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细胞内pH稳态在汉逊德巴利酵母菌株对氯化钠的耐受性中发挥作用。

Intracellular pH homeostasis plays a role in the NaCl tolerance of Debaryomyces hansenii strains.

作者信息

Mortensen H D, Gori K, Siegumfeldt H, Nissen P, Jespersen L, Arneborg N

机构信息

Department of Food Science, Food Microbiology, The Royal Veterinary & Agricultural University, Rolighedsvej 30, 1958 Frederiksberg C, Denmark.

出版信息

Appl Microbiol Biotechnol. 2006 Aug;71(5):713-9. doi: 10.1007/s00253-005-0196-2. Epub 2005 Oct 21.

Abstract

The effects of NaCl stress on cell area and intracellular pH (pHi) of individual cells of two Debaryomyces hansenii strains were investigated. Our results show that one of the strains was more NaCl tolerant than the other, as determined by the rate of growth initiation. Whereas NaCl stress caused similar cell shrinkages (30-35%), it caused different pHi changes of the two D. hansenii strains; i.e., in the more NaCl-tolerant strain, pHi homeostasis was maintained, whereas in the less NaCl-tolerant strain, intracellular acidification occurred. Thus, cell shrinkage could not explain the different intracellular acidifications in the two strains. Instead, we introduce the concept of yeasts having an intracellular pKa (pK(a,i)) value, since permeabilized D. hansenii cells had a very high buffer capacity at a certain pH. Our results demonstrate that the more NaCl-tolerant strain was better able to maintain its pK(a,i) close to its pHi homeostasis level during NaCl stress. In turn, these findings indicate that the closer a D. hansenii strain can keep its pK(a,i) to its pHi homeostasis level, the better it may manage NaCl stress. Furthermore, our results suggest that the NaCl-induced effects on pHi were mainly due to hyperosmotic stress and not ionic stress.

摘要

研究了NaCl胁迫对两种汉逊德巴利酵母菌株单个细胞的细胞面积和细胞内pH值(pHi)的影响。我们的结果表明,根据生长起始速率确定,其中一种菌株比另一种更耐NaCl。虽然NaCl胁迫导致了相似的细胞收缩(30 - 35%),但它导致了两种汉逊德巴利酵母菌株不同的pHi变化;即,在更耐NaCl的菌株中,pHi稳态得以维持,而在耐NaCl能力较差的菌株中,细胞内发生了酸化。因此,细胞收缩无法解释两种菌株中不同的细胞内酸化现象。相反,我们引入了酵母具有细胞内pKa(pK(a,i))值的概念,因为透化的汉逊德巴利酵母细胞在特定pH下具有非常高的缓冲能力。我们的结果表明,在NaCl胁迫期间,更耐NaCl的菌株能够更好地将其pK(a,i)维持在接近其pHi稳态水平。相应地,这些发现表明,汉逊德巴利酵母菌株将其pK(a,i)保持在接近其pHi稳态水平的程度越高,它应对NaCl胁迫的能力可能就越好。此外,我们的结果表明,NaCl对pHi的诱导作用主要是由于高渗胁迫而非离子胁迫。

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