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Novel permittivity test for determination of yeast surface charge and flocculation abilities

机译:用于确定酵母表面电荷和絮凝能力的新型介电常数测试

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摘要

Yeast flocculation has been found to be important in many biotechnological processes. It has been suggested that flocculation is promoted by decreasing electrostatic repulsion between cells. In this study, we used an unconventional rapid technique—permittivity test—for determination of the flocculation properties and surface charge values of three industrial yeast strains with well-known flocculation characteristics: Saccharomyces cerevisiae NCYC 1017 (brewery, ale), S. pastorianus NCYC 680 (brewery, lager), and Debaryomyces occidentalis LOCK 0251 (unconventional amylolytic yeast). The measurements of permittivity were compared with the results from two classical methods for determination of surface charge: Alcian blue retention and Sephadex DEAE attachment. The permittivity values for particular strains correlated directly with the results of Alcian blue retention (r = 0.9). The results also confirmed a strong negative relationship between the capacitance of yeast suspensions and their flocculation abilities. The highest permittivity was noted for the ale strain NCYC 1017, with weak flocculation abilities, and the lowest for the flocculating lager yeast NCYC 680. This paper is the first to describe the possibility of using a rapid permittivity test to evaluate the surface charge of yeast cells and their flocculation abilities. This method is of practical value in various biotechnological industries where flocculation is applied as a major method of cell separation.
机译:已经发现酵母絮凝在许多生物技术过程中很重要。已经提出通过减少细胞之间的静电排斥来促进絮凝。在这项研究中,我们使用了一种非常规的快速技术-介电常数测试-来测定三种具有著名絮凝特性的工业酵母菌株的絮凝特性和表面电荷值:酿酒酵母NCYC 1017(酿酒厂,啤酒厂),S.pastorianus NCYC 680(酿酒厂,啤酒)和Debaryomyces occidentalis LOCK 0251(非常规淀粉分解酵母)。将介电常数的测量结果与两种用于测定表面电荷的经典方法的结果进行了比较:阿尔辛蓝保留率和Sephadex DEAE附着力。特定菌株的介电常数值直接与Alcian蓝保留值相关(r = 0.9)。结果还证实了酵母悬浮液的电容与其絮凝能力之间的强烈负相关。注意到强力菌株NCYC 1017的介电常数最高,絮凝能力较弱,而絮凝的大型酵母NCYC 680的介电常数最低。本文首次描述了使用快速介电常数测试评估酵母表面电荷的可能性。细胞及其絮凝能力。该方法在各种生物技术行业具有实用价值,在这些行业中,絮凝是细胞分离的主要方法。

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