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响应面法优化 BYST01 产生大黄素的发酵条件。

Optimization of fermentation conditions for physcion production of BYST01 by response surface methodology.

机构信息

School of Life Sciences, Anhui Agricultural University, Hefei, China.

State Key Laboratory of Tea Plant Biology and Utilization, Anhui Agricultural University, Hefei, China.

出版信息

PeerJ. 2024 Oct 30;12:e18380. doi: 10.7717/peerj.18380. eCollection 2024.

Abstract

This study aimed to optimize the culture conditions of the termite-derived fungus BYST01 for the production of physcion, a characteristic component of the traditional herb rhubarb, which has been commercially approved as a botanical fungicide in China. First, potato dextrose broth was screened as the suitable basal medium for further optimization, with an initial yield of 28.0 mg/L. Then, the suitable carbon source, fermentation time, temperature, pH value, and the rotary shaker speed for physcion production were determined using the one-variable-at-a-time method. Based on the results of single factors experiments, the variables with statistically significant effects on physcion production were further confirmed using the Plackett-Burman design (PBD). Among the five variables, temperature, initial pH, and rotary shaker speed were identified as significant factors ( < 0.05) for physcion productivity in the PDB and were further analyzed by response surface methodology (RSM). Finally, we found that the maximum physcion production (82.0 mg/L) was achieved under the following optimized conditions:initial pH 6.6, rotary shaker speed of 177 rpm, temperature of 28 °C, and glucose concentration of 30 g/L in PDB medium after 11 d of fermentation. The yield of physcion under the optimized culture conditions was approximately threefold higher than that obtained using the basal culture medium. Furthermore, the optimum fermentation conditions in the 5-L bioreactor achieved a maximal physcion yield of 85.2 mg/L within 8 d of fermentation. Hence, response surface methodology proved to be a powerful tool for optimizing physcion production by BYST01. This study may be helpful in promoting the application of physcion produced by BYST01 to manage plant diseases.

摘要

本研究旨在优化白蚁源真菌 BYST01 的培养条件,以生产大黄的特征成分大黄素,大黄素已在中国被商业批准为植物性杀菌剂。首先,筛选出马铃薯葡萄糖肉汤作为进一步优化的合适基础培养基,初始产量为 28.0mg/L。然后,采用单因素法确定了适合的碳源、发酵时间、温度、pH 值和摇床转速,以生产大黄素。基于单因素实验的结果,采用 Plackett-Burman 设计(PBD)进一步确认对大黄素生产有统计学显著影响的变量。在这五个变量中,温度、初始 pH 值和摇床转速被确定为大黄素生产力的显著因素(<0.05),并进一步通过响应面法(RSM)进行了分析。最后,我们发现,在以下优化条件下,大黄素的最大产量(82.0mg/L)达到:初始 pH 值 6.6、摇床转速 177rpm、温度 28°C 和 PDB 培养基中的葡萄糖浓度为 30g/L,发酵 11d 后。在优化培养条件下,大黄素的产量约为基础培养基的三倍。此外,在 5L 生物反应器中的最佳发酵条件下,在 8d 的发酵时间内可达到 85.2mg/L 的最大大黄素产量。因此,响应面法被证明是优化 BYST01 生产大黄素的有力工具。本研究可能有助于促进利用 BYST01 生产的大黄素来防治植物病害。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/9349/11531253/b865575a8eb8/peerj-12-18380-g001.jpg

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