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Adhesion of Cellulolytic Ruminal Bacteria to Barley Straw

机译:纤维素分解瘤细菌对大麦秸秆的粘附

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Adhesion of the cellulolytic ruminal bacteria Ruminococcus flavefaciens and Fibrobacter succinogenes to barley straw was measured by incubating bacterial suspensions with hammer-milled straw for 30 min, filtering the mixtures through sintered glass filters, and measuring the optical densities of the filtrates. Maximum adhesion of both species occurred at pH 6.0 and during mid- to late-exponential phase. Adhesion was saturable at 33 and 23 mg (dry weight) g of straw?1 for R. flavefaciens and F. succinogenes, respectively. Methyl cellulose and carboxymethyl cellulose inhibited adhesion by 24 to 33%. Competition between species was determined by measuring characteristic cell-associated enzyme activities in filtrates of mixtures incubated with straw; p-nitrophenyl-β-d-lactopyranoside hydrolysis was used as a marker for F. succinogenes, while either β-xylosidase or carboxymethyl cellulase was used for R. flavefaciens, depending on the other species present. R. flavefaciens had no influence on F. succinogenes adhesion, and F. succinogenes had only a minor (R. flavefaciens adhesion. The noncellulolytic ruminal bacteria Bacteroides ruminicola and Selenomonas ruminantium had no influence on adhesion of either cellulolytic species, although these organisms also adhered to the straw. We concluded that R. flavefaciens and F. succinogenes have separate, specific adhesion sites on barley straw that are not obscured by competition with non-cellulolytic species.
机译:通过将细菌悬浮液与锤磨的稻草孵育30分钟,通过烧结玻璃过滤器过滤混合物,并测量滤液的光学密度,来测量纤维素分解瘤胃细菌黄褐球菌和琥珀酸纤维杆菌对大麦稻草的粘附力。两种物质的最大附着力发生在pH 6.0和指数中期到指数后期。对于黄曲霉和琥珀酸杆菌而言,分别以33和23mg(干重)g的秸秆?1饱和。甲基纤维素和羧甲基纤维素将粘附力降低了24%至33%。通过测量用稻草孵育的混合物的滤液中特征性的细胞相关酶活性来确定物种之间的竞争。对硝基苯基-β-d-戊吡喃糖苷水解用作琥珀酸杆菌的标记物,而β-木糖苷酶或羧甲基纤维素酶用于黄曲霉,取决于存在的其他种类。黄曲霉菌对琥珀酸杆菌的黏附没有影响,而丁二酸杆菌的影响很小。我们得出的结论是,R。flavefaciens和F. succinogenes在大麦秸秆上具有单独的特定粘附位点,不会因与非纤维素分解物种的竞争而被遮盖。

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