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The alternative sigma factor AlgT, but not alginate synthesis, promotes in planta multiplication of Pseudomonas syringae pv. glycinea

机译:替代的Sigma因子AlGT,但不是藻酸盐合成,促进了Pseudomonas Syringae PV的Planta倍增。甘氨酸

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The phytopathogen Pseudomonas syringae pv. glycinea produces the exopolysaccharide (EPS) alginate, which is thought to function in epiphytic fitness and virulence. A key regulator for alginate biosynthesis in Pseudomonas aeruginosa and P. syringae is the alternative sigma factor AlgT (σ22). In this study, the contribution of alginate synthesis and AlgT to in planta epiphytic fitness and virulence of P. syringae was examined. Alginate biosynthesis mutants were generated for the P. syringae pv. glycinea strains PG4180 and PG4180.muc, representing a comprehensive set of alginate- and AlgT-positive or -negative derivatives. Analysis of in vitro and in planta phenotypes revealed that AlgT strongly promoted in planta growth, survival and symptom development, but decreased the ability to grow in vitro. In contrast, alginate biosynthesis had only marginal impact. Quantitative in vitro and in planta gene expression analyses for alginate biosynthesis and algT were carried out at two temperatures in AlgT-negative and -positive backgrounds. algT as well as algD gene expression was AlgT-dependent, plant-inducible and temperature-dependent, with higher expression at 18 compared to 28?°C; however, no temperature dependence was observed in vitro. Our data suggest that AlgT may act as a global regulator for virulence and in planta fitness traits of P. syringae independent of its role in EPS biosynthesis.
机译:植物疗法假单胞菌皂苷PV。甘氨酸产生突出的藻酸盐(EPS)藻酸盐,其被认为是在腰果健身和毒力中起作用。铜绿假单胞菌和P.Syraceae的藻酸盐生物合成的关键调节剂是替代的Sigma因子藻(σ22)。在本研究中,研究了藻酸盐合成和藻类在Planta果实健康和毒力的贡献。生成藻酸盐生物合成突变体为P.Syringae PV产生。甘氨酸菌株PG4180和PG4180.Muc,代表一套综合的藻酸盐和藻类 - 阳性或阴性衍生物。体外和Planta表型分析显示,藻类在植物生长,生存和症状发育中强烈促进,但减少了体外生长的能力。相反,藻酸盐生物合成只有边缘撞击。在藻类阴性和隔振背景下的两个温度下进行藻酸盐生物合成和藻类的体外和植物基因表达分析。藻类以及藻类基因表达是藻类依赖性,植物诱导和温度依赖性,与28Ω·℃相比,18的表达更高;然而,在体外没有观察到温度依赖性。我们的数据表明,AlGT可以作为毒力的全球调节剂,并且在P.SyryaE的植物健身性状独立于其在EPS生物合成中的作用。

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