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首页> 外文期刊>Applied and Environmental Microbiology >Effects of Physicochemical Factors on the Adhesion to Cellulose Avicel of the Ruminal Bacteria Ruminococcus flavefaciens and Fibrobacter succinogenes subsp. succinogenes
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Effects of Physicochemical Factors on the Adhesion to Cellulose Avicel of the Ruminal Bacteria Ruminococcus flavefaciens and Fibrobacter succinogenes subsp. succinogenes

机译:理化因素对瘤细菌鲁米诺球菌和琥珀酸纤维杆菌亚种对纤维素微囊粘附的影响。琥珀酸

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Ruminococcus flavefaciens adhered instantly to cellulose, while Fibrobacter succinogenes had the highest percentage of adherent cells after about 25 min of contact between bacteria and cellulose. Adhesion of R. flavefaciens was unaffected by high concentrations of sugars (5%), temperature, pH, oxygen, metabolic inhibitors, and lack of Na+. In contrast, the attachment was affected by the removal of divalent cations (Mg2+ and Ca2+), the presence of cellulose derivatives (methylcellulose and hydroxyethylcellulose), and cystine. Adhesion of F. succinogenes was sensitive to low and high temperatures, high concentrations of glucose and cellobiose (5%), hydroxyethylcellulose (0.1%), redox potential, pH, lack of monovalent cations, and the presence of an inhibitor of membrane ATPases or lasalocid and monensin. Cells of F. succinogenes heated at 100°C no longer were adherent. On the other hand, adhesion was insensitive to the lack of divalent cations (Mg2+ and Ca2+), the presence of 2,4-dinitrophenol, tetrachlorosalicylanilide, or inhibitors of the electron transfer chains. Adhesion of F. succinogenes seems to be related to the metabolic functions of the cell. External proteins and/or cellulases themselves might play a part in the attachment process. Several mechanisms are probably involved in the adhesion of R. flavefaciens, the main one being the interaction between the large glycocalyx and the divalent cations Ca2+ and Mg2+. Hydrophobic bonds and enzymes may also be involved.
机译:黄褐球菌立即粘附于纤维素,而细菌和纤维素接触约25分钟后,琥珀酸纤维杆菌的粘附细胞百分比最高。黄曲霉的粘附不受高浓度糖(5%),温度,pH,氧气,代谢抑制剂和缺乏Na +的影响。相反,附着受到二价阳离子(Mg2 +和Ca2 +)的去除,纤维素衍生物(甲基纤维素和羟乙基纤维素)和胱氨酸的影响。琥珀酸葡萄球菌的粘附对低温和高温,高浓度的葡萄糖和纤维二糖(5%),羟乙基纤维素(0.1%),氧化还原电势,pH,单价阳离子的缺乏以及膜抑制剂的存在敏感。 ATPase或lasalocid和莫能菌素。在100°C加热的琥珀酸短螺旋杆菌细胞不再粘附。另一方面,粘附对缺少二价阳离子(Mg2 +和Ca2 +),2,4-二硝基苯酚,四氯水杨基苯胺或电子转移链抑制剂不敏感。琥珀酸葡萄球菌的粘附似乎与细胞的代谢功能有关。外部蛋白质和/或纤维素酶本身可能在附着过程中起作用。黄褐菌的粘附可能涉及多种机制,主要的机制是大糖萼与二价阳离子Ca2 +和Mg2 +之间的相互作用。疏水键和酶也可能参与。

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