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1 re, the epoxide hydrolase from Agrobacterium radiobacter AD1 (EchA), which enables growth on epichlor
2 ase and epoxide hydrolase from Agrobacterium radiobacter AD1.
3 ae, Agrobacterium tumefaciens, Agrobacterium radiobacter, and others.
4 lardii, Ralstonia mannitolilytica, Rhizobium radiobacter, and Xanthomonas sp.
5 ical endophthalmitis caused by Agrobacterium radiobacter in a 70-year-old male is reported.
6 84b found in the nonpathogenic Agrobacterium radiobacter isolate K84.
7 racterized amidohydrolase from Agrobacterium radiobacter K84 (Arad3529) were computed on the basis of
8 ated with a novel polymer from Agrobacterium radiobacter k84 (ARB) were characterised during 60days o
9                 The biocontrol Agrobacterium radiobacter K84 secretes the Trojan Horse antibiotic agr
10 oduced by the biocontrol agent Agrobacterium radiobacter K84 that targets pathogenic strains of A. tu
11 tudy, the genomes of the biovar II strain A. radiobacter K84, a commercially available biological con
12 ted by the nonpathogenic biocontrol agent A. radiobacter K84, which prevents disease by production of
13                                           A. radiobacter organisms are normally environmental bacteri
14                                    Rhizobium radiobacter), Ralstonia solanacearum, Xanthomonas citri
15 ccharides (LOS) from the bacterium Rhizobium radiobacter Rv3 are structurally related to antigenic ma
16 ia (Agrobacterium tumefaciens, Agrobacterium radiobacter, Serratia marcescens, and Pseudomonas aureof
17 yl amino acid binding protein from Rhizobium radiobacter (SocA), which binds to alpha-fructosyl amino
18  caused by a ceftazidime-resistant Rhizobium radiobacter strain in a 62-year-old male.
19     The patient remained symptomatic, and R. radiobacter was isolated repeatedly from vitreous fluid