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产生物乳化剂不动杆菌Y-1的筛选、分离及工艺优化

Screening, isolation, and process optimization of a bioemulsifier-producing Acinetobacter Y-1.

作者信息

Wei Hui, Yao Fu-Rong, Li Ou-Ying, Guo Shuo, Li Jun, Yan He-Jing, Zhu Feng-Mei, Zhou Jie-Fang

机构信息

College of Food Science and Technology, Hebei Normal University of Science and Technology, Qinhuangdao, Hebei, 066000, PR China.

出版信息

Int Microbiol. 2025 May 15. doi: 10.1007/s10123-025-00664-5.

DOI:10.1007/s10123-025-00664-5
PMID:40372541
Abstract

Optimizing the production of bioemulsifiers is critical for sustainable industrial applications. In this study, 27 strains were isolated from activated sludge, and strain Y-1 was identified as the most promising candidate based on emulsification index (EI) and emulsification rating. Strain Y-1 exhibited excellent emulsifying and dispersing activities toward both liquid paraffin and crude oil, with an EI of 65%. Morphological characterization, physiological and biochemical tests, and 16S rDNA sequencing identified Y-1 as a member of the genus Acinetobacter. Fermentation conditions were optimized using single-factor experiments and response surface methodology, and the optimal conditions were determined to be a carbon-to-nitrogen (C/N) ratio of 1:1, inoculum concentration of 2%, and incubation temperature of 34 °C. Under these conditions, the bioemulsifier yield of Acinetobacter Y-1 reached 6.9 g/L, representing a 4.14-fold increase compared to unoptimized conditions. The bioemulsifier produced by Acinetobacter Y-1 effectively emulsified a variety of hydrocarbon substrates, including liquid paraffin, diesel, xylene, olive oil, cutting oil, cold rolling oil, n-hexane, and benzene. Furthermore, it retained stable emulsification activity under extreme conditions, including a wide temperature range (4-80 °C), high salinity (5-30%), and broad pH values (1-14). These findings highlight Acinetobacter Y-1 as a promising strain for the production of high-activity, stable bioemulsifiers with great potential for industrial applications.

摘要

优化生物乳化剂的生产对于可持续工业应用至关重要。在本研究中,从活性污泥中分离出27株菌株,基于乳化指数(EI)和乳化等级,菌株Y-1被确定为最有潜力的候选菌株。菌株Y-1对液体石蜡和原油均表现出优异的乳化和分散活性,EI为65%。通过形态学特征、生理生化试验和16S rDNA测序鉴定Y-1为不动杆菌属成员。采用单因素实验和响应面法对发酵条件进行优化,确定最佳条件为碳氮比(C/N)1:1、接种浓度2%、培养温度34℃。在此条件下,不动杆菌Y-1的生物乳化剂产量达到6.9 g/L,与未优化条件相比提高了4.14倍。不动杆菌Y-1产生的生物乳化剂能有效乳化多种烃类底物,包括液体石蜡、柴油、二甲苯、橄榄油、切削油、冷轧油、正己烷和苯。此外,它在极端条件下保持稳定的乳化活性,包括宽温度范围(4-80℃)、高盐度(5-30%)和宽pH值(1-14)。这些发现突出了不动杆菌Y-1作为一种有前景的菌株,可用于生产具有高活性、稳定性且具有巨大工业应用潜力的生物乳化剂。

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2
Green synthesis of bioemulsifier and exopolysaccharides by Brevibacillus borstelensis and process parameters optimization using response surface model, genetic algorithm and NSGA.利用响应面模型、遗传算法和 NSGA 对 Brevibacillus borstelensis 进行生物乳化剂和胞外多糖的绿色合成及其工艺参数优化
J Environ Manage. 2021 Aug 1;291:112667. doi: 10.1016/j.jenvman.2021.112667. Epub 2021 Apr 30.
3
Production and potential biotechnological applications of microbial surfactants: An overview.
微生物表面活性剂的生产及潜在生物技术应用:综述
Saudi J Biol Sci. 2021 Jan;28(1):669-679. doi: 10.1016/j.sjbs.2020.10.058. Epub 2020 Nov 4.
4
Production, partial purification and characterization of a proteoglycan bioemulsifier from an oleaginous yeast.一种产油酵母源蛋白聚糖生物乳化剂的生产、部分纯化及特性研究
Bioprocess Biosyst Eng. 2020 Oct;43(10):1747-1759. doi: 10.1007/s00449-020-02361-1. Epub 2020 May 14.
5
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Front Microbiol. 2020 Mar 10;11:222. doi: 10.3389/fmicb.2020.00222. eCollection 2020.
6
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8
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