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新型蓝藻胞外聚合物主要成分分离分析方法。

New procedure for separation and analysis of the main components of cyanobacterial EPS.

机构信息

Technical University of Kaiserslautern, Chair of Bioprocess Engineering, Gottlieb-Daimler-Str. 49, 67663, Kaiserslautern, Germany.

University of Applied Sciences Bingen, Department of Life Sciences and Engineering, 55411, Bingen am Rhein, Germany.

出版信息

J Biotechnol. 2021 Feb 20;328:78-86. doi: 10.1016/j.jbiotec.2021.01.007. Epub 2021 Jan 20.

Abstract

Phototrophic biofilms produce a matrix of extracellular polymeric substances (EPS), which holds the cells together and functions inter alia as nutrient storage and protection layer. EPS mainly consist of water, polysaccharides, proteins, lipids and nucleic acids as well as lysis and hydrolysis products which makes the composition very complex. Thus, rough simplifications are used and commonly one or at most two components of the EPS are examined. In this work a new procedure for separation and analysis of EPS in the main components (i) polysaccharides, (ii) proteins and (iii) lipids is presented with recovery rates of nearly 100 %. The method was established with synthetic EPS, which based on the composition of real EPS described in literature. Afterwards, the method was transferred to real EPS samples allowing a deeper insight in the composition of EPS from only one sample. The composition of EPS-extracts from Nostoc spec, cultivated under heterotrophic and mixotrophic batch and fed-batch conditions, was analysed during a cultivation period of 14 days. It was observed that mixotrophic cultivation led to higher amounts of carbohydrates, lipids and proteins than heterotrophic cultivation respectively, regardless of batch or fed-batch culture. While the amount of proteins in the EPS increased during the cultivation period, carbohydrates and lipids were dominant in the beginning and decreased afterwards.

摘要

光养生物膜产生细胞外聚合物物质(EPS)的基质,该基质将细胞固定在一起,其功能除其他外还包括作为营养物质储存和保护层。EPS 主要由水、多糖、蛋白质、脂质和核酸以及裂解和水解产物组成,这使得其组成非常复杂。因此,通常会进行粗略的简化,并且通常只检查 EPS 的一个或最多两个成分。在这项工作中,提出了一种新的分离和分析 EPS 主要成分(i)多糖、(ii)蛋白质和(iii)脂质的方法,回收率接近 100%。该方法是用合成 EPS 建立的,该 EPS 基于文献中描述的实际 EPS 的组成。然后,将该方法转移到实际 EPS 样品上,从而可以更深入地了解仅从一个样品中 EPS 的组成。在 14 天的培养期间,分析了在异养和混合营养批式和补料分批条件下培养的 Nostoc spec 的 EPS 提取物的组成。观察到,与异养培养相比,混合营养培养导致更多的碳水化合物、脂质和蛋白质,而与批式或补料分批培养无关。尽管 EPS 中的蛋白质含量在培养期间增加,但碳水化合物和脂质在开始时占主导地位,随后减少。

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