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首页> 外文期刊>Molecular Plant-Microbe Interactions >A Pseudomonas syringae pv. tomato DC3000 Hrp (Type III Secretion) Deletion Mutant Expressing the Hrp System of Bean Pathogen P. syringae pv. syringae 61 Retains Normal Host Specificity for Tomato
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A Pseudomonas syringae pv. tomato DC3000 Hrp (Type III Secretion) Deletion Mutant Expressing the Hrp System of Bean Pathogen P. syringae pv. syringae 61 Retains Normal Host Specificity for Tomato

机译:丁香假单胞菌(Pseudomonas syringae)pv。番茄DC3000 Hrp(III型分泌物)缺失突变体,表达了大豆病原体丁香假单胞菌pv的Hrp系统。 syringae 61保留番茄的正常宿主特异性

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The plant pathogenic species Pseudomonas syringae is divided into numerous pathovars based on host specificity. For example, P. syringae pv. tomato DC3000 is pathogenic on tomato and Arabidopsis, whereas P. syringae pv. syringae 61 is pathogenic on bean. The ability of P. syringae strains to elicit the hypersensitive response (HR) in non-hosts or be pathogenic (or parasitic) in hosts is dependent on the Hrp (type III secretion) system and effector proteins this system is thought to inject into plant cells. To test the role of the Hrp system in determining host range, the hrp / hrc gene cluster ( hrpK through hrpR ) was deleted from DC3000 and complemented in trans with the orthologous cluster from strain 61. Mutant CUCPB5114 expressing the bean pathogen Hrp system on plasmid pCPP2071 retained the ability of wild-type DC3000 to elicit the HR in bean, to grow and cause bacterial speck in tomato, and to elicit a cultivar-specific (gene-for-gene) HR in tomato plants carrying the Pto resistance gene. However, the symptoms produced in compatible tomato plants involved markedly reduced chlorosis, and CUCPB5114(pCPP2071) did not grow or produce symptoms in Arabidopsis Col-0 although it was weakly virulent in NahG Arabidopsis. A hypersensitive-like collapse was produced by CUCPB5114(pCPP2071) in Arabidopsis Col-0 at 1 × 107 CFU/ml, but only if the bacteria also expressed AvrB, which is recognized by the RPM1 resistance gene in Col-0 and confers incompatibility. These observations support the concept that the P. syringae effector proteins, rather than secretion system components, are the primary determinants of host range at both the species and cultivar levels of host specificity.
机译:根据宿主特异性,植物病原体丁香假单胞菌被分为许多病原体。例如,丁香假单胞菌PV。番茄DC3000对番茄和拟南芥具有致病性,而丁香假单胞菌pv。丁香科61对豆有致病性。丁香假单胞菌菌株在非宿主中引起超敏反应(HR)或在宿主中引起致病性(或寄生虫)的能力取决于Hrp(III型分泌)系统和该系统中注入的效应蛋白。细胞。为了测试Hrp系统在确定宿主范围中的作用,从DC3000中删除了hrp / hrc基因簇(hrpK至hrpR),并反过来补充了菌株61的直系同源簇。突变体CUCPB5114在质粒上表达了豆病原体pCPP2071保留了野生型DC3000引发豆中HR,在番茄中生长并引起细菌斑点以及在带有Pto抗性基因的番茄植株中引发特定品种(基因对基因)HR的能力。然而,在兼容番茄植株中产生的症状明显减少了萎黄病,尽管CUCPB5114(pCPP2071)在拟南芥Col-0中没有生长或产生症状,尽管它在NahG拟南芥中的毒性很弱。 CUCPB5114(pCPP2071)在拟南芥Col-0中以1×10 7 CFU / ml产生超敏样塌陷,但前提是细菌还表达了被RPM1抗性基因识别的AvrB。在Col-0中并赋予不兼容性。这些观察结果支持丁香假单胞菌效应蛋白而不是分泌系统组分,是在宿主特异性的物种和品种水平上宿主范围的主要决定因素。

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