Development and Optimization of Culture Medium for the Production of Glabridin by Aspergillus eucalypticola: An Endophytic Fungus Isolated from Glycyrrhiza glabra L. (Fabaceae).

IF 2 4区 生物学 Q2 AGRONOMY Mycobiology Pub Date : 2023-01-01 DOI:10.1080/12298093.2023.2225253
Parisa Bahadori Ganjabadi, Mohsen Farzaneh, Mohammad Hossein Mirjalili
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Abstract

Glabridin is a well-known active isoflavone found in the root of licorice (Glycyrrhiza glabra L.) that possess a wide range of biological activity. Plant cells, hairy roots, and fungal endophytes cultures are the most important alternative methods for plant resources conservation and sustainable production of natural compounds, which has received much attention in recent decades. In the present study, an efficient culture condition was optimized for the biomass accumulation and glabridin production from fungal endophyte Aspergillus eucalypticola SBU-11AE isolated from licorice root. Type of culture medium, range of pH, and licorice root extract (as an elicitor) were tested. The results showed that the highest and lowest biomass production was observed on PCB medium (6.43 ± 0.32 g/l) and peptone malt (5.85 + 0.11 g/l), respectively. The medium culture PCB was produced the highest level of glabridin (7.26 ± 0.44 mg/l), while the lowest level (4.47 ± 0.02 mg/l) was obtained from the medium peptone malt. The highest biomass (8.51 ± 0.43 g/l) and glabridin (8.30 ± 0.51 mg/l) production were observed from the PCB medium adjusted with pH = 6, while the lowest value of both traits was obtained from the same medium with pH = 7. The highest production of total glabridin (10.85 ± 0.84 mg/l) was also obtained from the culture medium treated with 100 mg/l of the plant root extract. This information can be interestingly used for the commercialization of glabridin production for further industrial applications.

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光甘草内生真菌桉叶曲霉生产光甘草定培养基的开发与优化。
光甘草定是一种已知的活性异黄酮,存在于甘草根中,具有广泛的生物活性。植物细胞、毛状根和真菌内生菌培养是植物资源保护和天然化合物可持续生产的重要替代方法,近几十年来受到广泛关注。本研究优化了甘草根内生真菌桉曲霉SBU-11AE生物量积累和光甘草定产量的培养条件。对培养基类型、pH值范围和甘草根提取物(作为激发剂)进行了测试。结果表明,PCB培养基(6.43±0.32 g/l)和蛋白胨麦芽培养基(5.85 + 0.11 g/l)的生物量最高、最低;培养液PCB中光甘草定含量最高(7.26±0.44 mg/l),而培养液蛋白胨麦芽中光甘草定含量最低(4.47±0.02 mg/l)。pH = 6时PCB培养基的生物量最高(8.51±0.43 g/l),光甘草定产量最高(8.30±0.51 mg/l), pH = 7时PCB培养基的生物量和光甘草定产量最低。在添加100 mg/l根提取物的培养基中,总光甘草定的产量最高(10.85±0.84 mg/l)。有趣的是,这一信息可用于光甘草定生产的商业化,以进一步实现工业应用。
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来源期刊
Mycobiology
Mycobiology AGRONOMYMYCOLOGY-MYCOLOGY
CiteScore
3.90
自引率
5.30%
发文量
41
审稿时长
22 weeks
期刊介绍: Mycobiology is an international journal devoted to the publication of fundamental and applied investigations on all aspects of mycology and their traditional allies. It is published quarterly and is the official publication of the Korean Society of Mycology. Mycobiology publishes reports of basic research on fungi and fungus-like organisms, including yeasts, filamentous fungi, lichen fungi, oomycetes, moulds, and mushroom. Topics also include molecular and cellular biology, biochemistry, metabolism, developmental biology, environmental mycology, evolution, ecology, taxonomy and systematics, genetics/genomics, fungal pathogen and disease control, physiology, and industrial biotechnology using fungi.
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