Roger V, Fonty G, Andre C, Gouet P
Laboratory of Microbiology, INRA, C.R. Saint-Genes-Champanelle, France.
Curr Microbiol. 1992 Oct;25(4):197-201. doi: 10.1007/BF01570719.
The effect of glycerol on the growth, adhesion, and cellulolytic activity of two rumen cellulolytic bacterial species, Ruminococcus flavefaciens and Fibrobacter succinogenes subsp. succinogenes, and of an anaerobic fungal species, Neocallimastix frontalis, was studied. At low concentrations (0.1-1%), glycerol had no effect on the growth, adhesion, and cellulolytic activity of the two bacterial species. However, at a concentration of 5%, it greatly inhibited their growth and cellulolytic activity. Glycerol did not affect the adhesion of bacteria to cellulose. The growth and cellulolytic activity of N. frontalis were inhibited by glycerol, increasingly so at higher concentrations. At a concentration of 5%, glycerol totally inhibited the cellulolytic activity of the fungus. Thus, glycerol can be added to animal feed at low concentrations.
研究了甘油对两种瘤胃纤维素分解细菌——黄化瘤胃球菌和琥珀酸纤维杆菌琥珀酸亚种,以及一种厌氧真菌——前额新美鞭菌的生长、黏附及纤维素分解活性的影响。在低浓度(0.1% - 1%)时,甘油对这两种细菌的生长、黏附及纤维素分解活性没有影响。然而,在5%的浓度下,它极大地抑制了它们的生长和纤维素分解活性。甘油不影响细菌与纤维素的黏附。前额新美鞭菌的生长和纤维素分解活性受到甘油的抑制,且在较高浓度下抑制作用增强。在5%的浓度下,甘油完全抑制了该真菌的纤维素分解活性。因此,甘油可以以低浓度添加到动物饲料中。