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Untargeted Metabolomics Study of the Plant-Pathogenic Fungus Magnaporthe oryzae by GC × GC × QTOFMS

机译:GC×GC×QTOFMS的植物致病真菌Magnaporthe Oryzae的未确定代谢组合研究

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Consistent with the role of the NUT1 gene as a nitrogen regulator, MDT1 as a carbon regulator, and TPS1 in integrating carbon and nitrogen metabolism, we observed significant changes in both carbonaceous and nitrogenous metabolites known to play roles in pathogenisis, including glycerol, a metabolite important for turgor generation in the appressorium, and cystathionine, strongly misregulated in the mutant strains. Future work could be directed toward determining the role cystathionine pathways during infection.
机译:与Nut1基因作为氮调节剂的作用一致,MDT1作为碳调节剂,以及TPS1在整合碳和氮代谢中,我们观察到已知在病因中发挥作用的碳质和氮代谢物的显着变化,包括甘油,代谢物。对于孕产物中的Turgor生成,并且在突变体菌株中强烈误解的植入血管生成。未来的工作可以针对感染期间的角色胱硫脲途径。

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