Tsvid E E, Shkop Ia Ia, Pozmogova I N, Shul'govskaia E M
Mikrobiologiia. 1981 Jul-Aug;50(4):659-64.
The electrokinetic properties of cells were studied with the batch and continuous cultures of Bacillus megaterium and the chemostat culture of Candida utilis. The above cells growing at a higher rate had a higher electrophoretic mobility and a greater negative zeta potential; this seems to stem from the accumulation of negatively charged groups on their surface. The bacterial cells had higher values of electrophoretic mobility and electrokinetic potential comparing to the yeast cells; the electrokinetic properties of the bacterial cells changed more with a variation of the growth rate than in the yeast cells.
利用巨大芽孢杆菌的分批培养和连续培养以及产朊假丝酵母的恒化器培养研究了细胞的电动特性。上述生长速率较高的细胞具有较高的电泳迁移率和更大的负ζ电位;这似乎源于其表面带负电基团的积累。与酵母细胞相比,细菌细胞具有更高的电泳迁移率和电动电位值;细菌细胞的电动特性随生长速率变化的改变比酵母细胞更大。