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首页> 外文期刊>Journal of applied microbiology >Transcriptional regulation of enniatins production by Fusarium avenaceum.
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Transcriptional regulation of enniatins production by Fusarium avenaceum.

机译:镰刀菌镰刀菌属植物生产enniatins的转录调控。

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Aims: The aim of this study was to analyse the transcriptional regulation of enniatins (ENs) production in Fusarium avenaceum. Methods and Results: We develop a new method to quantify ENs in FDM agar medium. We performed an LC/MS/MS analysis to evaluate enniatin A, A1, B, B1 and B4 production by seven F. avenaceum strains and, in a time-course experiment, by ITEM 3404 to analyse the transcriptional regulation of the esyn1 gene. The expression profile, achieved by Real time reverse transcriptase assay, showed an activation of gene transcription at the seventh day of incubation, corresponding to the higher increase of total ENs production. Enniatin B was the most abundant ENs analogues, representing the 90% of total ENs. The relative percentage of ENs remained unaltered during the experiment. Conclusions: We reported a transcriptional regulation of esyn1 responsible for the modulation of ENs biosynthesis. Significance and Impact of the Study: Enniatins are cyclic depsipeptides metabolites with a wide range of biological activities. They are also widespread contaminants in grains and cereals due to infection by enniatin-producing Fusarium species. This is the first article describing the transcriptional regulation of esyn1 gene that modulates ENs production in Fusarium avenaceum and provides new knowledge about the molecular mechanism underlying the biosynthesis of these important fungal metabolites in this toxigenic fungal species.
机译:目的:本研究的目的是分析燕麦镰刀菌(Fusarium avenaceum)产生的enniatins(ENs)的转录调控。方法和结果:我们开发了一种定量FDM琼脂培养基中EN的新方法。我们进行了LC / MS / MS分析,以评估7种金黄色葡萄球菌菌株产生的烯尿素A,A1,B,B1和B4的产生,并且在时程实验中,通过ITEM 3404分析了esyn1基因的转录调控。通过实时逆转录酶测定获得的表达谱显示,在孵育的第七天激活了基因转录,这对应于总ENs产量的增加。 Enniatin B是最丰富的ENs类似物,占ENs总量的90%。在实验过程中EN的相对百分比保持不变。结论:我们报道了负责调节ENs生物合成的esyn1的转录调控。这项研究的意义和影响:烯醇溶蛋白是具有多种生物学活性的环状二肽肽代谢产物。由于被产生烯尿素的镰刀菌属物种感染,它们也是谷物和谷物中广泛的污染物。这是第一篇描述esyn1基因的转录调控的文章,该基因调控avenusum镰刀菌中ENs的产生,并提供有关这些有毒真菌物种中这些重要真菌代谢物生物合成基础的分子机制的新知识。

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