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共栖Crypthecodinium cohnii 和固定化运动发酵单胞菌从含蔗糖的底物生产二十二碳六烯酸。

Syntrophy of Crypthecodinium cohnii and immobilized Zymomonas mobilis for docosahexaenoic acid production from sucrose-containing substrates.

机构信息

University of Latvia, Institute of Microbiology and Biotechnology, Riga, Latvia.

University of Latvia, Natural Resource Research Centre, Riga, Latvia.

出版信息

J Biotechnol. 2021 Sep 10;338:63-70. doi: 10.1016/j.jbiotec.2021.07.008. Epub 2021 Jul 16.

DOI:10.1016/j.jbiotec.2021.07.008
PMID:34280360
Abstract

Marine heterotrophic dinoflagellate Crypthecodinium cohnii is an aerobic oleaginous microorganism that accumulates intracellular lipid with high content of 4,7,10,13,16,19-docosahexaenoic acid (DHA), a polyunsaturated ω-3 (22:6) fatty acid with multiple health benefits. C. cohnii can grow on glucose and ethanol, but not on sucrose or fructose. For conversion of sucrose-containing renewables to C. cohnii DHA, we investigated a syntrophic process, involving immobilized cells of ethanologenic bacterium Zymomonas mobilis for fermenting sucrose to ethanol. The non-respiring, NADH dehydrogenase-deficient Z. mobilis strain Zm6-ndh, with high ethanol yield both under anaerobic and aerobic conditions, was taken as the genetic background for inactivation of levansucrase (sacB). SacB mutation eliminated the levan-forming activity on sucrose. The double mutant Zm6-ndh-sacB cells were immobilized in Ca alginate, and applied for syntrophic conversion of sucrose to DHA of C. cohnii, either taking the ethanol-containing fermentation medium from the immobilized Z. mobilis for feeding to the C. cohnii fed-batch culture, or directly coculturing the immobilized Zm6-ndh-sacB with C. cohnii on sucrose. Both modes of cultivation produced C. cohnii CCMP 316 biomass with DHA content around 2-3 % of cell dry weight, corresponding to previously reported results for this strain on glucose.

摘要

海洋异养甲藻 Crypthecodinium cohnii 是一种需氧产油微生物,能够积累细胞内脂质,其中含有高含量的 4,7,10,13,16,19-二十二碳六烯酸(DHA),这是一种多不饱和 ω-3(22:6)脂肪酸,具有多种健康益处。C. cohnii 可以在葡萄糖和乙醇上生长,但不能在蔗糖或果糖上生长。为了将含有蔗糖的可再生资源转化为 C. cohnii DHA,我们研究了一种共培养过程,涉及固定化乙醇发酵细菌 Zymomonas mobilis 细胞,将蔗糖发酵为乙醇。非呼吸型、NADH 脱氢酶缺陷的 Z. mobilis 菌株 Zm6-ndh 在厌氧和有氧条件下都具有较高的乙醇产量,被用作缺失莱鲍迪苷酶(sacB)的遗传背景。SacB 突变消除了蔗糖上形成莱鲍迪苷的活性。双突变体 Zm6-ndh-sacB 细胞被固定在海藻酸钙中,并应用于蔗糖到 C. cohnii DHA 的共培养转化,要么将含有乙醇的固定化 Z. mobilis 发酵液作为进料添加到 C. cohnii 分批培养中,要么直接在蔗糖上共培养固定化 Zm6-ndh-sacB 和 C. cohnii。这两种培养方式都产生了 C. cohnii CCMP 316 生物量,其 DHA 含量约占细胞干重的 2-3%,与该菌株在葡萄糖上的先前报道结果相当。

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