Current Trends in Biotechnology and Pharmacy
Open Access
SCOPUS
  • Year: 2020
  • Volume: 14
  • Issue: 1

Statistical optimization of poly hydroxy butyrate (phb) production by novel Acinetobacter nosocomialis rr20 strain using response surface methodology

  • Author:
  • Reddy A Ranganadha1,, Prabhakar K Vidya2, TC Venkateswarulu1, S Krupanidhi1, Md. Nazneen Bobby, Abraham K Peele, P. Sudhakar3, P. Vijetha4
  • Total Page Count: 8
  • Page Number: 62 to 69

1Department of Biotechnology, VFSTR University, Guntur, Andhra Pradesh, India, 522 213

2Department of Biotechnology, VS University, SPSR, Nellore, Andhra Pradesh, India, 524 320

3Department of Biotechnology, ANU University, Guntur, Andhra Pradesh, India, 522 510

4Department of Chemical Engineering, VFSTR University, Guntur, Andhra Pradesh, India, 522 213

*Email: arr_bt@vignan.ac.in, rangaaluri@gmail.com

Online published on 27 August, 2020.

Abstract

Eco-friendly biopolymers, polyhydroxybutyrate, have been produced by many kinds of bacteria that possess most important applications in food packaging industries and also in medical field. In the present work, PHB production was economized through the statistical optimization of physical variables. The physical variables chosen for the enhanced production of PHB were incubation period, temperature, pH and inoculums size. The relative rate of production has been studied by understanding the complex interactions of variables using face-centred central composite design. The submerged fermentation with Acinetobacter nosocomialis RR20 produced PHB yield of 5.88 g/L at optimized conditions with a notable value change of sixfold increase in comparison with minimal salt medium and these findings have showed that the designed medium was significant in terms of higher of PHB production.

Keywords

Polyhydroxybutyrate, Acinetobacter nosocomialis RR20 strain, Response surface methodology, Shake flask culture