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Potential of Agrobacterium tumefaciens and Octopine-Utilizing Fluorescent Pseudomonas Strains To Attach to Susceptible Potato Tissues

机译:根癌农杆菌和利用章鱼碱的荧光假单胞菌菌株附着在易感马铃薯组织上的潜力

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摘要

The binding characteristics of two octopine-catabolizing pseudomonads, Pseudomonas fluorescens B99A and E175D, which were isolated from crown galls, have been examined. The binding of strain B99A to potato disks was very weak, followed a Freundlich isotherm, and was temperature and pH independent. Strain E175D displayed strong attachment and followed a Langmuir isotherm. Despite these fundamental differences in binding characteristics, when each strain was placed in competitive binding assays with either Agrobacterium tumefaciens B6 or A. tumefaciens ATCC 15955, the number of bound pseudomonad cells decreased compared with those obtained in independent trials. Furthermore, the binding of A. tumefaciens cells was increased. In prebinding experiments, in which the potato disks were bound with the pseudomonads before exposure to the agrobacteria, the number of bound pseudomonad cells again decreased. This implies that increased desorption was occurring. In these prebinding studies, the numbers of bound A. tumefaciens ATCC 15955 increased, but the number of bound A. tumefaciens B6 remained the same. The mechanism for this observed synergism on the binding of agrobacterial cells and the depression in bound pseudomonad cells is believed to be alterations in the electrostatic or ionic charges on the plant and bacterial cell surfaces. The synergistic effect on A. tumefaciens undermines the use of these pseudomonads as potential biocontrol agents for crown gall.
机译:从冠gall中分离出的两种章鱼碱可分解代谢假单胞菌荧光假单胞菌B99A和E175D的结合特性已得到检验。 B99A菌株与马铃薯圆盘的结合非常弱,遵循弗氏等温线,并且与温度和pH无关。 E175D菌株显示出牢固的附着力,并遵循Langmuir等温线。尽管结合特性存在这些根本差异,但是当将每种菌株与根癌农杆菌B6或根癌农杆菌ATCC 15955进行竞争性结合测定时,与独立试验相比,结合的假单核细胞数量减少了。此外,增加了根癌农杆菌细胞的结合。在预结合实验中,马铃薯圆片在暴露于农杆菌之前与假单胞菌结合,结合的假单胞菌细胞数再次减少。这意味着发生了增加的解吸。在这些预结合研究中,结合的根癌土壤杆菌ATCC 15955的数量增加,但是结合的根癌土壤杆菌B6的数量保持不变。据信在农杆菌细胞的结合和结合的假单核细胞中的抑制上观察到的协同作用的机制是植物和细菌细胞表面上的静电或离子电荷的改变。对根癌农杆菌的协同作用破坏了将这些假单胞菌用作冠gall的潜在生物防治剂的用途。

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