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Starch Flocculation by the Sweet Potato Sour Liquid Is Mediated by the Adhesion of Lactic Acid Bacteria to Starch

机译:甘薯酸液对淀粉的絮凝作用是乳酸菌对淀粉的黏附作用。

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摘要

In the current study, we focused on the mechanism underlying starch flocculation by the sweet potato sour liquid. The traditional microbial techniques and 16S rDNA sequencing revealed that Lactobacillus was dominant flocculating microorganism in sour liquid. In total, 86 bacteria, 20 yeasts, and 10 molds were isolated from the sour liquid and only eight Lactobacillus species exhibited flocculating activity. Lactobacillus paracasei subsp. paracasei L1 strain with a high flocculating activity was isolated and identified, and the mechanism of starch flocculation was examined. L. paracasei subsp. paracasei L1 cells formed chain-like structures on starch granules. Consequently, these cells connected the starch granules to one another, leading to formation of large flocs. The results of various treatments of L1 cells indicated that bacterial surface proteins play a role in flocculation and L1 cells adhered to the surface of starch granules via specific surface proteins. These surface starch-binding proteins were extracted using the guanidine hydrochloride method; 10 proteins were identified by mass spectrometry: three of these proteins were glycolytic enzymes; two were identified as the translation elongation factor Tu; one was a cell wall hydrolase; one was a surface antigen; one was lyzozyme M1; one was a glycoside hydrolase; and one was an uncharacterized proteins. This study will paves the way for future industrial application of the L1 isolate in starch processing and food manufacturing.
机译:在当前的研究中,我们重点研究了甘薯酸液使淀粉絮凝的机理。传统的微生物技术和16S rDNA测序表明,乳酸菌是酸性液体中的主要絮凝微生物。从酸液中总共分离出86种细菌,20种酵母和10种霉菌,只有8种乳酸菌具有絮凝活性。副干酪乳杆菌亚种。分离并鉴定了具有高絮凝活性的副干酪L1菌株,并研究了淀粉絮凝的机理。副干酪乳杆菌亚种副干酪L1细胞在淀粉颗粒上形成链状结构。因此,这些细胞将淀粉颗粒彼此连接,导致形成大絮状物。 L1细胞的各种处理结果表明细菌表面蛋白在絮凝中起作用,L1细胞通过特定的表面蛋白粘附在淀粉颗粒的表面。用盐酸胍法提取这些表面淀粉结合蛋白。通过质谱鉴定出10种蛋白质:这些蛋白质中的三种是糖酵解酶。确定两个为翻译延伸因子Tu;一个是细胞壁水解酶。一个是表面抗原。一个是溶菌酶M1。一种是糖苷水解酶。一种是未鉴定的蛋白质。这项研究将为L1分离物在淀粉加工和食品制造中的未来工业应用铺平道路。

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