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Evaluation of Factors Affecting the Survival of Escherichia coli in Sea Water

机译:海水中大肠杆菌生存影响因素的评价

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The relationship between death of cells of Escherichia coli in artificial sea water and time was established as linear, and statistical tests demonstrated that the most suitable measure of survival was log per cent after 24 hr. Survival of E. coli in water supplemented with cysteine at levels of 0.284 × 10-6 to 284 × 10-6m was increased greatly over that in untreated water. To provide an insight into the mode of action of cysteine, the effect of concentration of various sulfhydryl and disulfide compounds was measured, and the influence of several compounds that lack a functional sulfur group but which are capable of affecting oxidation-reduction potential was determined. Moreover, a number of substances related structurally to cysteine were tested to ascertain their influence on the survival of cells of E. coli in artificial sea water. It appeared that the beneficial effect of cysteine was not due to the sulfhydryl group of the amino acid or to the ability of the compound to influence oxidation-reduction potential. Some sulfhydryl compounds had no favorable effect and, in general, disulfides were more active than the corresponding sulfhydryl compounds. Substances that lack a functional sulfur group but influence oxidation-reduction potential had no significant activity. The beneficial effect of a number of compounds related structurally to cysteine indicates that both an amino and carboxyl group are required for activity. It is suggested that cysteine and other amino acids act to increase survival of cells of E. coli in sea water by a chelation mechanism.
机译:人工海水中大肠杆菌细胞的死亡与时间之间的关系建立为线性关系,统计测试表明,最合适的存活率指标是24小时后的对数百分比。与未处理的水中相比,添加半胱氨酸的水中大肠杆菌的存活率在0.284×10-6至284×10-6m的范围内大大增加。为了深入了解半胱氨酸的作用方式,测定了各种巯基和二硫键化合物浓度的影响,并确定了几种缺少功能性硫基但能够影响氧化还原电位的化合物的影响。此外,测试了许多与半胱氨酸结构相关的物质,以确定它们对人工海水中大肠杆菌细胞存活的影响。似乎半胱氨酸的有益作用不是由于氨基酸的巯基或化合物影响氧化还原电位的能力。一些巯基化合物没有有利的作用,通常,二硫化物比相应的巯基化合物更具活性。缺少功能性硫基但影响氧化还原电位的物质没有明显的活性。在结构上与半胱氨酸有关的许多化合物的有益效果表明,氨基和羧基都需要活性。建议半胱氨酸和其他氨基酸通过螯合机制来增加海水中大肠杆菌细胞的存活。

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