Kim Jae-Han, Shoemaker Sharon P, Mills David A
Department of Viticulture and Enology, University of California, Davis, CA 95616, USA.
California Institute of Food and Agricultural Research, University of California, Davis, CA 95616, USA.
Microbiology (Reading). 2009 Apr;155(Pt 4):1351-1359. doi: 10.1099/mic.0.024653-0.
Prioritization of sugar consumption is a common theme in bacterial growth and a problem for complete utilization of five and six carbon sugars derived from lignocellulose. Growth studies show that Lactobacillus brevis simultaneously consumes numerous carbon sources and appears to lack normal hierarchical control of carbohydrate utilization. Analysis of several independent L. brevis isolates indicated that co-utilization of xylose and glucose is a common trait for this species. Moreover, carbohydrates that can be used as a single carbon source are simultaneously utilized with glucose. Analysis of the proteome of L. brevis cells grown on glucose, xylose or a glucose/xylose mixture revealed the constitutive expression of the enzymes of the heterofermentative pathway. In addition, fermentative mass balances between mixed sugar inputs and end-products indicated that both glucose and xylose are simultaneously metabolized through the heterofermentative pathway. Proteomic and mRNA analyses revealed that genes in the xyl operon were expressed in the cells grown on xylose or on glucose/xylose mixtures but not in those grown on glucose alone. However, the expression level of XylA and XylB proteins in cells grown on a glucose/xylose mixture was reduced 2.7-fold from that observed in cells grown solely on xylose. These results suggest that regulation of xylose utilization in L. brevis is not stringently controlled as seen in other lactic acid bacteria, where carbon catabolite repression operates to prioritize carbohydrate utilization more rigorously.
糖类消耗的优先级是细菌生长中的一个常见主题,也是完全利用源自木质纤维素的五碳糖和六碳糖的一个问题。生长研究表明,短乳杆菌会同时消耗多种碳源,并且似乎缺乏对碳水化合物利用的正常层级控制。对多个独立的短乳杆菌分离株的分析表明,木糖和葡萄糖的共同利用是该物种的一个共同特征。此外,可以用作单一碳源的碳水化合物会与葡萄糖同时被利用。对在葡萄糖、木糖或葡萄糖/木糖混合物上生长的短乳杆菌细胞的蛋白质组分析揭示了异型发酵途径中酶的组成型表达。此外,混合糖输入与终产物之间的发酵质量平衡表明,葡萄糖和木糖都是通过异型发酵途径同时被代谢的。蛋白质组学和mRNA分析表明,木糖操纵子中的基因在以木糖或葡萄糖/木糖混合物为碳源生长的细胞中表达,但在仅以葡萄糖为碳源生长的细胞中不表达。然而,在葡萄糖/木糖混合物上生长的细胞中,XylA和XylB蛋白的表达水平比仅在木糖上生长的细胞中观察到的水平降低了2.7倍。这些结果表明,短乳杆菌中木糖利用的调控不像其他乳酸菌那样受到严格控制,在其他乳酸菌中,碳分解代谢物阻遏作用更严格地优先进行碳水化合物的利用。