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嗜碱菌5-DB和耐碱菌ATCC 6633适应pH值变化和矿化作用的代谢及形态学方面

Metabolic and Morphological Aspects of Adaptation of Alkaliphilic 5-DB and Alkali-Tolerant ATCC 6633 to Changes in pH and Mineralization.

作者信息

Maksimova Yuliya, Eliseeva Ann, Maksimov Aleksandr

机构信息

Laboratory of Molecular Biotechnology Institute of Ecology and Genetics of Microorganisms Ural Branch Russian Academy of Sciences, Golev Str., 13, Perm 614081, Russia.

Department of Microbiology and Immunology Perm State University, Bukirev Str., 15, Perm 614990, Russia.

出版信息

Int J Microbiol. 2024 Jul 23;2024:3087296. doi: 10.1155/2024/3087296. eCollection 2024.

Abstract

The goal of the study is to evaluate metabolic and morphological changes of the facultative alkaliphile 5-DB and the weakly alkali-resistant ATCC 6633 in a wide pH range and at different NaCl concentrations. The alkaliphile 5-DB is shown to have a broader general resistance to adverse factors (wide pH range, 50 g/L NaCl) than a weakly alkali-tolerant strain of the same genus. This alkaliphile is also shown to have a significantly greater resistance not only to high pH but also to low pH in comparison with ATCC 6633. The resistance of 5-DB to low pH was expressed in higher metabolic activity, maintenance of ΔpH, and no significant cell damage. The selected set of methods (reduction of resazurin to resorufin by cell dehydrogenases, bioluminescent method for determining ATP, AFM, and measurement of intracellular pH) allows us to adequately assess the ability of microbial cells to withstand harsh environmental factors. Nonspecific resistance of 5-DB was proven using a complex of selected methods. Tolerance to a wide range of pH and high salt concentrations may be useful for biotechnological applications of the strain.

摘要

本研究的目的是评估兼性嗜碱菌5-DB和弱耐碱菌ATCC 6633在较宽pH范围和不同NaCl浓度下的代谢和形态变化。与同一属的弱耐碱菌株相比,嗜碱菌5-DB对不利因素(宽pH范围、50 g/L NaCl)表现出更广泛的总体抗性。与ATCC 6633相比,该嗜碱菌不仅对高pH具有显著更高的抗性,而且对低pH也具有显著更高的抗性。5-DB对低pH的抗性表现为更高的代谢活性、ΔpH的维持以及无明显的细胞损伤。所选的一组方法(细胞脱氢酶将刃天青还原为试卤灵、生物发光法测定ATP、原子力显微镜和细胞内pH测量)使我们能够充分评估微生物细胞抵御恶劣环境因素的能力。使用所选方法的组合证明了5-DB的非特异性抗性。对宽范围pH和高盐浓度的耐受性可能对该菌株的生物技术应用有用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/bfd2/11288695/4316da33f8a9/IJMICRO2024-3087296.001.jpg

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