Universiti Teknologi Malaysia Institutional Repository

Effects of pH and temperature on the growth and ß-glucosidase activity of lactobacillus rhamnosus NRRL 442 in anaerobic fermentation

Kok, F. S. and Muhamad, Ida Idayu and Lee, Chew Tin and Razali, Firdausi and Pa’e, N. and Salleh, Shaharuddin (2012) Effects of pH and temperature on the growth and ß-glucosidase activity of lactobacillus rhamnosus NRRL 442 in anaerobic fermentation. International Review of Chemical Engineering, 4 (3). pp. 293-299. ISSN 2035-1755

Full text not available from this repository.

Official URL: http://dms.library.utm.my:8080/vital/access/manage...

Abstract

This study investigated the effects of pH and temperature on the growth and β- glucosidase activity of Lactobacillus rhamnosus NRRL 442 during anaerobic fermentation. Initially, the β-glucosidase activity of the cell harvested from shake flask culture was characterized. The result indicated the cell exhibited the highest specific β-glucosidase activity (1.7990±0.0096 UE mg-1 DCM) at pH 6.5 and 46oC. Subsequently, the effect of fermentation pH (range: 4.5-6.5) on cell growth and β-glucosidase activity was investigated in 2-L bioreactor. Cell suppression due to acidity (pH ≤ 4.5) was observed in fermentation with controlled and uncontrolled pH. Significant improvement of cell growth was found at higher pH (5.5-6.5). The cell exhibited the highest growth rate at pH 6 and highest β-glucosidase activity (30.09 ± 0.16 UE, 4.16 times β-glucosidase activity in uncontrolled fermentation). The optimum temperature for the fermentation in bioreactor was found to be 40oC for cell growth and β-glucosidase activity. All profiles including studies on effect of pH and temperature indicated that the cells exhibited higher β-glucosidase activity at higher growth rate. In addition, a short period of starvation (3h) enhanced the β-glucosidase activity of the cell under all studied conditions except for fermentation where cell growth was suppressed due to acidity.

Item Type:Article
Uncontrolled Keywords:Lactobacillus Rhamnosus, Lactic Acid Fermentation, Β-Glucosidase, Ph, Temperature
Subjects:T Technology > TJ Mechanical engineering and machinery
Divisions:Mechanical Engineering
ID Code:31776
Deposited By: Fazli Masari
Deposited On:12 Jun 2013 04:08
Last Modified:31 Mar 2019 08:23

Repository Staff Only: item control page