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碳源和氮源对海洋菌株CNCM I-1629产毒的影响。

Influence of the Carbon and Nitrogen Sources on Diabolican Production by the Marine Strain CNCM I-1629.

作者信息

Delbarre-Ladrat Christine, Sinquin Corinne, Marchand Laetitia, Bonnetot Sandrine, Zykwinska Agata, Verrez-Bagnis Véronique, Colliec-Jouault Sylvia

机构信息

Ifremer, MASAE, EM3B Laboratory, CEDEX 3, F-44300 Nantes, France.

出版信息

Polymers (Basel). 2022 May 13;14(10):1994. doi: 10.3390/polym14101994.

Abstract

Recent advances in glycobiotechnology show that bacterial exopolysaccharides (EPS) presenting glycosaminoglycan (GAG)-like properties can provide a valuable source of bio-active macromolecules for industrial applications. The HE800 EPS, named diabolican, is a marine-derived anionic high-molecular-weight polysaccharide produced by CNCM I-1629 which displays original structural features close to those of hyaluronic acid. We investigated the impact of carbon and nitrogen substrates on both growth and diabolican production. Both substrates were screened by a one-factor-at-a-time method, and experimental designs were used to study the effect of glucose, mannitol, and ammonium acetate various concentrations. Results showed that the medium composition affected not only the bacterium growth and EPS yield, but also the EPS molecular weight (MW). EPS yields of 563 and 330 mg L were obtained in the presence of 69.3 g L glucose and 24.6 g L mannitol, respectively, both for 116.6 mM ammonium acetate. MW was the highest, with 69.3 g L glucose and 101.9 mM ammonium acetate (2.3 × 10 g mol). In parallel, the bacterial maximum specific growth rate was higher when both carbon and nitrogen substrate concentrations were low. This work paves the way for the optimization of marine exopolysaccharide production of great interest in the fields of human health and cosmetics.

摘要

糖生物技术的最新进展表明,具有糖胺聚糖(GAG)样特性的细菌胞外多糖(EPS)可为工业应用提供有价值的生物活性大分子来源。名为diabolican的HE800 EPS是一种由法国国家微生物保藏中心(CNCM)I-1629生产的海洋来源阴离子高分子量多糖,其结构特征与透明质酸相似。我们研究了碳源和氮源对生长及diabolican产量的影响。通过一次只改变一个因素的方法对两种底物进行筛选,并采用实验设计研究不同浓度的葡萄糖、甘露醇和醋酸铵的影响。结果表明,培养基组成不仅影响细菌生长和EPS产量,还影响EPS的分子量(MW)。在116.6 mM醋酸铵存在的情况下,分别在69.3 g/L葡萄糖和24.6 g/L甘露醇存在下获得了563和330 mg/L的EPS产量。在69.3 g/L葡萄糖和101.9 mM醋酸铵(2.3×10 g/mol)存在时,MW最高。同时,当碳源和氮源底物浓度都较低时,细菌的最大比生长速率较高。这项工作为优化海洋胞外多糖的生产铺平了道路,这在人类健康和化妆品领域具有重大意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d8da/9145141/04569c419a90/polymers-14-01994-g001.jpg

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