Laboratory of Molecular Biotechnology of Eukaryotes, Center of Biotechnology of Sfax (CBS), University of Sfax, Sfax, Tunisia.
Laboratory of Biotechnology and Plant Improvement, Centre of Biotechnology of Sfax (CBS), University of Sfax, Sfax, Tunisia.
Arch Microbiol. 2024 Sep 9;206(10):395. doi: 10.1007/s00203-024-04111-3.
Cello-oligosaccharides (COS) become a new type of functional oligosaccharides. COS transglycosylation reactions were studied to enhance COS yield production. Seeking the ability of the free form of Fusarium solani β-glucosidase (FBgl1) to synthesize COS under low substrate concentrations, we found out that this biocatalyst initiates this reaction with only 1 g/L of cellobiose, giving rise to the formation of cellotriose. Cellotriose and cellopentaose were detected in biphasic conditions with an immobilized FBgl1 and when increased to 50 g/L of cellobiose as a starter concentration. After the biocatalyst recycling process, the trans-glycosylation yield of COS was maintained after 5 cycles, and the COS concentration was 6.70 ± 0.35 g/L. The crude COS contained 20.15 ± 0.25 g/L glucose, 23.15 ± 0.22 g/L non-reacting substrate cellobiose, 5.25 ± 0.53 g/L, cellotriose and 1.49 ± 0.32 g/L cellopentaose. A bioprocess was developed for cellotriose enrichment, using whole Bacillus velezensis cells as a microbial purification tool. This bacteria consumed glucose, unreacted cellobiose, and cellopentaose while preserving cellotriose in the fermented medium. This study provides an excellent enzyme candidate for industrial COS production and is also the first study on the single-step COS enrichment process.
纤低聚糖(COS)成为一种新型的功能性低聚糖。研究了 COS 转糖苷反应以提高 COS 的产量。为了寻求游离形式的尖孢镰刀菌β-葡萄糖苷酶(FBgl1)在低底物浓度下合成 COS 的能力,我们发现这种生物催化剂仅用 1g/L 的纤维二糖就启动了该反应,生成纤维三糖。在两相条件下,用固定化 FBgl1 检测到纤维三糖和纤维五糖,当起始浓度增加到 50g/L 的纤维二糖时。在生物催化剂回收过程后,COS 的转糖苷产率在 5 个循环后保持不变,COS 浓度为 6.70±0.35g/L。粗 COS 中含有 20.15±0.25g/L 葡萄糖、23.15±0.22g/L 未反应的底物纤维二糖、5.25±0.53g/L 纤维三糖和 1.49±0.32g/L 纤维五糖。开发了一种用于纤维三糖富集的生物工艺,使用整细胞 Bacillus velezensis 作为微生物纯化工具。该细菌在发酵培养基中消耗葡萄糖、未反应的纤维二糖和纤维五糖,同时保留纤维三糖。这项研究为工业 COS 生产提供了一种优秀的酶候选物,也是首次对单步 COS 富集工艺进行研究。