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新型高产西巴韦氏菌Fiplydextran菌株产生的右旋糖酐的鉴定与表征

Identification and characterisation of dextran produced by a novel high yielding Weissella cibaria Fiplydextran strain.

作者信息

Jamdar Sahayog N, Krishnan Rateesh, Rather Sarver Ahmed, N Mallikarjunan, Dhotare Bhaskar

机构信息

Food Technology Division, Bhabha Atomic Research Centre, Mumbai 400085, India; Life Sciences Department, Homi Bhabha National Institute, Mumbai 400094, India.

Food Technology Division, Bhabha Atomic Research Centre, Mumbai 400085, India.

出版信息

Int J Biol Macromol. 2024 Dec;282(Pt 2):136658. doi: 10.1016/j.ijbiomac.2024.136658. Epub 2024 Oct 21.

DOI:10.1016/j.ijbiomac.2024.136658
PMID:39442848
Abstract

An exopolysaccharide (EPS)-producing bacterial strain was isolated from fermented soy milk and identified as Weissella cibaria strain Fiplydextran through morphological, biochemical and 16S rDNA sequence analysis. Here, we report the optimisation of cultural conditions for the organism to achieve maximum EPS production, along with its molecular characterisation, functional properties, and prebiotic potential. The exceptionally high EPS yield (0.61 g per g of sucrose) was obtained from the optimised medium (200 g/L of sucrose, 15 g/L of yeast extract) at 30 °C after 48 h. HPAEC-PAD analysis revealed that the EPS is homopolymer of glucose having M as 3.23 × 10 Da determined using viscosity method. Methylation analysis and NMR results confirmed the EPS as dextran with α (1 → 6)-linkage (96.5 %) as main chain and α (1 → 3)- as branch chain linkage (3.5 %). Thermogravimetric analysis exhibited higher thermal stability of EPS. The EPS was observed to support the growth of Bacteroides spp. in pure culture form but not that of Lactobacillus or Bifidobacterium spp. However, a low level of bifidogenic activity was observed upon use of mixed culture of B. fragilis and B. longum. The research implies industrial applications of W. cibaria Fiplydextran for the production of high molecular weight dextran with better yield.

摘要

从发酵豆浆中分离出一株产胞外多糖(EPS)的细菌菌株,通过形态学、生化和16S rDNA序列分析鉴定为食窦魏斯氏菌Fiplydextran菌株。在此,我们报告了该菌株培养条件的优化,以实现最大EPS产量,以及其分子特征、功能特性和益生元潜力。在30℃培养48小时后,从优化培养基(200 g/L蔗糖,15 g/L酵母提取物)中获得了异常高的EPS产量(每克蔗糖0.61克)。高效阴离子交换色谱-脉冲安培检测(HPAEC-PAD)分析表明,EPS是葡萄糖的均聚物,用粘度法测定其分子量为3.23×10 Da。甲基化分析和核磁共振结果证实,EPS为葡聚糖,以α(1→6)-连接(96.5%)为主链,α(1→3)-为支链连接(3.5%)。热重分析显示EPS具有较高的热稳定性。观察到EPS以纯培养形式支持拟杆菌属的生长,但不支持乳酸杆菌属或双歧杆菌属的生长。然而,在使用脆弱拟杆菌和长双歧杆菌的混合培养物时,观察到了低水平的双歧活性。该研究表明食窦魏斯氏菌Fiplydextran在工业上可用于生产高产率的高分子量葡聚糖。

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