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1.
Lett Appl Microbiol ; 44(3): 279-85, 2007 Mar.
Artigo em Inglês | MEDLINE | ID: mdl-17309505

RESUMO

AIMS: To examine the relationship between the growth and pH gradients of Debaryomyces hansenii at a single-cell level. METHODS AND RESULTS: Using bioimaging techniques, the cell areas and early pH gradients (Delta pH(10)), i.e. the pH gradients determined 10 min after initiation of experiments, were determined for single cells of two D. hansenii strains in fluid and on solid (agar) substrate with and without 8% (w/v) NaCl. The combination of NaCl and solid substrate prolonged the growth initiation of both D. hansenii strains additively. In all our experiments, primarily two groups of cells existed; a vital group consisting of growing single cells with intact early pH gradients, and a group of dead cells without early pH gradients. CONCLUSIONS: Our results show that growth initiation of the D. hansenii cells is severely affected by NaCl and to a lesser extent by the type of substrate in an additive and strain dependent way. Moreover, the early pH gradient of a vital D. hansenii cell cannot be correlated with the rate of its subsequent growth. SIGNIFICANCE AND IMPACT OF THE STUDY: Our study reveals new knowledge on the growth and pH gradients of D. hansenii on solid surfaces in the presence of NaCl.


Assuntos
Força Próton-Motriz , Saccharomycetales/crescimento & desenvolvimento , Cloreto de Sódio/farmacologia , Meios de Cultura , Viabilidade Microbiana , Saccharomycetales/efeitos dos fármacos , Especificidade da Espécie
2.
Appl Microbiol Biotechnol ; 71(5): 713-9, 2006 Aug.
Artigo em Inglês | MEDLINE | ID: mdl-16240114

RESUMO

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.


Assuntos
Homeostase , Saccharomycetales/efeitos dos fármacos , Saccharomycetales/fisiologia , Cloreto de Sódio/farmacologia , Meios de Cultura , Resposta ao Choque Térmico , Concentração de Íons de Hidrogênio , Pressão Osmótica , Saccharomycetales/crescimento & desenvolvimento
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