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二价铁阳离子在[具体物种名称]的生长、黏附特性及细胞外适应机制中的作用

The role of divalent iron cations in the growth, adhesive properties and extracellular adaptation mechanisms of sp.

作者信息

Sakharova Tatyana, Mukhametov Almas, Bokov Dmitry

机构信息

Department of Biology and General Genetic, Sechenov First Moscow State Medical University, Moscow, Russian Federation.

Department of Technology and Safety of Food Products, Kazakh National Agrarian Research University, Almaty, Kazakhstan.

出版信息

Saudi J Biol Sci. 2022 May;29(5):3642-3646. doi: 10.1016/j.sjbs.2022.02.048. Epub 2022 Mar 4.

Abstract

The present study aims to examine PAB culture, synthesizing a significant number of iron-containing enzymes and capable of adhesion. Results show that increased iron concentration increased enzymes activity in all strains studied. An increase of iron ions level increasing up to 0.50-0.60 mg/ml leads to a 1.3-fold and 2-dold increase of catalase and SOD activity respectively, peroxidase activity was virtually unchanged. Optimal iron ions Fe doses to ensure active PAB growth were determined. Of all the cultures studied subsp. AC-2503 has high adhesion: AAI = 5.1; MAI = 5.60; erythrocyte involvement rate = 87%. It was shown that certain iron ion concentrations increased the specific growth rate of PAB ( subsp. AC-2500 (0.3 mg/ml) and other strains (0.4 mg/ml). A further increase in the iron ions concentration slows bacterial growth, while excessive content inhibits metabolism, including defense mechanisms that offset the negative effects of the metal. Our subsequent studies will focus on the effect of other metal ions on the metabolism of bacteria, mainly lactic acid bacteria, which are important biotechnological objects of the industry similar to propionic acid bacteria.

摘要

本研究旨在检测丙酸杆菌属(PAB)培养物,其能合成大量含铁酶且具有黏附能力。结果表明,在所研究的所有菌株中,铁浓度的增加会提高酶活性。铁离子水平增加至0.50 - 0.60毫克/毫升时,过氧化氢酶和超氧化物歧化酶(SOD)活性分别提高了1.3倍和2倍,而过氧化物酶活性几乎未变。确定了确保PAB活跃生长的最佳铁离子剂量。在所研究的所有培养物中,亚种AC - 2503具有高黏附性:黏附指数(AAI)= 5.1;平均黏附指数(MAI)= 5.60;红细胞参与率 = 87%。结果表明,特定的铁离子浓度可提高PAB(亚种AC - 2500(0.3毫克/毫升)和其他菌株(0.4毫克/毫升))的比生长速率。铁离子浓度的进一步增加会减缓细菌生长,而过量的铁含量会抑制新陈代谢,包括抵消金属负面影响的防御机制。我们后续的研究将聚焦于其他金属离子对细菌代谢的影响,主要是乳酸菌,它们是与丙酸杆菌类似的重要工业生物技术研究对象。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/7020/9280214/ed58601afe55/gr1.jpg

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