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脂肪酸对酵母细胞的毒性作用:抑制作用对脂肪酸浓度的依赖性。

Toxic effects of fatty acids on yeast cells: dependence of inhibitory effects on fatty acid concentration.

作者信息

Hunkovä Z, Fencl Z

出版信息

Biotechnol Bioeng. 1977 Nov;19(11):1623-41. doi: 10.1002/bit.260191103.

Abstract

The yeasts Saccharomyces cerevisiae, Candida utilis, and Candida lipolytica were used to investigate the action of different concentrations of fatty acids (from acetic to myristic acid) on cell growth, division, uptake of inorganic phosphate, and substrate oxidation. The former two yeasts were found to undergo an inhibition of growth, cell division, and phosphate uptake at lower acid concentrations and to experience the inhibition of substrate oxidation at higher acid concentrations. The concentration dependence of the action of fatty acids can be classified into four categories: 1) subthreshold concentrations which do not inhibit growth and have either no effect on, or stimulate, oxygen consumption; 2) threshold concentrations which lower the rate of growth, cell division, and phosphate uptake but do not inhibit the oxidation of carbon substrate; 3) above-threshold concentrations which inhibit partially even substrate oxidation, and 4) microbicide concentrations. Candida lipolytica displays the same sensitivity toward the action of fatty acids as the above yeast species; however, the threshold concentrations are higher and can be quickly lowered owing to oxidation by the yeast. The concentrations of fatty acids found in the medium after cultivations of yeast with n-alkanes are of the same order as limiting concentrations; the formation of acids with twelve and less carbons in the molecule can thus be assumed to be one of the basic reasons for lowering of biomass yields during cultivations on these hydrocarbons.

摘要

使用酿酒酵母、产朊假丝酵母和解脂假丝酵母来研究不同浓度的脂肪酸(从乙酸到肉豆蔻酸)对细胞生长、分裂、无机磷酸盐摄取和底物氧化的作用。发现前两种酵母在较低酸浓度下生长、细胞分裂和磷酸盐摄取受到抑制,在较高酸浓度下底物氧化受到抑制。脂肪酸作用的浓度依赖性可分为四类:1)亚阈值浓度,不抑制生长,对氧气消耗无影响或有刺激作用;2)阈值浓度,降低生长速率、细胞分裂和磷酸盐摄取速率,但不抑制碳底物氧化;3)高于阈值的浓度,甚至部分抑制底物氧化;4)杀微生物剂浓度。解脂假丝酵母对脂肪酸作用的敏感性与上述酵母种类相同;然而,阈值浓度较高,并且由于酵母的氧化作用可以迅速降低。用正构烷烃培养酵母后,培养基中发现的脂肪酸浓度与极限浓度处于同一数量级;因此可以认为,分子中含有十二个及以下碳原子的酸的形成是这些碳氢化合物培养过程中生物量产量降低的基本原因之一。

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