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Interactions of Pseudomonas syringae pv. glycinea with Host and Nonhost Plants in Relation to Temperature and Phytotoxin Synthesis

机译:丁香假单胞菌PV的相互作用。甘氨酸与寄主植物和非寄主植物与温度和植物毒素合成的关系

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Pseudomonas syringae pv. glycinea PG4180 causes bacterial blight of soybean and produces the phytotoxin coro-natine (COR) in a temperature-dependent manner. COR consists of a polyketide, coronafacic acid (CFA), and an amino acid derivative, coronamic acid, and is produced optimally at 18°C whereas no detectable synthesis occurs at 28°C. We investigated the impact of temperature on PG4180 during compatible and incompatible interactions with soybean and tobacco plants, respectively. After spray inoculation, PG4180 caused typical bacterial blight symptoms on soybean plants when the bacteria were grown at 18°C prior to inoculation but not when derived from cultures grown at 28°C. The disease outcome was quantified by determination of bacterial populations in planta. The temperature effect was not observed when PG4180 was artificially infiltrated into soybean leaves, indicating that the pre-inoculation temperature and phytotoxin synthesis were important for bacterial invasion via natural plant openings. In the incompatible interaction, PG4180 elicited the hypersensitive response (HR) on tobacco plants regardless of the bacterial pre-inoculation temperature. However, the HR was significantly delayed when tobacco plants were treated with cells of the CFA-overproducing derivative, PG4180.N9, which were derived from cultures grown at 18°C, compared with parallels incubated at 28°C. CFA biosynthesis by PG4180.N9 was optimal at 18°C and negligible at 28°C. The impact of CFA synthesis on the HR was studied with different growth media, mutants, and transconjugants of PG4180, indicating that the amount of synthesized CFA but not that of COR influenced the outcome of the HR. Feeding experiments with purified coronafacoyl compounds suggested that the observed delay of the HR was mediated by CFA, shedding further light on CFA's putative role as a molecular mimic of the plant signaling molecule, jasmonic acid.
机译:丁香假单胞菌PV。甘氨酸PG4180引起大豆的细菌性枯萎病,并以温度依赖性方式产生植物毒素色氨酸(COR)。 COR由聚酮化合物,冠状酸(CFA)和氨基酸衍生物冠状酸组成,在18°C时最佳生成,而在28°C时未检测到合成。我们分别在与大豆和烟草植物的相容和不相容相互作用中研究了温度对PG4180的影响。喷雾接种后,当细菌在接种前在18°C下生长时,PG4180在大豆植株上引起典型的白叶枯病症状,但在28°C下生长的细菌中却没有。通过确定植物中细菌的数量来量化疾病的结果。将PG4180人工渗入大豆叶片时未观察到温度效应,这表明接种前的温度和植物毒素的合成对于细菌通过天然植物的开口入侵很重要。在不相容的相互作用中,无论细菌接种前的温度如何,PG4180都会对烟草植物引起超敏反应(HR)。但是,与在28°C下孵育的平行病毒相比,当用CFA高产生衍生物PG4180.N9的细胞处理烟草植物时,HR明显延迟,该细胞衍生自在18°C下生长的培养物。 PG4180.N9的CFA生物合成在18°C时最佳,而在28°C时可忽略不计。用PG4180的不同生长培养基,突变体和转导结合物研究了CFA合成对HR的影响,表明合成的CFA量而不是COR的量影响HR的结果。用纯化的冠状脂肪酸化合物进料的实验表明,观察到的HR延迟是由CFA介导的,进一步证明了CFA作为植物信号分子茉莉酸的分子模拟物的推定作用。

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