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Gas-liquid chromatography for evaluating polysaccharide degradation by Ruminococcus flavefaciens C94 and Bacteroides succinogenes S85.

机译:气液色谱法通过黄褐球菌C94和琥珀酸拟杆菌S85评估多糖的降解。

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摘要

Two predominant rumen cellulolytic bacteria, Ruminococcus flavefaciens C94 and Bacteroides succinogenes S85, were incubated with ground filter paper (Whatman no. 1), cattle manure fiber, wheat straw, Kentucky bluegrass, alfalfa, and corn silage as substrates. Analyses of the initial substrate and the recovered residue after 48 h of static incubation showed that R. flavefaciens C94 was quantitatively more effective than B. succinogenes S85 in degrading total dry matter (32.3% versus 16.1%). However, B. succinogenes S85 demonstrated a qualitative advantage in degrading the hemicellulose and hemicellulosic sugars of particular substrates. R. flavefaciens degraded a mean 29.7% of the cellulose and 35.6% of the hemicellulose in the various substrates, whereas B. succinogenes degraded a mean 17.9 and 31.6% of these fractions, respectively. Gas-liquid chromatography was an important aid in characterizing the polysaccharide-degrading capabilities of these rumen species.
机译:将两种主要的瘤胃纤维素分解细菌,黄褐球菌C94和琥珀酸杆菌S85,与地面滤纸(Whatman No. 1),牛粪纤维,小麦秸秆,肯塔基草,苜蓿和玉米青贮饲料作为底物孵育。静态孵育48小时后,对初始底物和回收的残留物进行的分析表明,黄曲霉C94在降解总干物质方面比B. succinogenes S85更有效(32.3%对16.1%)。然而,琥珀酸芽孢杆菌S85在降解特定底物的半纤维素和半纤维素糖方面显示出质量上的优势。黄曲霉菌在各种底物中平均降解了29.7%的纤维素和35.6%的半纤维素,而琥珀酸芽孢杆菌则分别降解了这些部分的17.9%和31.6%。气液色谱法是表征这些瘤胃菌种的多糖降解能力的重要帮助。

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