Ashok G C, Prakash Pradhan Suman, Kumar Karki Krishna, Khadka Aakriti, Bhandari Aishwarya, Prasad Pandey Bishnu
Department of Chemical Science and Engineering, Kathmandu University, Dhulikhel, Nepal.
Aquatic Ecology Centre, Kathmandu University, Dhulikhel, Nepal.
Int J Microbiol. 2023 Aug 7;2023:6439466. doi: 10.1155/2023/6439466. eCollection 2023.
are bacteria well known for producing bioactive secondary metabolites which are commonly found in diverse habitats. The biosynthesis of metabolites from is influenced by various factors such as the growth medium, environmental conditions, and gene regulation. This study aimed to investigate the influence of different growth media on biomass production and the antioxidant and enzyme inhibitory potential of a crude extract obtained from sp. G-18 isolated from high altitudinal soil of Nepal. The highest dry weight growth was observed in R2YE medium (184 mg/L), followed by R5 (144 mg/L), YEME (38 mg/L), and R5M media (30 mg/L). The crude extract showed notable antioxidant activities against free radicals. The highest alpha-amylase inhibition was observed in the R2YE medium, and worthy lipase and tyrosinase inhibition was observed in the YEME medium. However, only the R2YE medium exhibited inhibitory potential against elastase and acetylcholinesterase, while crude extracts from R5, YEME, and R5 modified did not show any such activity. Overall, our findings suggest that the production of bioactive secondary metabolites in sp. G-18 was significantly influenced by the growth medium. This strain may be a promising source of enzyme inhibitors with potential applications in the pharmaceutical and cosmetic industries.
细菌以产生生物活性次级代谢产物而闻名,这些产物常见于各种不同的栖息地。来自[具体细菌名称未给出]的代谢产物生物合成受到多种因素影响,如生长培养基、环境条件和基因调控。本研究旨在调查不同生长培养基对从分离自尼泊尔高海拔土壤的[具体细菌名称未给出]sp. G - 18获得的粗提物的生物量生产以及抗氧化和酶抑制潜力的影响。在R2YE培养基中观察到最高干重生长(184毫克/升),其次是R5(144毫克/升)、YEME(38毫克/升)和R5M培养基(30毫克/升)。粗提物对自由基显示出显著的抗氧化活性。在R2YE培养基中观察到最高的α -淀粉酶抑制作用,在YEME培养基中观察到有价值的脂肪酶和酪氨酸酶抑制作用。然而,只有R2YE培养基对弹性蛋白酶和乙酰胆碱酯酶表现出抑制潜力,而来自R5、YEME和改良R5的粗提物未显示任何此类活性。总体而言,我们的研究结果表明,[具体细菌名称未给出]sp. G - 18中生物活性次级代谢产物的产生受到生长培养基的显著影响。该菌株可能是酶抑制剂的一个有前景的来源,在制药和化妆品行业具有潜在应用。