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Physiological basis for the high salt tolerance of Debaryomyces hansenii.

机译:汉逊德巴利酵母的高耐盐性的生理基础。

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The effects of KCl, NaCl, and LiCl on the growth of Debaryomyces hansenii, usually considered a halotolerant yeast, and Saccharomyces cerevisiae were compared. KCl and NaCl had similar effects on D. hansenii, indicating that NaCl created only osmotic stress, while LiCl had a specific inhibitory effect, although relatively weaker than in S. cerevisiae. In media with low K+, Na+ was able to substitute for K+, restoring the specific growth rate and the final biomass of the culture. The intracellular concentration of Na+ reached values up to 800 mM, suggesting that metabolism is not affected by rather high concentrations of salt. The ability of D. hansenii to extrude Na+ and Li+ was similar to that described for S. cerevisiae, suggesting that this mechanism is not responsible for the increased halotolerance. Also, the kinetic parameters of Rb+ uptake in D. hansenii (Vmax, 4.2 nmol mg [dry weight]-1 min-1; K(m), 7.4 mM) indicate that the transport system was not more efficient than in S. cerevisiae. Sodium (50 mM) activated the transport of Rb+ by increasing the affinity for the substrate in D. hansenii, while the effect was opposite in S. cerevisiae. Lithium inhibited Rb+ uptake in D. hansenii. We propose that the metabolism of D. hansenii is less sensitive to intracellular Na+ than is that of S. cerevisiae, that Na+ substitutes for K+ when K+ is scarce, and that the transport of K+ is favored by the presence of Na+. In low K+ environments, D. hansenii behaved as a halophilic yeast.
机译:比较了KCl,NaCl和LiCl对通常被认为是卤代酵母的汉逊酵母(Debaryomyces hansenii)和啤酒酵母(Saccharomyces cerevisiae)的生长的影响。 KCl和NaCl对汉逊D. hansenii的作用相似,表明NaCl仅产生渗透压,而LiCl具有特定的抑制作用,尽管比酿酒酵母弱。在低K +的培养基中,Na +可以替代K +,从而恢复了特定的生长速率和培养的最终生物量。细胞内Na +的浓度最高可达800 mM,这表明新陈代谢不受高浓度盐的影响。汉氏梭菌挤出Na +和Li +的能力与酿酒酵母中描述的相似,表明该机制与增加的耐盐性无关。此外,汉逊酵母中Rb +吸收的动力学参数(Vmax,4.2 nmol mg [干重] -1 min-1; K(m),7.4 mM)表明运输系统的效率没有啤酒酵母高。 。钠(50 mM)通过增加对汉逊D.酵母的底物的亲和力来激活Rb +的转运,而在酿酒酵母中则相反。锂抑制汉氏梭菌中Rb +的吸收。我们提出,汉逊D.汉逊氏菌的代谢对细胞内Na +的敏感性低于酿酒酵母,当K +缺乏时Na +替代K +,Na +的存在有利于K +的运输。在低K +环境中,汉氏梭菌(D. hansenii)表现为嗜盐酵母。

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