activity of five strains wasmore than 45 U ml~(-1).The 16S rRNA gene sequences homology and phylogenet-ic analysis of five Antarctic psychrophilic bacteria showed that NJ276、NJ5-9、NJ16-70、NJ345 belonged to the described genus Pseudoalteromonas and NJ341belonged to the genus Colwellia.The growth and the protease characteristic offour Antarctic psychrophilic bacteria had been studied,and the result showedthat the optimal temperature for growth and protease-producing of four strainswas about 10℃.Their growth and protease-producing were still high during in-cubating 2-5 days.The maximum proteolytic activity occurred at pH 9 for fourAntarctic psychrophilic bacteria.The optimal temperature of protease action ofboth strains NJ276 and NJ5-9 was about 50℃,however,the optimal temperatureof protease action of both strains NJ341 and NJ345 was about 40℃,and theirproteolytic activity under 0℃ exhibited nearly 30% of the maximum activity,but their thermal stabilities were weaker.These results indicated that proteasesfrom NJ341 and NJ345 were low-temperature proteases.  相似文献   
3.
GSH system plays a role in the control of the redox balance state,anti-oxidation and protecting life from injury of ROS(reactive oxygen species).In present paper,the possible GSH system of Chlamydomonas sp.ICE-L has been investigated by evaluating GSH and GSH-related enzymatic responses at different temperatures using spectrophotometer methods.The results showed that the GSH system is correlated positively to low temperature,and other factors but GR are correlated negatively to high temperature.So GSH and GSH-related enzymes play an important role in the adaptation of Antarctic ice microalgae to low temperature.  相似文献   
4.
适冷酶分子适冷机制的研究热点   总被引:1,自引:0,他引:1  
适冷酶是由低温微生物产生的,在低温环境下具有较高的酶活性.综述了适冷酶分子适冷机制的研究热点,主要包括适冷酶分子适冷机制的研究方法、重组适冷酶、适冷酶的低温催化活性、稳定性和分子结构.  相似文献   
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采用分光光度法研究了在不同温度下(包括最适温度、低于或高于最适温度)南极衣藻ICE-L(Chlamydomonassp.ICE-L)谷胱甘肽(GSH)含量、蛋白含量、谷胱甘肽过氧化物酶(GPx)、谷胱甘肽还原酶(GR)和谷胱甘肽硫转移酶(GST)活性,同时分析了已适应高温(16℃)的衣藻重新适应低温(8℃)时这些指标的变化,以期阐明谷胱甘肽系统与南极冰藻低温适应性的关系。结果表明,当温度低于对照组(最适温度8℃)时,蛋白含量降低,而GSH含量、GPx、GST和GR活性上升,已适应高温的衣藻重新适应低温时也出现类似的结果。但当温度高于最适温度时,GSH含量、GST和GPx活性下降,而蛋白含量和GR活力有上升的趋势,GR活力增长幅度比低于最适温度时的变化小。由此可见谷胱甘肽系统在南极衣藻低温适应过程中,GSH、GPx、GR、GST与低温适应呈正相关,同时除GR外其他因子与南极衣藻高温适应呈负相关,GSH及其相关酶在南极冰藻低温适应中具有重要作用。  相似文献   
6.
GSH system plays a role in the control of the redox balance state,anti-oxidation and protecting life from injury of ROS(reactive oxygen species).In present paper,the possible GSH system of Chlamydomonas sp.ICE-L has been investigated by evaluating GSH and GSH-related enzymatic responses at different temperatures using spectrophotometer methods.The results showed that the GSH system is correlated positively to low temperature,and other factors but GR are correlated negatively to high temperature.So GSH and GSH-related enzymes play an important role in the adaptation of Antarctic ice microalgae to low temperature.  相似文献   
7.
谷胱甘肽系统在清除活性氧和生物保护中发挥重要作用,探讨了南极冰藻胞内谷胱甘肽含量及谷胱甘肽相关酶的活力.采用分光光度法,对24种南极冰藻胞内谷胱甘肽含量、谷胱甘肽合成能力(GPA)、谷胱甘肽还原酶活力等进行测定.测定结果表明,南极蓝藻B-1中谷胱甘肽含量最高;南极衣藻ICE-L和南极硅藻GJ01的谷胱甘肽总产量居前2位;南极冰藻GPA普遍高于常温藻的.南极硅藻GJ01和南极衣藻ICE-L GR活力高于对照组的.培养基的选择表明,f/2培养基适合南极硅藻GJ01的生长,而Provasoli培养基适合南极衣藻ICE-L的生长.可见,南极冰藻成为谷胱甘肽的新来源是有可能的,尤其是南极硅藻GJ01和南极衣藻ICE-L.  相似文献   
8.
本研究对产虾青素的南极菌株NJ298进行了鉴定,同时对影响虾青素产量的主要环境因子进行了测试。形态特征、生理生化特征及ITS序列的系统发育分析表明,南极菌株NJ298属于红酵母属(Rhodotorula);虾青素积累主要在NJ298生长的对数期和稳定期;乙酸钠、蛋白胨是合成虾青素的最佳碳、氮源;在0-15℃之间,南极酵母NJ298均可以生长,但是低温更有利于虾青素的积累;pH值在6-8范围内NJ298均可生长,最适pH值为7.5;该菌对盐度要求不严格。  相似文献   
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