首页> 外文期刊>Antonie van Leeuwenhoek: Journal of Microbiology and serology >Use of the tetrazolium salt MTT to measure cell viability effects of the bacterial antagonist Lysobacter enzymogenes on the filamentous fungus Cryphonectria parasitica
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Use of the tetrazolium salt MTT to measure cell viability effects of the bacterial antagonist Lysobacter enzymogenes on the filamentous fungus Cryphonectria parasitica

机译:使用四唑盐MTT来测量细菌拮抗剂粘膜诱导的细胞活力效应对丝状真菌丧失乳碱基

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摘要

Despite substantial interest investigating bacterial mechanisms of fungal growth inhibition, there are few methods available that quantify fungal cell death during direct interactions with bacteria. Here we describe an in vitro cell suspension assay using the tetrazolium salt MTT as a viability stain to assess direct effects of the bacterial antagonist Lysobacter enzymogenes on hyphal cells of the filamentous fungus Cryphonectria parasitica. The effects of bacterial cell density, fungal age and the physiological state of fungal mycelia on fungal cell viability were evaluated. As expected, increased bacterial cell density correlated with reduced fungal cell viability over time. Bacterial effects on fungal cell viability were influenced by both age and physiological state of the fungal mycelium. Cells obtained from 1-week-old mycelia lost viability faster compared with those from 2-week-old mycelia. Likewise, hyphal cells obtained from the lower layer of the mycelial pellicle lost viability more quickly compared with cells from the upper layer of the mycelial pellicle. Fungal cell viability was compared between interactions with L. enzymogenes wildtype strain C3 and a mutant strain, DCA, which was previously demonstrated to lack in vitro antifungal activity. Addition of antibiotics eliminated contributions to MTT-formazan production by bacterial cells, but not by fungal cells, demonstrating that mutant strain DCA had lost complete capacity to reduce fungal cell viability. These results indicate this cell suspension assay can be used to quantify bacterial effects on fungal cells, thus providing a reliable method to differentiate strains during bacterial/fungal interactions.
机译:尽管有大量的兴趣调查真菌生长抑制的细菌机制,但仍有很少的方法可用于在与细菌直接相互作用期间量化真菌细胞死亡。在这里,我们描述了使用四唑鎓盐MTT作为活力染色的体外细胞悬浮液试验,以评估细菌拮抗剂溶血杆菌的直接作用对丝状真菌Cryphonectria Parasitica的亚膦细胞。评估了细菌细胞密度,真菌年龄和真菌菌丝病毒对真菌细胞活力的影响。正如预期的那样,随着时间的推移,增加的细菌细胞密度与降低的真菌细胞活力相关。受真菌菌丝菌丝病毒的年龄和生理状态影响了对真菌细胞活力的细菌影响。与来自2周龄菌丝体的人相比,从1周龄菌丝体获得的细胞损失了活力。同样,与来自菌丝体薄膜的上层的细胞相比,从菌丝膜的下层获得的菌丝细胞更快地丧失活力。将真菌细胞活力与L.酶野生型菌株C3的相互作用进行比较和突变菌株,先前证明缺乏体外抗真菌活性的DCA。通过细菌细胞添加抗生素对MTT-甲醛产生的贡献,但不是通过真菌细胞,表明突变菌株DCA失去了降低真菌细胞活力的完全能力。这些结果表明该细胞悬浮液测定可用于量化对真菌细胞的细菌作用,从而提供可靠的方法在细菌/真菌相互作用期间分化菌株。

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