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Effects ofStreptococcus sanguinisBacteriocin on Cell Surface Hydrophobicity, Membrane Permeability, and Ultrastructure ofCandidaThallus

机译:血管基菌菌对细胞表面疏水性,膜渗透性和超微结构的影响

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摘要

Candida albicans (C.a) and Candida tropicalis (C.t) were treated with Streptococcus sanguinis bacteriocin (S.s bacteriocin), respectively; the bacteriostatic dynamics of S.s bacteriocin, their effects on cell surface hydrophobicity, leakage of inorganic phosphorus and macromolecular substance, cytosolic calcium concentration, and ultrastructure changes of Candida thallus were detected and analyzed. The results showed that inhibitory effect of S.s bacteriocin on C.a and C.t reached peak level at 24 h, the cell-surface hydrophobicity decreased significantly (P < 0.05) after S.s bacteriocin treatment, and there was leakage of cytoplasmic inorganic phosphorus and macromolecular substance from C.a and C.t; cytosolic calcium concentration decreased greatly. After 24 h treatment by S.s bacteriocin, depressive deformity and defect could be found in the cell surface of C.a and C.t; the thallus displayed irregular forms: C.a was shrunken, there was unclear margins abutting upon cell wall and cell membrane, nucleus disappeared, and cytoplasm was inhomogeneous; likewise, C.t was first plasmolysis, and then the cytoplasm was shrunk, the ultrastructure of cell wall and cell membrane was continuously damaged, and the nucleus was karyolysis. It was illustrated that S.s bacteriocin had similar antifungal effect on C.a and C.t; their cell surface hydrophobicity, membrane permeability, and ultrastructure were changed significantly on exposure to S.s bacteriocin.
机译:白色念珠菌(C.A)和热带假丝酵母(C.t)与血链球菌细菌素(S,S细菌素),分别处理; S.S细菌的抑菌动力学,其对细胞表面疏水性的影响,进行检测分析无机磷和大分子物质,细胞内钙浓度,和假丝酵母菌体的超微结构的变化的泄漏。结果表明SS细菌素的该抑制作用对Ca和CT在第24小时达到峰值水平,细胞表面疏水性SS细菌素治疗后显著降低(P <0.05),并且有选自Ca胞质无机磷和大分子物质的泄漏和CT;胞质钙浓度的大幅降低。后通过S.S细菌素处理24小时,抑郁性畸形和缺陷可能在C.A和C.t的细胞表面发现;菌体显示不规则形式:C.A被皱缩,还有不清楚边缘抵接在细胞壁和细胞膜,细胞核消失,细胞质不均匀;同样,C.t是第一壁分离,然后将细胞质收缩,细胞壁和细胞膜的超微结构连续损坏,并且细胞核核溶解。据图示了S.S细菌素对C.A和C.t类似抗真菌作用;它们的细胞表面的疏水性,膜的渗透性,和超微结构在​​暴露于细菌素S.S显著改变。

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