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Time-resolved decoding of metabolic signatures of in vitro growth of the hemibiotrophic pathogen Colletotrichum sublineolum

机译:时间分辨解码的半生营养病原体炭疽菌亚线的体外代谢特征的解码。

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摘要

Metabolomics has emerged as a powerful approach to comprehensively interrogate cellular biochemistry. As such, we applied an untargeted liquid chromatography-mass spectrometry metabolomic strategy to elucidate metabolome changes in the anthracnose-causing hemibiotrophic sorghum pathogen, Colletotrichum sublineolum. An in vitro batch culture study model with different carbon sources, glucose, arabinose and rhamnose, were used to support fungal growth over a period of twelve days. Metabolites representing the intracellular and extracellular (secreted) metabolomes were extracted with methanol and subjected to LC-MS analyses. Chemometric modelling revealed a metabolic variation trajectory, comprising three distinct stages that metabolically describe the adaptation of the fungus to diminishing nutrients. Selected marker gene expression indicated stage one (0–3 d.p.i) as corresponding to the early logarithmic phase. Stage two can be interpreted as an intermediate transitionary stage with stage three corresponding to the stationary phase (9–12 d.p.i). Stage one was characterised by up-regulation of endo-metabolites such as ferricrocin, fatty acids and flavone-conjugates, while stage three was characterised by the secretion of phytotoxins, including colletotrichin and colletotric acid. Ultimately, results from our in vitro model reveal previously unknown insights into the dynamic aspects of metabolome reprogramming in the growth phases of Colletotrichum spp as determined by nutrients obtainable from plant cell walls.
机译:代谢组学已经成为一种全面研究细胞生物化学的强大方法。因此,我们应用了无目标液相色谱-质谱代谢组学策略来阐明引起炭疽病的半生营养高粱病原体炭疽菌(Colletotrichum sublineolum)的代谢组变化。具有不同碳源,葡萄糖,阿拉伯糖和鼠李糖的体外分批培养研究模型用于支持真菌在十二天内的生长。用甲醇提取代表细胞内和细胞外(分泌)代谢组的代谢物,并进行LC-MS分析。化学计量学模型揭示了代谢变化轨迹,包括三个不同的阶段,这些阶段在代谢上描述了真菌对营养物质的减少的适应性。选择的标记基因表达表明第一阶段(0–3 d.p.i)对应于早期对数期。第二阶段可以解释为中间过渡阶段,其中第三阶段对应于固定阶段(9-12 d.p.i)。第一阶段的特征是内代谢物如铁蛋白,脂肪酸和黄酮结合物的上调,而第三阶段的特征是分泌植物毒素,包括胶原蛋白和Collettotric acid。最终,来自我们体外模型的结果揭示了以前未知的见解,该研究涉及由植物细胞壁获得的营养物质决定的炭疽菌(Colletotrichum spp)生长期代谢组重编程的动态方面。

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