Ectoine production from a novel bacterial strain and high-purity purification with a cost-effective and single-step method

IF 4.1 2区 生物学 Q2 BIOTECHNOLOGY & APPLIED MICROBIOLOGY Journal of biotechnology Pub Date : 2024-04-09 DOI:10.1016/j.jbiotec.2024.04.003
Furkan Orhan , Akın Akıncıoğlu , Ertuğrul Ceyran
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Abstract

This study marks the exploration into the production of ectoine, a valuable compound with significant potential as an antioxidant, osmoprotectant, anti-inflammatory agent, and stabilizer of cell membranes, proteins, and DNA integrity. Our focus centred on investigating the presence of ectoine and optimizing its production by the novel ectoine producer bacterial strain, Piscibacillus halophilus. For the optimization of ectoine production the effects of carbon and nitrogen sources, salt, pH, agitation and incubation period were optimized by one-factor-at-a-time. We started with an initial ectoine content of 46.92 mg/L, and through a series of optimization processes, we achieved a remarkable increase, resulting in an ectoine content of 1498.2 mg/L. The bacterial species P. halophilus achieved its highest ectoine production after 48 h of incubation, with conditions set at 10 % (w/v) salinity, pH of 7.50, and an agitation speed of 160 rpm. These precise conditions were found to be the most favourable for maximizing ectoine production by this strain. Besides, we have achieved successful purification of ectoine from the crude extract through a streamlined single-step process. This purification method has delivered an exceptional level of purity, surpassing 99.15 %, and an impressive yield of over 99 %. Importantly, we accomplished this using readily available and cost-effective strong acids (HCl) and strong bases (NaOH) to arrange pH gradients. The use of acid and base in the purification process of ectoine reflects an innovative and sustainable methodology.

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利用新型细菌菌株生产辛胺,并采用经济高效的单步法进行高纯度纯化
这项研究标志着对生产埃克托因的探索,埃克托因是一种宝贵的化合物,具有抗氧化剂、渗透保护剂、消炎剂以及细胞膜、蛋白质和 DNA 完整性稳定剂的巨大潜力。我们的研究重点是调查嗜卤鱼腥梭菌这一新型嗜卤鱼腥梭菌菌株中是否存在茄碱,并优化其生产。为了优化异辛碱的生产,我们对碳源和氮源、盐、pH 值、搅拌和培养期的影响进行了逐一优化。从最初的 46.92 毫克/升外酪氨酸含量开始,通过一系列优化过程,外酪氨酸含量显著增加,达到了 1498.2 毫克/升。在盐度为 10%(w/v)、pH 值为 7.50、搅拌速度为 160 转/分钟的条件下,嗜卤杆菌在培养 48 小时后达到了最高的茄碱产量。我们发现,这些精确的条件对最大限度地提高该菌株的外藤氨酸产量最为有利。此外,我们还通过简化的单步工艺,成功地从粗提取物中纯化出了外藤氨酸。这种纯化方法的纯度非常高,超过了 99.15%,产量也超过了 99%,令人印象深刻。重要的是,我们使用了现成的、具有成本效益的强酸(HCl)和强碱(NaOH)来安排 pH 梯度,从而实现了这一目标。在外藤素的纯化过程中使用酸和碱,体现了一种创新和可持续的方法。
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来源期刊
Journal of biotechnology
Journal of biotechnology 工程技术-生物工程与应用微生物
CiteScore
8.90
自引率
2.40%
发文量
190
审稿时长
45 days
期刊介绍: The Journal of Biotechnology has an open access mirror journal, the Journal of Biotechnology: X, sharing the same aims and scope, editorial team, submission system and rigorous peer review. The Journal provides a medium for the rapid publication of both full-length articles and short communications on novel and innovative aspects of biotechnology. The Journal will accept papers ranging from genetic or molecular biological positions to those covering biochemical, chemical or bioprocess engineering aspects as well as computer application of new software concepts, provided that in each case the material is directly relevant to biotechnological systems. Papers presenting information of a multidisciplinary nature that would not be suitable for publication in a journal devoted to a single discipline, are particularly welcome.
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