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Effect of peptones on the ability of plant pathogenic bacteria to grow on media supplemented with copper sulphate

机译:辣椒对硫酸铜补充培养基植物病原菌生长的影响

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The extensive use of copper compounds for control of bacterial plant pathogens could lead to selecting strains of the pathogens that are copper-resistant. The ability to grow on a medium supplemented with copper, and therefore the concentration of copper to which bacterial strains are resistant, depends on the composition of the medium used for the test. The effects of different peptones (casitone and proteose peptone No. 3) and different media on the ability of strains of Pseudomonas syringae to grow in presence of copper were determined. Similar results were obtained when casitone was substituted with proteose peptone No. 3 in casitone yeast extract medium, but not when those two peptones were interchanged in King's B medium. In water, casitone allowed strains of P. syringae pv. actinidiae (Psa) to grow in the presence of higher amounts of copper than proteose peptone No. 3 did. In all cases, resistance to copper was increased with increased peptone concentration.
机译:用于控制细菌植物病原体的广泛使用铜化合物可能导致选择耐铜的病原体的菌株。 在补充有铜的培养基上生长的能力,从而抵抗细菌菌株的浓度,取决于用于测试的培养基的组成。 确定了不同百分点(CASITONE和蛋白质肽No.3)和不同培养基对铜存在于铜存在的假单胞菌菌株菌株能力的影响。 当Casitone被Casitone酵母提取物培养基中的蛋白酶蛋白胨被取代时,获得了类似的结果,但当那些两种百分点在王B中的培养基中互换时。 在水中,Casitone允许的p. stringae pv菌株。 Actinidiae(PSA)在高量铜存在下生长而不是蛋白酶蛋白胨。 在所有情况下,随着蛋白胨浓度增加而增加对铜的抗性。

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