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新型尖孢镰刀菌菌株的培养条件研究,以提高油脂产量。

Investigation on the Cultivation Conditions of a Newly Isolated Fusarium Fungal Strain for Enhanced Lipid Production.

机构信息

Department of Bioproducts and Biosystems Engineering, University of Minnesota, 1390 Eckles Ave, Saint Paul, MN, 55108-6005, USA.

出版信息

Appl Biochem Biotechnol. 2019 Apr;187(4):1220-1237. doi: 10.1007/s12010-018-2870-8. Epub 2018 Sep 11.

Abstract

Fusarium equiseti UMN-1 fungal strain isolated from soybean is selected as a potential oleaginous fungal strain for biodiesel generation. It possesses desirable features, such as high lipid content (up to 56%) and high fatty acid methyl ester (FAME) content (more than 98%) in total lipids, and also has the capability to produce cellulase. This research focused on the investigation of the characteristics of this strain and optimization of culture conditions to enhance lipid production. Impact of temperature, agitation, C/N ratio, medium composition, and carbon and nitrogen sources has been observed, and central composite design (CCD) has been applied to improve the lipid accumulation. The optimum range for temperature, agitation, C/N ratio, and carbon and nitrogen concentrations was discovered, and the CCD model with the optimized growth medium and growth conditions achieved a maximum lipid production of 3.89 g/L. This research on F. equiseti UMN-1 fungal strain is expected to improve the feasibility of using microbial lipids of F. equiseti UMN-1 strains as the source of biofuels.

摘要

从大豆中分离出的栓菌 UMN-1 真菌菌株被选为生成生物柴油的潜在产油真菌菌株。它具有理想的特性,如高脂质含量(高达 56%)和高脂肪酸甲酯(FAME)含量(超过总脂质的 98%),并且还具有产生纤维素酶的能力。本研究专注于研究该菌株的特性,并优化培养条件以提高脂质产量。观察了温度、搅拌、C/N 比、培养基组成以及碳源和氮源的影响,并应用中心复合设计(CCD)来改善脂质积累。发现了温度、搅拌、C/N 比和碳氮浓度的最佳范围,并且优化生长培养基和生长条件的 CCD 模型实现了 3.89 g/L 的最大脂质产量。这项对栓菌 UMN-1 真菌菌株的研究有望提高利用栓菌 UMN-1 菌株微生物油脂作为生物燃料来源的可行性。

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