Dai Yutian, Xu Min, Zhou Zhijiang, Han Ye
School of Chemical Engineering & Technology, Tianjin University, Tianjin 300350, China.
Polymers (Basel). 2024 Mar 10;16(6):759. doi: 10.3390/polym16060759.
In this study, a () strain DT1 capable of producing exopolysaccharides (EPS) was isolated from dried cabbages of Tianjin, a local fermented vegetable product. Three distinct polysaccharide fractions were isolated from the fermentation broth of DT1, namely, DT1-0, DT1-2, and DT1-5. The structural composition and properties of these fractions were investigated. The predominant EPS, DT1-0, was identified as a novel heteropolysaccharide composed of fructose and glucose with branched structures. The repeating unit was determined to be [4)-α-D-Glcp-(1→6)-α-D-Glcp-(1→6)-β-D-Fruf-(2→6)-β-D-Fruf-(2→6-)-β-D-Fruf-(2→], with fructose and glucose connected by β-(2→1) and α-(1→4) glycosidic linkages between the third fructose and the first glucose, respectively. The molecular weight () was estimated to be 4.253 × 10 Da. DT1-0 presented a smooth and porous surface structure as observed through SEM and exhibited a water-holding capacity of 504 ± 5.3%, maximum thermal stability at 245 °C, and an oil-holding capacity of 387 ± 1.9% for coconut oil. DT1-2 was identified as a fructooligosaccharide. DT1-5 was characterized as a polysaccharide composed of glucose and fructose. In conclusion, these findings provide substantial support for the further application of strain DT1 and its EPS fractions, DT1-0, DT1-2, and DT1-5, as potential alternatives for functional food additives or ingredients.
在本研究中,从当地发酵蔬菜产品天津干白菜中分离出一株能够产生胞外多糖(EPS)的()菌株DT1。从DT1的发酵液中分离出三种不同的多糖组分,即DT1 - 0、DT1 - 2和DT1 - 5。对这些组分的结构组成和性质进行了研究。主要的EPS,DT1 - 0,被鉴定为一种由果糖和葡萄糖组成的具有分支结构的新型杂多糖。重复单元被确定为[4)-α-D-葡萄糖-(1→6)-α-D-葡萄糖-(1→6)-β-D-果糖-(2→6)-β-D-果糖-(2→6-)-β-D-果糖-(2→],其中果糖和葡萄糖分别通过第三个果糖和第一个葡萄糖之间的β-(2→1)和α-(1→4)糖苷键相连。分子量()估计为4.253×10 Da。通过扫描电子显微镜观察,DT1 - 0呈现出光滑且多孔的表面结构,其持水能力为504±5.3%,在245℃时具有最大热稳定性,对椰子油的持油能力为387±1.9%。DT1 - 2被鉴定为低聚果糖。DT1 - 5的特征是一种由葡萄糖和果糖组成的多糖。总之,这些发现为菌株DT1及其EPS组分DT1 - 0、DT1 - 2和DT1 - 5作为功能性食品添加剂或成分的潜在替代品的进一步应用提供了大量支持。