Laboratoire Analyse, Valorisation Et Sécurité Des Aliments, Université de Sfax, ENIS, 3038, Sfax, Tunisia.
Associate Laboratory i4HB - Institute for Health and Bioeconomy, School of Science and Technology, NOVA University Lisbon, Caparica, Lisbon, Portugal.
Environ Sci Pollut Res Int. 2022 Mar;29(15):22043-22055. doi: 10.1007/s11356-021-17207-w. Epub 2021 Nov 13.
Large quantities of waste biomass are generated annually worldwide by many industries and are vastly underutilized. However, these wastes contain sugars and other dissolved organic matter and therefore can be exploited to produce microbial biopolymers. In this study, four selected Halomonas strains, namely, Halomonas caseinilytica K1, Halomonas elongata K4, Halomonas smyrnensis S3, and Halomonas halophila S4, were investigated for the production of exopolysaccharides (EPS) using low-cost agro-industrial wastes as the sole carbon source: cheese whey, grape pomace, and glycerol. Interestingly, both yield and monosaccharide composition of EPS were affected by the carbon source. Glucose, mannose, galactose, and rhamnose were the predominant monomers, but their relative molar ratio was different. Similarly, the average molecular weight of the synthesized EPS was affected, ranging from 54.5 to 4480 kDa. The highest EPS concentration (446 mg/L) was obtained for H. caseinilytica K1 grown on cheese whey that produced an EPS composed mostly of galactose, rhamnose, glucose, and mannose, with lower contents of galacturonic acid, ribose, and arabinose and with a molecular weight of 54.5 kDa. Henceforth, the ability of Halomonas strains to use cost-effective substrates, especially cheese whey, is a promising approach for the production of EPS with distinct physicochemical properties suitable for various applications.
每年全球许多行业都会产生大量的废生物质,但这些废物的利用率很低。然而,这些废物中含有糖和其他溶解的有机物,因此可以利用它们来生产微生物生物聚合物。在这项研究中,我们研究了四种选定的盐单胞菌菌株,即产乳酪素盐单胞菌 K1、伸长盐单胞菌 K4、琼氏盐单胞菌 S3 和嗜盐盐单胞菌 S4,以利用低成本的农业工业废物作为唯一碳源生产胞外多糖 (EPS):乳清、葡萄渣和甘油。有趣的是,EPS 的产量和单糖组成都受到碳源的影响。葡萄糖、甘露糖、半乳糖和鼠李糖是主要的单体,但它们的相对摩尔比不同。同样,合成的 EPS 的平均分子量也受到影响,范围从 54.5 到 4480 kDa。在乳清上生长的产乳酪素盐单胞菌 K1 获得了最高的 EPS 浓度(446mg/L),其 EPS 主要由半乳糖、鼠李糖、葡萄糖和甘露糖组成,较低含量的半乳糖醛酸、核糖和阿拉伯糖,分子量为 54.5 kDa。因此,盐单胞菌菌株利用具有成本效益的底物的能力,特别是乳清,是生产具有独特物理化学性质的 EPS 的一种很有前途的方法,适用于各种应用。