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Lack of main K uptake systems in Saccharomyces cerevisiae cells affects yeast performance in both potassium-sufficient and potassium-limiting conditions

机译:酿酒酵母细胞中缺乏主要的钾吸收系统会影响钾充足和限钾条件下的酵母性能

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摘要

A new YNB medium containing very low concentrations of alkali metal cations has been developed to carry out experiments to study potassium homoeostasis. Physiological characterization of Saccharomyces cerevisiae BY4741 strain and the corresponding mutant lacking the main potassium uptake systems (trk1 trk2) under potassium nonlimiting and limiting concentrations was performed, and novel important differences between both strains were found. At nonlimiting concentrations of KCl, the two strains had a comparable cell size and potassium content. Nevertheless, mutants were hyperpolarized, had lower pH and extruded fewer protons compared with the BY4741 strain. Upon transfer to K-limiting conditions, cells of both strains became hyperpolarized and their cell volume and K content diminished; however, the decrease was more relevant in BY4741. In low potassium, trk1 trk2 cells were not able to accomplish the cell cycle to the same extent as in BY4741. Moreover, K limitation triggered a high-affinity K/Rb uptake process only in BY4741, with the highest affinity being reached as soon as 30 min after transfer to potassium-limiting conditions. By establishing basic cellular parameters under standard growth conditions, this work aims to establish a basis for the investigation of potassium homoeostasis at the system level.
机译:已经开发出一种新的含有非常低浓度碱金属阳离子的YNB培养基,以进行研究钾均位的实验。在钾的非限制和限制浓度下,对酿酒酵母BY4741菌株和缺乏主要钾吸收系统(trk1 trk2)的相应突变体进行了生理学表征,发现了这两个菌株之间新的重要区别。在非限制性的KCl浓度下,两个菌株的细胞大小和钾含量相当。然而,与BY4741菌株相比,突变体是超极化的,具有较低的pH值和更少的质子挤出。转移到限钾条件下,两种菌株的细胞都变得超极化,细胞体积和钾含量降低。但是,减少与BY4741更为相关。在低钾条件下,trk1 trk2细胞无法完成与BY4741相同的细胞周期。此外,钾限制仅在BY4741中触发了高亲和力的K / Rb吸收过程,转移到钾限制条件后30分钟就达到了最高亲和力。通过建立标准生长条件下的基本细胞参数,这项工作旨在为研究钾在系统水平上的同稳态奠定基础。

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