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Adhesion and growth rate of Clostridium cellulolyticum ATCC 35319 on crystalline cellulose.

机译:解纤梭菌ATCC 35319在结晶纤维素上的附着力和生长速率。

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摘要

The rate of tritiated-thymidine incorporation into DNA was used to estimate Clostridium cellulolyticum H10 growth rates on Avicel cellulose, taking into consideration both the unattached cells and the cells adhered to the substrate. The generation time on cellobiose calculated from the data on cell density (4.5 h) agreed well with the generation time calculated by tritiated-thymidine incorporation (3.8 h). Growth on Avicel cellulose occurred when bacteria were adhered to their substrate; 80% of the biomass was detected on the cellulose. Taking into consideration attached and free bacteria, the generation time as determined by thymidine incorporation was about 8 h, whereas by bacterial-protein estimation it was about 13 h. In addition to the growth rate of the bacteria on the cellulose, the release of adhered cells constituted an important factor in the efficiency of the cellulolysis. The stage of growth influenced adhesion of C. cellulolyticum; maximum adhesion was found during the exponential phase. Under the conditions used, the end of growth was characterized by an acute release of biomass and cellulase activity from the cellulose. An exhaustion of the accessible cellulose could be responsible for this release.
机译:考虑到未附着的细胞和粘附在基质上的细胞,将used化胸腺嘧啶脱氧核苷掺入DNA的速率用于估计纤维素梭菌H10在Avicel纤维素上的生长速率。根据细胞密度数据计算的纤维二糖生成时间(4.5 h)与tri化胸苷掺入计算的生成时间(3.8 h)非常吻合。当细菌粘附在其底物上时,在Avicel纤维素上的生长就会发生。在纤维素上检测到80%的生物质。考虑到附着的细菌和游离细菌,通过胸苷掺入确定的产生时间为约8小时,而通过细菌-蛋白质估计为约13小时。除细菌在纤维素上的生长速率外,粘附细胞的释放是纤维素分解效率的重要因素。生长阶段影响解纤梭菌的粘附;在指数期发现最大的粘附力。在所使用的条件下,生长结束的特征在于从纤维素中急剧释放生物质和纤维素酶活性。可释放的纤维素的耗尽可能是这种释放的原因。

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