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Effects of differentgraphene-basednanomaterials as elicitors on growth and ganoderic acid production byGanoderma lucidum

机译:基于鉴别术的疗效为resgerma lucidum生长和灵芝的生长和灵芝的生长和甘蓝酸产量的影响

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Graphene-based nanomaterials (GBNs) have attracted considerable interest nowadays due to their wide range of applications. However, very little attention has been paid to the application of nanomaterials as potential elicitors for production of valuable metabolites. Herein, aiming to earn insight into effects of nanomaterials on secondary metabolite biosynthesis by medicinal fungi, we evaluated the influence of GBNs on growth and production of ganoderic acid (GA) byGanoderma lucidumin submerged culture. Graphene oxide (GO), reduced graphene oxide (rGO), and rGO/Fe(3)O(4)nanocomposite were synthesized successfully and characterized by X-ray diffraction, Fourier transform infrared spectroscopy, and scanning electron microscopy analysis. The prepared nanomaterials were added to the culture ofG. lucidumat final concentrations of 50, 100, and 150 mg/L on Day 5. The results showed that the elicitation ofG. lucidumwith GO and rGO decreased the cell dry weight and GA production slightly, especially in higher concentrations. However, rGO/Fe(3)O(4)nanocomposite not negatively affected cell growth and improved GA production.G. lucidumgrowth rate responded to elicitation experiments differently and depended on the type of nanomaterials and their concentrations, but almost all GBNs caused an increase in GA content (mg/100 mg dry weight). Also, field emission scanning electron microscopy morphological study showed that under elicitation, mycelia were more condensed and tightly stacked together. The findings from this study may suggest that GBNs in low concentrations could be applied as elicitors to secondary metabolites production from higher fungus, but further environmental, physiological, and biological studies required.
机译:由于其广泛的应用,基于石墨烯的纳米材料(GBNS)引起了相当大的利益。然而,对纳米材料的应用是非常少的关注,作为潜在的elictors,用于生产有价值的代谢物。在此,旨在通过药用真菌获得纳米材料对纳米材料对次级代谢产物生物合成的影响,我们评估了GBNS对Ganoderca酸(Ga)逐渐生长蛋白浸没式培养物的生长和生产的影响。将石墨烯(GO),还原的石墨烯(RGO)和RGO / Fe(3)O(4)纳米复合材料成功合成,其特征在于X射线衍射,傅里叶变换红外光谱和扫描电子显微镜分析。将制备的纳米材料加入到培养物中。在第5天50,100和150 mg / L的Lucidumat最终浓度最终浓度。结果表明,诱导效果。 Lucidumwith Go和Rgo略微降低细胞干重和GA生产,特别是在更高的浓度。然而,rgo / Fe(3)O(4)纳米复合材料不会产生负面影响细胞生长和改善的GA生产。 LucidumGrowth率为不同的诱导实验,不同地依赖于纳米材料的类型及其浓度,但几乎所有的GBN导致Ga含量增加(Mg / 100mg干重)。此外,场发射扫描电子显微镜形态学研究表明,在诱导下,菌丝体更加冷凝并紧密地堆叠在一起。本研究的发现可能表明,低浓度的GBN可以作为Elitors从更高的真菌产生的次级代谢物生产,但需要进一步的环境,生理学和生物学研究。

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