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[栖息于高矿化水体中的微生物的持久特性]

[Persistent properties of microorganisms inhabiting highly mineralized water bodies].

作者信息

Selivanova E A, Nemtseva N V

出版信息

Zh Mikrobiol Epidemiol Immunobiol. 2012 Jul-Aug(4):62-6.

Abstract

AIM

Study prevalence and intensity of persistent properties in bacteria inhabiting highly min eralized water bodies and determine their role in interaction with halophilous heterotrophic protozoa.

MATERIALS AND METHODS

300 bacteria strains and 3 cultures of heterotrophic protozo isolated from water bodies with mineralization of 2-350 g/l were studied. Antilysozyme (ALA) antihistone (AHA) activity of bacteria, protozoa lysozyme were evaluated by dish and photometric methods. Protozoa histones were evaluated cytochemically. Interaction of protozoa and Escherichia coli was evaluated by experimental co-cultivation.

RESULTS

Presence of lysozyme an histones was shown in halophilous heterotrophic protozoa. Prevalence of ALA and AHA in bacteria was shown to increase as water body mineralization decreases. Intensity of E. colielimination from brine was determined to depend on the bacteria ALA level and phagocytic activity of protozoa. Participation of halotolerant protozoa in formation of heterogeneity of bacterial population by ALA was shown.

CONCLUSION

In biocenoses of highly mineralized water bodies functioning of lysozyme-antilysozyme, histone-antihistone systems was shown. Bacteria with high persistent potential may impair sanitary parameters of highly mineralized water bodies, process of self-purification of which depends directly on phagocytic activity of protozoa.

摘要

目的

研究栖息于高矿化水体中的细菌持久性特性的患病率和强度,并确定它们在与嗜盐异养原生动物相互作用中的作用。

材料与方法

研究了从矿化度为2 - 350 g/l的水体中分离出的300株细菌菌株和3种异养原生动物培养物。通过平板法和光度法评估细菌的抗溶菌酶(ALA)、抗组蛋白(AHA)活性以及原生动物的溶菌酶。通过细胞化学方法评估原生动物组蛋白。通过实验共培养评估原生动物与大肠杆菌的相互作用。

结果

在嗜盐异养原生动物中显示出溶菌酶和组蛋白的存在。随着水体矿化度降低,细菌中ALA和AHA的患病率增加。从盐水中清除大肠杆菌的强度取决于细菌的ALA水平和原生动物的吞噬活性。显示了耐盐原生动物通过ALA参与细菌群体异质性的形成。

结论

在高矿化水体的生物群落中,溶菌酶 - 抗溶菌酶、组蛋白 - 抗组蛋白系统发挥作用。具有高持久性潜力的细菌可能会损害高矿化水体的卫生参数,其自净过程直接取决于原生动物的吞噬活性。

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