首页> 外文期刊>Journal of Experimental Botany >Pseudomonas brassicacearum strain Am3 containing 1-aminocyclopropane-1-carboxylate deaminase can show both pathogenic and growth-promoting properties in its interaction with tomato
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Pseudomonas brassicacearum strain Am3 containing 1-aminocyclopropane-1-carboxylate deaminase can show both pathogenic and growth-promoting properties in its interaction with tomato

机译:含有1-氨基环丙烷-1-羧酸脱氨酶的铜绿假单胞菌菌株Am3在与番茄的相互作用中可表现出致病性和促进生长的特性

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摘要

The role of bacterial 1-aminocyclopropane-1-carboxylate (ACC) deaminase activity in the interaction between tomato (Lycopersicon esculentum=Solanum lycopersicum) and Pseudomonas brassicacearum was studied in different strains. The phytopathogenic strain 520-1 possesses ACC deaminase activity, an important trait of plant growth-promoting rhizobacteria (PGPR) that stimulates root growth. The ACC-utilizing PGPR strain Am3 increased in vitro root elongation and root biomass of soil-grown tomato cv. Ailsa Craig at low bacterial concentrations (106 cells ml?1 in vitro and 106 cells g?1 soil) but had negative effects on in vitro root elongation at higher bacterial concentrations. A mutant strain of Am3 (designated T8-1) that was engineered to be ACC deaminase deficient failed to promote tomato root growth in vitro and in soil. Although strains T8-1 and 520-1 inhibited root growth in vitro at higher bacterial concentrations (>106 cells ml?1), they did not cause disease symptoms in vitro after seed inoculation, or in soil supplemented with bacteria. All the P. brassicacearum strains studied caused pith necrosis when stems or fruits were inoculated with a bacterial suspension, as did the causal organism of this disease (P. corrugata 176), but the non-pathogenic strain Pseudomonas sp. Dp2 did not. Strains Am3 and T8-1 were marked with antibiotic resistance and fluorescence to show that bacteria introduced to the nutrient solution or on seeds in vitro, or in soil were capable of colonizing the root surface, but were not detected inside root tissues. Both strains showed similar colonization ability either on root surfaces or in wounded stems. The results suggest that bacterial ACC deaminase of P. brassicacearum Am3 can promote growth in tomato by masking the phytopathogenic properties of this bacterium.
机译:在不同菌株中研究了细菌1-氨基环丙烷-1-羧酸盐(ACC)脱氨酶活性在番茄(番茄Lycopersicon esculentum = Solanum lycopersicum)和铜绿假单胞菌之间的相互作用中的作用。植物致病菌株520-1具有ACC脱氨酶活性,这是植物生长的根瘤菌(PGPR)的重要特征,可刺激根系生长。利用ACC的PGPR菌株Am3增加了土壤栽培番茄的体外根伸长和根生物量。低细菌浓度的Ailsa Craig(体外10 6 细胞ml ?1 和10 6 细胞g ?1 土壤),但在较高细菌浓度下对体外根伸长有负面影响。工程为ACC脱氨酶缺陷的Am3突变株(命名为T8-1)未能在体外和土壤中促进番茄根的生长。尽管菌株T8-1和520-1在较高的细菌浓度(> 10 6 细胞ml ?1 )下抑制了根的生长,但它们并未在体外引起疾病症状接种种子后,或在补充细菌的土壤中。当对茎或果实接种细菌悬液时,所有研究的黄铜假单胞菌菌株均引起髓坏死,该病的致病菌也是如此(P. corrugata 176),但非致病性假单胞菌假单胞菌属。 Dp2没有。 Am3和T8-1菌株具有抗生素抗性和荧光标记,表明在体外或在土壤中或在土壤中引入营养液或种子的细菌均能在根表面定殖,但在根组织内部未检出。两种菌株在根表面或受伤的茎中均显示出相似的定殖能力。结果表明,铜绿假单胞菌Am3的细菌ACC脱氨酶可以通过掩盖该细菌的致病性来促进番茄的生长。

著录项

  • 来源
    《Journal of Experimental Botany》 |2007年第6期|1485-1495|共11页
  • 作者单位

    All-Russia Research Institute for Agricultural Microbiology (ARRIAM) Podbelskogo Sh. 3 Pushkin-8 196608 St-Petersburg Russian Federation;

    Department of Biological Sciences University of Lancaster Lancaster LA1 4YQ UK;

    Department of Biology University of Waterloo Waterloo ON Canada N2L 3G1;

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