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从实验室到市场:新型天然表面活性剂星虫糖脂的生产工艺的综合生物工艺设计方法。

From lab to market: An integrated bioprocess design approach for new-to-nature biosurfactants produced by Starmerella bombicola.

机构信息

Centre for Industrial Biotechnology and Biocatalysis (InBio.be), Faculty of Bioscience Engineering, Ghent University, Ghent, Belgium.

Bio Base Europe Pilot Plant, Ghent, Belgium.

出版信息

Biotechnol Bioeng. 2018 May;115(5):1195-1206. doi: 10.1002/bit.26539. Epub 2018 Feb 4.

Abstract

Glycolipid microbial biosurfactants, such as sophorolipids (SLs), generate high industrial interest as 100% biobased alternatives for traditional surfactants. A well-known success story is the efficient SL producer Starmerella bombicola, which reaches titers well above 200 g/L. Recent engineering attempts have enabled the production of completely new types of molecules by S. bombicola, e.g. the bolaform SLs. Scale-up of bolaform SL production was performed at 150 L scale. The purified product was evaluated in detergent applications, as classic SLs are mostly applied in eco-friendly detergents. In this paper, we show that they can be used as green and non-irritant surfactants in for example (automatic) dishwashing applications. However, due to the presence of an ester function in the biosurfactant molecule a limited chemical stability at higher pH values (>6.5) was noticed, (therefore called 'non-symmetrical' (nsBola)) which, is a major drawback that will most likely inhibit market introduction. An integrated bioprocess design (IBPD) strategy was thus applied to resolve this issue. The strategy was to replace the fed fatty acids with fatty alcohols, to generate so-called "symmetrical bolaform (sBola) sophorosides (SSs)," containing two instead of one glycosidic bond. Next to a change in feeding strategy, the blocking of the fatty alcohols from metabolizing/oxidizing through the suggested ω-oxidation pathway was necessary. For the latter, two putative fatty alcohol oxidase genes (fao1 and fao2) were identified in the S. bombicola genome and deleted in the bolaform SL producing strain (ΔatΔsble). Shake flask experiments for these new strains (ΔatΔsbleΔfao1 and ΔatΔsbleΔfao2) were performed to evaluate if the fed fatty alcohols were directly implemented into the SL biosynthesis pathway. Indeed, sBola sophorosides (SSs) production up to 20 g/L was observed for the ΔatΔsbleΔfao1 strain. Unexpectedly, the ΔatΔsbleΔfao2 strain only produced minor amounts of sBola sophorosides (SSs), and mainly nsBola SLs (alike the parental ΔatΔsble strain). The sBola sophorosides (SSs) were purified and their symmetrical structure was confirmed by NMR. They were found to be significantly more stable at higher pH, opening up the application potential of the biosurfactant by enhancing its stability properties.

摘要

糖脂微生物生物表面活性剂,如槐糖脂 (SLs),作为传统表面活性剂的 100%生物基替代品,引起了人们的极大兴趣。一个著名的成功案例是高效的 SL 生产者 Starmerella bombicola,它的产量远远超过 200g/L。最近的工程尝试使 S. bombicola 能够生产出全新类型的分子,例如 bolaform SLs。bolaform SL 生产的放大在 150L 规模上进行。纯化的产品在洗涤剂应用中进行了评估,因为经典的 SL 主要应用于环保型洗涤剂中。在本文中,我们表明它们可以用作例如 (自动) 洗碗机应用中的绿色、非刺激性表面活性剂。然而,由于生物表面活性剂分子中存在酯基,在较高 pH 值 (>6.5) 下会注意到有限的化学稳定性(因此称为“非对称” (nsBola)),这是一个主要的缺点,很可能会抑制市场引入。因此,应用了一种集成生物过程设计 (IBPD) 策略来解决这个问题。该策略是用脂肪酸醇代替进料脂肪酸,生成所谓的“对称 bolaform (sBola) 槐糖苷 (SSs)”,其中含有两个而不是一个糖苷键。除了改变进料策略外,还需要通过建议的 ω-氧化途径阻止脂肪酸醇的代谢/氧化。为此,在 S. bombicola 基因组中鉴定了两个可能的脂肪酸醇氧化酶基因 (fao1 和 fao2),并在 bolaform SL 生产菌株 (ΔatΔsble) 中删除了这些基因。对这些新菌株 (ΔatΔsbleΔfao1 和 ΔatΔsbleΔfao2) 进行了摇瓶实验,以评估进料脂肪酸醇是否直接被纳入 SL 生物合成途径。实际上,观察到 ΔatΔsbleΔfao1 菌株生产高达 20g/L 的 sBola 槐糖苷 (SSs)。出乎意料的是,ΔatΔsbleΔfao2 菌株仅产生少量的 sBola 槐糖苷 (SSs),主要是 nsBola SLs(与亲本 ΔatΔsble 菌株一样)。sBola 槐糖苷 (SSs) 被纯化,其对称结构通过 NMR 确认。它们在较高 pH 值下稳定性显著提高,通过增强其稳定性特性,为生物表面活性剂的应用潜力开辟了道路。

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