...
首页> 外文期刊>Applied and Environmental Microbiology >Measurement of Proteolysis in Natural Waters
【24h】

Measurement of Proteolysis in Natural Waters

机译:天然水中蛋白水解的测量

获取原文
           

摘要

Microbiological proteolysis in Lake Champlain water was measured in situ and in vitro by the spectrophotometric measurement of the rate of release of soluble color from an insoluble azure dye derivative of hide powder. Water samples sterilized by microfiltration were never proteolytic. In situ proteolysis was found to be very dependent upon water temperature (1 to 23°C). No measurable activity was observed below 4°C. The in vitro proteolysis rate at 20°C was found to be 2.3 times the rate at 15°C and 6 times the rate at 10°C. Water taken from beneath the ice-covered lake throughout the winter and tested in the laboratory at 20°C was found to show an increasing proteolytic potential during the winter months. The highest activity was obtained as the ice broke up in early spring. Microbiological proteolysis in water from Burlington Harbor was often four times that found in center lake water. In most experiments proteolysis was inhibited completely by 2 μg of Cu2+ and inhibited 67% by 0.75 μg/ml. Proteolysis was markedly stimulated by 20 to 40 μg of Casitone or Casamino Acids per ml. The predominant bacteria growing in the proteolysis flasks were species of Pseudomonas and Flavobacterium. Pure cultures of Pseudomonas required traces of Casitone, Casamino Acids, or yeast extract for proteolysis of hide powder azure, whereas those of Flavobacterium did not. The requirement could not be met by a mixture of 21 amino acids and eight vitamins.
机译:通过分光光度法测量生皮粉中不溶性天蓝色染料衍生物中可溶性染料的释放速率,通过分光光度法测量了尚普兰湖水中的微生物蛋白水解。通过微滤灭菌的水样品从不蛋白水解。发现原位蛋白水解非常依赖于水温(1至23°C)。在4℃以下未观察到可测量的活性。发现在20℃下的体外蛋白水解速率是在15℃下的速率的2.3倍和在10℃下的速率的6倍。整个冬季从冰雪覆盖的湖底取水并在20°C的实验室中进行测试,发现在冬季月份中的蛋白水解潜力不断增加。由于早春的冰破裂,获得了最高的活性。来自伯灵顿港的水中的微生物蛋白水解通常是中心湖水中的四倍。在大多数实验中,蛋白水解被2μgCu2 +完全抑制,而被0.75μg/ ml抑制67%。每毫升20至40微克Casitone或Cas氨基酸显着刺激蛋白水解。在蛋白水解烧瓶中生长的主要细菌是假单胞菌和黄杆菌属。假单胞菌的纯培养物需要痕量的酪蛋白酮,酪蛋白氨基酸或酵母提取物来对生皮粉天青进行蛋白水解,而黄杆菌则不需要。 21种氨基酸和8种维生素的混合物无法满足要求。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号