Slováková L, Dusková D, Marounek M
Institute of Animal Physiology and Genetics, Czech Academy of Sciences, Prague, Uhrineves CZ, Czech Republic.
Lett Appl Microbiol. 2002;35(2):126-30. doi: 10.1046/j.1472-765x.2002.01159.x.
In a rabbit caecal bacterium Bifidobacterium pseudolongum, metabolites of pectin and glucose, and activities of enzymes involved in the degradation of pectin were assayed. Simultaneously, activities of these enzymes were assayed in a rumen pectinolytic strain of Streptococcus bovis.
A strain B. pseudolongum P6 which grew best on pectin was selected among bifidobacteria isolated from the rabbit caecum. Cultures of B. pseudolongum P6 grown on pectin produced significantly less formate, lactate and ethanol, and more acetate and succinate than cultures grown on glucose. No CO2 production on pectin was observed. Pectin macromolecule was degraded by extracellular pectinase (EC 3.2.1.15). Cell extracts possessed the activity of 2-keto-3-deoxy-6-phosphogluconate (KDPG) aldolase (EC 4.1.2.14). Streptococcus bovis X4, possessed activity of exopectate lyase and pectinase, but not that of KDPG aldolase.
Our results are consistent with the assumption that in B. pseudolongum P6 acidic products of pectin degradation are catabolized via a modified Entner-Doudoroff pathway, as shown previously in rumen pectin-utilizing bacteria. The missing KDPG aldolase activity in Strep. bovis X4 seems to be the reason for the absence of growth of this bacterium on pectin.
Information on polysaccharide metabolism in bifidobacteria is fragmentary. This study extends the knowledge on pectin metabolism in intestinal bacteria.
对兔盲肠中的假长双歧杆菌进行果胶和葡萄糖代谢产物以及参与果胶降解的酶活性分析。同时,对牛链球菌瘤胃果胶分解菌株中的这些酶活性进行分析。
从兔盲肠分离出的双歧杆菌中筛选出在果胶上生长最佳的假长双歧杆菌P6菌株。与在葡萄糖上生长的培养物相比,在果胶上生长的假长双歧杆菌P6培养物产生的甲酸盐、乳酸盐和乙醇显著减少,而乙酸盐和琥珀酸盐更多。未观察到果胶上有二氧化碳产生。果胶大分子被细胞外果胶酶(EC 3.2.1.15)降解。细胞提取物具有2-酮-3-脱氧-6-磷酸葡萄糖酸(KDPG)醛缩酶(EC 4.1.2.14)的活性。牛链球菌X4具有外切果胶裂解酶和果胶酶活性,但不具有KDPG醛缩酶活性。
我们的结果与以下假设一致,即假长双歧杆菌P6中果胶降解的酸性产物通过改良的Entner-Doudoroff途径进行分解代谢,如先前在瘤胃利用果胶的细菌中所示。牛链球菌X4中缺失的KDPG醛缩酶活性似乎是该细菌在果胶上无法生长的原因。
双歧杆菌多糖代谢的信息尚不完整。本研究扩展了对肠道细菌果胶代谢的认识。