不同表型炭疽芽孢杆菌菌株在土壤模拟条件下的植被和孢子形成能力

E. Koteneva, O. Tsygankova, A. V. Kalinin, A. V. Abramovich, V. Shcherbakova, I. S. Rodionov
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摘要

介绍。研究不同表型性质的炭疽芽孢杆菌菌株在以土壤水提取物为基础的培养基上孢子萌发、繁殖和产孢的能力,有助于评估这些过程在土壤炭疽疫源地形成和维持中的意义。的目标。不同表型炭疽病原菌在土壤培养基模型中营养培养的个体特征分析。材料和方法。对一组不同质粒组成和毒力的炭疽菌菌株,在土壤培养基上进行了孢子萌发、杆菌繁殖和部分产孢形成的可能性研究。结果。鉴定出三种炭疽芽胞杆菌菌株的培养发育变异:1种孢子保持完整,不发芽;2孢子萌发后形成芽孢杆菌,芽孢杆菌以不同的繁殖强度繁殖,不形成孢子而进入对合形态;3 .通过一个完整的生理循环“孢子杆菌”。在3 d的观察期内,土壤环境中2%的血有助于孢子的萌发和培养物的繁殖,但抑制了孢子的形成过程。所研究的炭疽芽孢杆菌的某一表型与在土壤介质上发芽和生长的能力之间没有相关性。结论。所获得的数据表明,只有17%的CFU在土壤培养基上形成菌落,这表明所研究菌株群体性质的异质性。分离这些培养物并对其进行进一步的详细研究,将有可能确定在土壤模拟条件下实现完整生理循环的最重要的生物特性复合体。
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Ability for vegetation and spore formation of Bacillus anthracis strains with different phenotypical properties under soil simulating conditions
Introduction. The study of the ability of Bacillus anthracis strains with different phenotypic properties to spore germination, reproduction and sporulation on a medium based on an aqueous soil extract can help assess the significance of these processes in the formation and maintenance of soil anthrax foci. Aim. The analysis of individual characteristics of the development of a vegetative culture of anthrax pathogen strains with different phenotypes in a soil medium model. Materials and methods. On a group of anthrax microbe strains with different plasmid composition and virulence, the possibility of spore germination, reproduction of bacilli and, at least in some of them, productive spore formation on the soil medium was studied. Results. Three variants of culture development of B. anthracis strains were identified: 1 spores remain intact, not germinating; 2 after germination of spores, bacilli are formed, which multiply with different intensity, passing into involutional forms without spore formation; 3 the passage of a complete physiological cycle "sporebacillusspore". The presence of 2% blood in the soil environment contributed to the germination of spores and reproduction of the culture, but inhibited the process of sporulation during the observation period of 3 days. No correlation was found between a certain phenotype of the studied strains of B. anthracis and the ability to germinate and vegetate on soil media. Conclusion. The data obtained that only 17% of CFU gives rise to the formation of colonies on the soil medium suggest the heterogeneity of the properties of the population of the studied strains. Isolation of such cultures and their further detailed study will make it possible to identify the most significant complexes of biological properties for the realization of a complete physiological cycle under soil-simulating conditions.
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