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首页> 外文期刊>Journal of Chemical Technology & Biotechnology >Toxicity tolerance of Fusarium oxysporum towards inhibitory compounds formed during pretreatment of lignocellulosic materials
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Toxicity tolerance of Fusarium oxysporum towards inhibitory compounds formed during pretreatment of lignocellulosic materials

机译:尖孢镰刀菌对木质纤维素材料预处理过程中形成的抑制性化合物的毒性耐受性

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Background: During the pretreatment of lignocellulosic materials, molecules such as carboxylic acids, furan derivatives and phenolic compounds, which inhibit the growth and ethanol fermentation by bacteria, fungi and yeasts, are produced. The present work determines the tolerance levels of the C5, C6 fermenting fungus Fusarium oxysporum, towards individual model inhibitory compounds on aerobic growth, on lignocellulolytic activities and on fermentative performance.Results During the growth stage, maximum biomass production was more affected than the specific growth rate by the presence of inhibitors. The presence of high concentrations of inhibitors resulted, in most cases, in prolongation of the lag phase. The fermentative performance of F. oxysporum was significantly inhibited by carboxylic acids, while the lignocellulolytic activities were affected to a lesser extent.Conclusion: The toxicity tolerance of fF. oxysporum was high enough for aerobic growth in the presence of significant concentrations of inhibitors, which in most cases were higher than those generated from various treatments of lignocellulosic materials, while its fermentative performance was relatively more affected by the presence of inhibitors. The decrease of ethanol production in the presence of weak organic acids could be the main obstacle to the application of F. oxysporum in large-scale bioconversion processes of hydrolysates containing inhibitors.
机译:背景:在木质纤维素材料的预处理过程中,会产生抑制细菌,真菌和酵母菌生长和乙醇发酵的分子,例如羧酸,呋喃衍生物和酚类化合物。目前的工作确定了C5,C6发酵真菌尖孢镰刀菌对单个模型抑制性化合物的有氧生长,木质纤维素分解活性和发酵性能的耐受水平。结果在生长阶段,最大生物量生产比特定生长受到的影响更大。抑制剂的存在引起的速率在大多数情况下,高浓度抑制剂的存在导致滞后阶段的延长。羧酸显着抑制了产氧假丝酵母的发酵性能,而对木质纤维素的分解活性影响较小。结论:fF的毒性耐受性。在存在大量抑制剂的情况下,oxysporum足够高,足以进行有氧生长,在大多数情况下,其比木质纤维素材料各种处理方法产生的高,而其发酵性能受抑制剂的影响相对更大。在弱有机酸存在下乙醇产量的下降可能是在产含抑制剂水解产物的大规模生物转化过程中应用氧化镰孢的主要障碍。

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