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Investigation of the cell surface structures of agrobacteria involved in bacterial and plant interactions

机译:农杆菌细胞表面结构参与细菌和植物相互作用的研究

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Agrobacterial cells produced straight microfibrils not only when in contact with wheat seedling roots, but also when in contact with each other. After 2 h of incubation, agrobacterial cells were found to form aggregates, in which the cells were in contact either directly or through thick straight microfibrils (bridges) of an unknown composition. The majority of the microfibrils were susceptible to attack by cellulase, although some of them showed resistance to this enzyme. Like the wild-type flagellated agrobacteria, their bald mutants produced long straight microfibrils. The cell surface structures of agrobacteria were examined by labeling them immunocytochemically with colloidal gold-conjugated antibodies against O-specific lipopolysaccharides, Vir proteins, and cellulase. Agrobacterial cells treated with acetosyringone and brought into contact were found to contain subpolar and polar cell surface structures. Antibodies against the VirB2 protein were able to interact with a tuft of thin microfibrils located on one pole of the agrobacterial cell whose vir genes were induced by acetosyringone but were unable to interact with the surface structures of the agrobacterial cells aggregated in liquid medium in the absence of wheat seedlings. [References: 20]
机译:农杆菌细胞不仅在与小麦幼苗的根接触时产生直的微纤维,而且在彼此接触时也产生直的微纤维。温育2小时后,发现农杆菌细胞形成聚集体,其中细胞直接或通过未知组成的粗直微纤维(桥)接触。大多数微纤维对纤维素酶敏感,尽管其中一些对这种酶具有抗性。像野生型鞭毛农杆菌一样,它们的秃头突变体产生长而直的微纤维。用抗O-特异性脂多糖,Vir蛋白和纤维素酶的胶体金结合抗体对农杆菌的细胞表面结构进行免疫标记。发现用乙酰丁香酮处理并接触的农杆菌细胞含有亚极性和极性细胞表面结构。针对VirB2蛋白的抗体能够与位于农杆菌细胞一极上的一簇细微纤维相互作用,其病毒基因是由乙酰丁香酮诱导的,但是在不存在液体培养基的情况下无法与聚集在液体培养基中的农杆菌细胞的表面结构相互作用。小麦幼苗。 [参考:20]

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