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酿酒酵母在不同镉浓度下的生长与适应性

Growth and adaptation of Saccharomyces cerevisiae at different cadmium concentrations.

作者信息

Minney S F, Quirk A V

出版信息

Microbios. 1985;42(167):37-44.

PMID:3889554
Abstract

The effect of 0, 5, 10 and 25 mg l-1 cadmium on the growth of Saccharomyces cerevisiae in defined medium has been investigated. It was found that the length of the lag phase increased with cadmium concentration and that metal uptake during the lag phase occurred only at a cadmium concentration of 25 mg l-1. However, metal uptake occurred at all cadmium concentrations during the exponential phase. The yeast was gradually adapted to cadmium by a series of subcultures which resulted in a decrease in the length of the lag phase. Adaptation also caused a reduction in the cadmium uptake during the lag phase at 25 mg l-1 cadmium but did not affect uptake during the exponential phase at any concentration. A single passage through cadmium-free medium partially reversed the adaptation process. Sulphide production was enhanced significantly when the yeast was grown in the presence of increasing cadmium concentrations. However, at 5 mg l-1 cadmium, adapted cells produced less sulphide than unadapted cells, whilst at 10 and 25 mg l-1 cadmium the production of sulphide was similar for adapted and unadapted cells.

摘要

研究了0、5、10和25 mg l-1镉对酿酒酵母在限定培养基中生长的影响。发现延滞期的长度随镉浓度增加而增加,且仅在镉浓度为25 mg l-1时,延滞期才会发生金属摄取。然而,在指数生长期,所有镉浓度下都会发生金属摄取。通过一系列传代培养,酵母逐渐适应了镉,这导致延滞期长度缩短。适应还导致在25 mg l-1镉浓度下延滞期的镉摄取减少,但不影响任何浓度下指数生长期的摄取。在无镉培养基中传代一次可部分逆转适应过程。当酵母在镉浓度不断增加的情况下生长时,硫化物产量显著提高。然而,在5 mg l-1镉浓度下,适应细胞产生的硫化物比未适应细胞少,而在10和25 mg l-1镉浓度下,适应细胞和未适应细胞的硫化物产量相似。

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