首页> 外文期刊>Journal of Phytopathology >In vitro Antibiosis by Pseudomonas syringae Pss22d, Acting Against the Bacterial Blight Pathogen of Soybean Plants, Does Not Influence In planta Biocontrol
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In vitro Antibiosis by Pseudomonas syringae Pss22d, Acting Against the Bacterial Blight Pathogen of Soybean Plants, Does Not Influence In planta Biocontrol

机译:丁香假单胞菌(Pseudomonas syringae)Pss22d的体外抗菌作用,抗大豆植物的细菌性白叶枯病病原体,不影响植物的生物防治

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摘要

The epiphyte Pseudomonas syringae pv. syringae 22d / 93 (Pss22d), isolated from soybean leaves, had been characterized as a promising and species-specific biocontrol strain in vitro and in planta against the plant pathogen P. syringae pv. glycinea (Psg), which causes bacterial blight of soybean. Three toxins are known to be produced by Pss22d: syringomycin, syringopeptin and 3-methylarginine (MeArg). In contrast to syringopeptin and syringomycin, MeArg inhibited the growth of Psg in vitro. To examine if the toxins produced by Pss22d are responsible for antagonistic effects in planta, the pathogen Psg was co-inoculated with either Pss22d wild-type, a syringopeptin/syringomycin-negative double mutant (Pss22d.sypA/syrE), or a MeArg-negative mutant (Pss22d.1) into wounds of pin-pricked leaves of greenhouse-grown soybean plants, respectively. In all three cases, the wild-type Pss22d and its toxin-deficient mutants prevented development of disease symptoms normally caused by Psg. These results indicated that neither syringopeptin, nor syringomycin, nor MeArg was required for Pss22d's antagonistic activity in planta. Consequently, factors other than the three toxins may contribute to the intra-species antagonism in planta.
机译:附生植物丁香假单胞菌PV。从大豆叶片中分离出的丁香香脂22d / 93(Pss22d)已被表征为在体外和植物中针对植物病原体丁香锈菌pv的一种有前途且具有物种特异性的生物防治菌株。甘氨酸(Psg),引起大豆的细菌性枯萎病。已知Pss22d会产生三种毒素:丁香霉素,丁香肽素和3-甲基精氨酸(MeArg)。与syringopeptin和syringomycin相比,MeArg在体外抑制Psg的生长。为了检查Pss22d产生的毒素是否对植物产生拮抗作用,将病原体Psg与Pss22d野生型,syringopeptin / syringomycin阴性双重突变体(Pss22d.sypA / syrE)或MeArg-共同接种负突变体(Pss22d.1)分别进入温室种植大豆植物的针刺叶伤口。在所有三种情况下,野生型Pss22d及其毒素缺乏突变体均阻止了通常由Psg引起的疾病症状的发展。这些结果表明,Pss22d在植物中的拮抗活性不需要丁香肽素,丁香霉素或MeArg。因此,除三种毒素外的其他因素可能会导致植物体内的物种拮抗作用。

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