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利用高碳烷烃和烯烃的培养基中里氏木霉的生长、脂类和蛋白酶的生产。

Yarrowia lipolytica growth, lipids, and protease production in medium with higher alkanes and alkenes.

机构信息

Centre of Biological Engineering, University of Minho, Campus de Gualtar, 4710-057, Braga, Portugal.

LABBELS - Associate Laboratory, Braga/Guimarães, Portugal.

出版信息

World J Microbiol Biotechnol. 2024 Sep 12;40(10):318. doi: 10.1007/s11274-024-04123-7.

Abstract

Two strains of Yarrowia lipolytica (CBS 2075 and DSM 8218) were first studied in bioreactor batch cultures, under different controlled dissolved oxygen concentrations (DOC), to assess their ability to assimilate aliphatic hydrocarbons (HC) as a carbon source in a mixture containing 2 g·L of each alkane (dodecane and hexadecane), and 2 g·L hexadecene. Both strains grew in the HC mixture without a lag phase, and for both strains, 30 % DOC was sufficient to reach the maximum values of biomass and lipids. To enhance lipid-rich biomass and enzyme production, a pulse fed-batch strategy was tested, for the first time, with the addition of one or three pulses of concentrated HC medium. The addition of three pulses of the HC mixture (total of 24 g·L HC) did not hinder cell proliferation, and high protease (> 3000 U·L) and lipids concentrations of 3.4 g·L and 4.3 g·L were achieved in Y. lipolytica CBS 2075 and DSM 8218 cultures, respectively. Lipids from the CBS 2075 strain are rich in C16:0 and C18:1, resembling the composition of palm oil, considered suitable for the biodiesel industry. Lipids from the DSM 8218 strain were predominantly composed of C16:0 and C16:1, the latter being a valuable monounsaturated fatty acid used in the pharmaceutical industry. Y. lipolytica cells exhibited high intrinsic surface hydrophobicity (> 69 %), which increased in the presence of HC. A reduction in surface tension was observed in both Y. lipolytica cultures, suggesting the production of extracellular biosurfactants, even at low amounts. This study marks a significant advancement in the valorization of HC for producing high-value products by exploring the hydrophobic compounds metabolism of Y. lipolytica.

摘要

两株产朊假丝酵母(CBS 2075 和 DSM 8218)首先在生物反应器分批培养中进行研究,在不同的控制溶解氧浓度(DOC)下,评估它们在含有 2 g·L 每种烷烃(十二烷和十六烷)和 2 g·L 十六烯的混合物中作为碳源同化脂肪族烃(HC)的能力。两种菌株在 HC 混合物中生长都没有滞后期,对于两种菌株,30%的 DOC 足以达到生物量和脂质的最大值。为了提高富含脂质的生物量和酶的产量,首次采用脉冲分批补料策略,用一次或三次补加浓缩 HC 培养基的方式进行实验。添加三次 HC 混合物(总共 24 g·L HC)不会阻碍细胞增殖,在产朊假丝酵母 CBS 2075 和 DSM 8218 培养物中分别实现了高蛋白酶(> 3000 U·L)和脂质浓度 3.4 g·L 和 4.3 g·L。CBS 2075 菌株的脂质富含 C16:0 和 C18:1,类似于棕榈油的组成,被认为适合生物柴油工业。DSM 8218 菌株的脂质主要由 C16:0 和 C16:1 组成,后者是一种有价值的用于制药工业的单不饱和脂肪酸。产朊假丝酵母细胞表现出高的固有表面疏水性(> 69%),在 HC 存在下增加。在两种产朊假丝酵母培养物中都观察到表面张力降低,表明即使在低浓度下也产生了细胞外生物表面活性剂。这项研究标志着在利用产朊假丝酵母代谢疏水性化合物来生产高价值产品方面,对 HC 的利用有了重大进展。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e42/11390925/4e0ac0c79726/11274_2024_4123_Fig1_HTML.jpg

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