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Microbial Synthesis of Antibacterial Phenazine-1,6-dicarboxylic Acid and the Role of PhzG in Pseudomonas chlororaphis GP72AN

机译:微生物合成抗菌苯吡啶-1,6-二羧酸和PHZG在假单胞菌的作用氯吡咯GP72AN

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摘要

Pseudomonas chlororaphis have been demonstrated to be environmentally friendly biocontrol strains, and most of them can produce phenazine compounds. Phenazine-1,6-dicarboxylic acid (PDC), with a potential antibacterial activity, is generally found in Streptomyces but not in Pseudomonas. The present study aimed to explore the feasibility of PDC synthesis and the function of PhzG in Pseudomonas. A PDC producer was constructed by replacing phzG in P. chlororaphis with lphzG from Streptomyces lomondensis. Through gene deletion, common start codon changing, gene silence, and in vitro assay, our result revealed that the yield of PDC in P. chlororaphis is associated with the relative expression of phzG to phzA and phzB. In addition, it is found that PDC can be spontaneously synthesized without PhzG. This study provides an efficient way for PDC production and promotes a better understanding of PhzG function in PDC biosynthesis. Moreover, this study gives an alternative opportunity for developing new antibacterial biopesticides.
机译:已证明氯吡咯氯吡咯是环保的生物控制菌株,其中大部分都可以生产吩嗪化合物。具有潜在抗菌活性的Phabazine-1,6-二羧酸(PDC)通常在链霉菌中发现,但不在假单胞菌中发现。本研究旨在探讨PDC合成的可行性及PHZG在假单胞菌中的功能。通过从Streptomyces Lomdondensis替换P.Chlororaphis的PPZG,通过从Streptomyces Lomdondensis替换PPZg来构建PDC生产者。通过基因缺失,常见的起始密码子改变,基因沉默和体外测定,我们的结果表明,P.氯吡吡吡咯的PDC产量与PHZG对PHZA和PHZB的相对表达有关。另外,发现没有PHZG可以自发地合成PDC。本研究为PDC生产提供了一种有效的方法,并促进对PDC生物合成中的PHZG功能更好地了解。此外,该研究给出了开发新的抗菌生物特产的替代机会。

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