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Role of hydrophobicity in adhesion of wild yeast isolated from the ultrafiltration membranes of an apple juice processing plant

机译:疏水性对从苹果汁加工厂超滤膜分离的野生酵母粘附的作用

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摘要

The role of cell surface hydrophobicity in the adhesion to stainless steel (SS) of 11 wild yeast strains isolated from the ultraflltration membranes of an apple juice processing plant was investigated. The isolated yeasts belonged to four species: Candida krusei (5 isolates), Candida tropicalis (2 isolates), Kluyveromyces marxianus (3 isolates) and Rhodotorula mucilaginosa (1 isolate). Surface hydrophobicity was measured by the microbial adhesion to solvents method. Yeast cells and surfaces were incubated in apple juice and temporal measurements of the numbers of adherent cells were made. Ten isolates showed moderate to high hydrophobicity and 1 strain was hydrophilic. The hydrophobicity expressed by the yeast surfaces correlated positively with the rate of adhesion of each strain. These results indicated that cell surface hydrophobicity governs the initial attachment of the studied yeast strains to SS surfaces common to apple juice processing plants.
机译:研究了从苹果汁加工厂的超滤膜分离出的11种野生酵母菌株中细胞表面疏水性对不锈钢(SS)粘附的作用。分离的酵母属于四种:克鲁斯假丝酵母(5个分离株),热带假丝酵母(2个分离株),马克斯克鲁维酵母(3个分离株)和粘液红假单胞菌(1个分离株)。表面疏水性通过微生物对溶剂的粘附方法测量。将酵母细胞和表面在苹果汁中孵育,并对粘附细胞的数量进行时间测量。十个分离株显示中等至高疏水性,其中一株为亲水性。酵母表面表达的疏水性与每种菌株的粘附率呈正相关。这些结果表明,细胞表面的疏水性决定着所研究的酵母菌株与苹果汁加工厂常见的SS表面的初始结合。

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