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优化硝酸盐和胰蛋白胨以促进……的生长和三酰甘油积累

Optimizing Nitrate and Tryptone to Enhance Growth and Triacylglycerol Accumulation in .

作者信息

Pan Yufang, Hu Zhaowen, Maréchal Eric, Hu Hanhua

机构信息

Key Laboratory of Algal Biology, Institute of Hydrobiology, Chinese Academy of Sciences, Wuhan 430072, P.R. China.

University of Chinese Academy of Sciences, Beijing 100049, P.R. China.

出版信息

J Microbiol Biotechnol. 2024 Dec 28;34(12):2702-2710. doi: 10.4014/jmb.2408.08036. Epub 2024 Sep 30.

Abstract

, a unicellular diatom, is considered a potential feedstock for the production of biofuel and a promising producer for high-value products eicosapentaenoic acid and fucoxanthin. However, a high-efficient cultivating strategy to achieve commercial production of triacylglycerol (TAG) from the diatom is an urgent demand. In this study, we optimized the content and ratio of nitrate and tryptone in the medium to enhance biomass and TAG accumulation simultaneously. Growth with tryptone as the sole nitrogen gave rise to the lowest cell density but the highest TAG content in relative to nitrate, nitrite, ammonium or urea cultures. In 500 μM NaNO cultures, the growth of increased with the increasing concentration (from 294 to 7056 μM nitrogen) of supplemented tryptone, however supplementation of high tryptone (≥882 μM nitrogen) decreased the neutral lipid content. Elevating nitrogen concentration from 294 to 882 μM via tryptone addition in 250 μM nitrate culture increased cell densities from day 6 to 10 and neutral lipid content on day 10. In particular, supplementing 588 μM nitrogen of tryptone in the 250 μM nitrate culture gave rise to the highest neutral lipid content on days 8 and 10 (increased by 109% and 62% relative to 500 μM nitrate-sole) with a comparable growth to that in 500 μM nitrate-sole culture from day 2 to 8. In conclusion, we optimized nitrate/tryptone ratio and found that a suitable tryptone addition to a relatively low nitrate culture was favourable to the biomass and TAG accumulation simultaneously in .

摘要

三角褐指藻,一种单细胞硅藻,被认为是生产生物燃料的潜在原料,也是生产高价值产品二十碳五烯酸和岩藻黄质的有前景的生产者。然而,实现从该硅藻商业化生产三酰甘油(TAG)的高效培养策略是迫切需求。在本研究中,我们优化了培养基中硝酸盐和胰蛋白胨的含量及比例,以同时提高生物量和TAG积累。以胰蛋白胨作为唯一氮源生长导致细胞密度最低,但相对于硝酸盐、亚硝酸盐、铵或尿素培养,三角褐指藻中TAG含量最高。在500 μM硝酸钠培养中,三角褐指藻的生长随着添加胰蛋白胨浓度(从294至7056 μM氮)的增加而增加,然而高浓度胰蛋白胨(≥882 μM氮)的添加降低了中性脂质含量。在250 μM硝酸盐培养中通过添加胰蛋白胨将氮浓度从294 μM提高至882 μM,从第6天到第10天细胞密度增加,且第10天中性脂质含量增加。特别地,在250 μM硝酸盐培养中添加588 μM氮的胰蛋白胨,在第8天和第10天产生了最高的中性脂质含量(相对于仅500 μM硝酸盐培养分别增加了109%和62%),且从第2天到第8天与仅500 μM硝酸盐培养具有相当的生长情况。总之,我们优化了硝酸盐/胰蛋白胨比例,发现向相对低硝酸盐培养中添加合适的胰蛋白胨有利于三角褐指藻同时积累生物量和TAG。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/62e6/11729347/5a07cfdfe5c2/jmb-34-12-2702-f1.jpg

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