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利用响应面法对酵母提取物诱导印楝细胞悬浮培养中次生代谢产物产量的改进与预测

Improvement and prediction of secondary metabolites production under yeast extract elicitation of Azadirachta indica cell suspension culture using response surface methodology.

作者信息

Farjaminezhad Reza, Garoosi Ghasemali

机构信息

Department of Biotechnology, Faculty of Agriculture and Natural Resources, Imam Khomeini International University (IKIU), P. O. Box 288, 34149-16818, Qazvin, Islamic Republic of Iran.

出版信息

AMB Express. 2021 Mar 17;11(1):43. doi: 10.1186/s13568-021-01203-x.

Abstract

Neem is a medicinal plant used as antimalarial, antibacterial, antiviral, insecticide, and antimicrobial drug. This study aimed to investigate and predict the effect of yeast extract and sampling time on cell growth, secondary metabolites synthesis, SQS1 and MOF1 genes expression by response surface methodology. The highest fresh and dry cell weights were 580.25 g/L and 21.01 g/L, respectively obtained 6 days after using 100 mg/L yeast extract. The highest azadirachtin accumulation and production were 16.08 mg/g DW and 219.78 mg/L obtained 2 and 4 days, respectively after using 25 mg/L yeast extract. Maximum mevalonic acid accumulation (1.75 mg/g DW) and production (23.77 mg/L) were observed 2 days after application of 50 mg/L yeast extract. The highest amount of squalene accumulation (0.22 mg/g DW) and production (4.53 mg/L) were achieved 4 days after using 50 mg/L yeast extract. Prediction results exhibited the highest azadirachtin accumulation (13.61 mg/g DW) and production (190.50 mg/L), mevalonic acid accumulation (0.50 mg/g DW) and production (5.57 mg/L), and squalene accumulation (0.30 mg/g DW) by using 245 mg/L yeast extract for 2 days, 71 mg/L yeast extract for 2 days, 200 mg/L yeast extract for 4.96 days, without yeast extract for 6.54 days and 4 days, respectively. Also, it was predicted that the highest squalene production is achieved by long-term exposure to high concentrations of yeast extract. The qRT-PCR analysis displayed the maximum relative gene expression of SQS1 and MOF1 by using 150 and 25 mg/L yeast extract for 4 and 2 days treatment.

摘要

印楝是一种药用植物,用作抗疟疾、抗菌、抗病毒、杀虫剂和抗菌药物。本研究旨在通过响应面法研究和预测酵母提取物及取样时间对细胞生长、次生代谢物合成、SQS1和MOF1基因表达的影响。使用100mg/L酵母提取物6天后,获得的最高鲜细胞重和干细胞重分别为580.25g/L和21.01g/L。使用25mg/L酵母提取物后,分别在第2天和第4天获得的最高印楝素积累量和产量为16.08mg/g干重和219.78mg/L。在施用50mg/L酵母提取物2天后,观察到最大甲羟戊酸积累量(1.75mg/g干重)和产量(23.77mg/L)。使用50mg/L酵母提取物4天后,获得最高的角鲨烯积累量(0.22mg/g干重)和产量(4.53mg/L)。预测结果显示,分别使用245mg/L酵母提取物2天、71mg/L酵母提取物2天、200mg/L酵母提取物4.96天、不使用酵母提取物6.54天和4天,印楝素积累量最高(13.61mg/g干重)和产量(190.50mg/L)、甲羟戊酸积累量(0.50mg/g干重)和产量(5.57mg/L)以及角鲨烯积累量(0.30mg/g干重)。此外,预测长期暴露于高浓度酵母提取物可实现最高的角鲨烯产量。qRT-PCR分析显示,使用150mg/L和25mg/L酵母提取物分别处理4天和2天,SQS1和MOF1的相对基因表达量最高。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/66e2/7969688/b6742fc114c3/13568_2021_1203_Fig1_HTML.jpg

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