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Inhibitory Effects of Methylcellulose on Cellulose Degradation by Ruminococcus flavefaciens

机译:甲基纤维素对黄连球菌纤维素降解的抑制作用

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Highly methylated, long-chain celluloses strongly inhibited cellulose degradation by several species of cellulolytic bacteria of ruminal origin. Specifically, the inhibitory effects of methylcellulose on the growth of Ruminococcus flavefaciens FD1 were concentration dependent, with complete inhibition at 0.1% (wt/vol). However, methylcellulose did not inhibit growth on cellobiose or cellulooligosaccharides. Mixtures of methylated cellulooligosaccharides having an average degree of polymerization of 6.7 to 9.5 inhibited cellulose degradation, but those with an average degree of polymerization of 1.0 to 4.5 did not. Similar inhibitory effects by methylcellulose and, to a lesser extent, by methyl cellulooligosaccharides were observed on cellulase activity, as measured by hydrolysis of p-nitrophenyl-β-d-cellobioside. R. flavefaciens cultures hydrolyzed cellulooligosaccharides to cellobiose and cellotriose as final end products. Cellopentaose and cellohexaose were cleaved to these end products, but cellotetraose was also formed from cellohexaose. Methylcellulose did not inhibit hydrolysis of cellulooligosaccharides. These data are consistent with the presence of separate cellulase (β-1,4-glucanase) and cellulodextrinase activities in R. flavefaciens.
机译:高度甲基化的长链纤维素强烈抑制了几种瘤胃来源的纤维素分解细菌对纤维素的降解。具体地,甲基纤维素对黄褐球菌FD1的生长的抑制作用是浓度依赖性的,完全抑制在0.1%(wt / vol)。然而,甲基纤维素不抑制纤维二糖或纤维素低聚糖上的生长。平均聚合度为6.7至9.5的甲基化纤维素低聚糖混合物可抑制纤维素降解,但平均聚合度为1.0至4.5的混合物则不能抑制纤维素降解。通过对硝基苯基-β-d-纤维二糖苷的水解测定,观察​​到了甲基纤维素和较小范围内的甲基纤维素低聚糖对纤维素酶活性的类似抑制作用。 Rave flavefaciens将水解的纤维素低聚糖培养为纤维二糖和纤维三糖,作为最终产品。纤维戊糖和纤维六糖被切割成这些终产物,但是纤维四糖也由纤维六糖形成。甲基纤维素不抑制纤维素低聚糖的水解。这些数据与黄曲霉中分开的纤维素酶(β-1,4-葡聚糖酶)和纤维素糊精酶活性的存在是一致的。

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