Production and functional characteristics of exopolysaccharide by Lactobacillus plantarum co-cultivation with Saccharomyces cerevisiae

Author:

Ahmad Bustamam 'Aina Nabilah Faizah1,Daud Nur Sazwani1,Mohamad Azam Zaheda1,Rosli Mohamad Azzuan1,Ramli Solleh2,Zainol Noorazwani2,Nadri Muhammad Helmi3,Leong Hong Yeng3,Othman Nor Zalina3

Affiliation:

1. Innovation Centre in Agritechnology for Advanced Bioprocess, Universiti Teknologi Malaysia-Pagoh, 84600 Muar, Johor, Malaysia

2. Institute of Bioproduct Development, Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor Bahru, Malaysia

3. Department of Bioscience, Faculty of Science, Universiti Teknologi Malaysia (UTM), 81310 Skudai, Johor Bahru, Malaysia

Abstract

Exopolysaccharides (EPS) are well-known biopolymers secreted by several lactic acid bacteria with combination of various strains. The aim of this study is to increase EPS production by co-culturing Lactobacillus plantarum ATCC 8014 with Saccharomyces cerevisiae ICA-Y01 and study the changes in the functional characteristics of the EPS from both cultivations. In this study, the production and functional characteristics of EPS from co-cultivation culture of L. plantarum ATCC 8014 with S. cerevisiae ICA-Y01 were evaluated. The co-cultivation of L. plantarum ATCC 8014 with S. cerevisiae ICA-Y01was markedly increased EPS production up to 55.84% with 6.8 g/l yield after 20 hours cultivation. The pH of the co-cultivation culture was remained constantly at 5.2 until the end of cultivation. Furthermore, co-cultivation under pH 6 in the 16L bioreactor showed a higher growth rate of 0.214 h-1 and EPS production increased up to 104.44% when compared with single cultivation of L. plantarum ATCC 8014. This result clearly indicates the importance of growing the cells in the controlled pH condition when cultivated with S. cerevisiae ICA-Y01 to enhance EPS production. The functional characteristics of EPS secreted from both cultivation strategies were also evaluated. FT-IR spectroscopy confirmed EPS presence from both cultivations, indicating functional group of the polysaccharide with D-glucose units bound by α-(1→6). The EPS production from single cultivation showed a higher DPPH radical scavenging activity (88.21%) and IC50 (19.57%) as compared to EPS produced from co-cultivation with DPPH scavenging exhibited 32.45% with no IC50 value detected. Furthermore, solubility and water uptake of EPS from single cultivation are higher in comparison to co-cultivation. In conclusion, higher efficiency in the bioactivity of EPS from the single cultivation of L. plantarum ATCC 8014 was confirmed even though the EPS yield is low as compared to EPS synthesis through inter-kingdom cultivation.

Funder

Universiti Teknologi Malaysia

Publisher

Malaysian Society for Molecular Biology and Biotechnology

Subject

Molecular Biology,Biotechnology

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