Utilization of Low-Cost Fatty Acid Sources by Bacterial Isolate …
27
Acknowledgements The authors convey their sincerest gratitude to the Department of Biotechnology and Department of Chemical Engineering, National Institute of Technology Durgapur, India
for providing the necessary instrumental and infrastructural support.
References
Araújo HWC, Fukushima K, Campos-Takaki GM (2010) Prodigiosin production by Serratia
marcescens UCP 1549 using renewable-resources as a low cost substrate. Molecules 15:6931–
6940
Arivizhivendhan KV, Mahesh M, Mary RR, Sekaran G (2015) Bioactive prodigiosin isolated from
Serratia marcescens using solid state fermenter and its bactericidal activity compared with
conventional antibiotics. Microbial Biochemical Technol 7(5):305–312
Aruldass CA, Venil CK, Zakaria ZA, Ahmad WA (2014) Brown sugar as a low-cost medium for
the production of prodigiosin by locally isolated Serratia marcescens UTM1. Int Biodeterior
Biodegrad 95:19–24
Darshan N, Manonmani HK (2015) Prodigiosin and its potential applications. J Food Sci Technol
52:5393–5407
Economic times (2015) http://m.economictimes.com/markets/commodities/groundnut-oil-nowthe-most-expensive-cooking-oil-in-india/articleshow/47777970.cms
Faraag AH, El-Batal AI, El-Hendawy HH (2017) Characterization of prodigiosin produced by
Serratia marcescens strain isolated from irrigation water in Egypt. Nature and Science 15(5):55–
68
Giri AV, Anandkumar N, Muthukumaran G, Pennathur G (2004) A novel medium for the enhanced
cell growth and production of prodigiosin from Serratia marcescens isolated from soil. BMC
Microbiol 4(11):1–10
Kalivoda EJ, Stella NA, Aston MA, Fender JE, Thompson PP, Kowalski RP, Shanks RMQ (2010)
Cyclic AMP negatively regulates prodigiosin production by Serratia marcescens. Res Microbiol
161(2):158–167
Lu Y, Wang L, Xue Y, Zhang C, Xing X, Lou K, Zhang Z, Li Y, Zhang G, Bi J, Su Z (2009)
Production of violet pigment by a newly isolated psychrotrophic bacterium from a glacier in
Xinjiang, China. Biochem Eng J 43:135–141
Luedeking E, Piret L (1959) A kinetic study of the lactic acid fermentation: batch process at
controlled pH. J Biochem Microbiol Technol Eng 4:231–241
Musaalbakri AM, Ariff A, Rosfarizan M, Ismail AKM (2006) Kinetics and modelling of red pigment
fermentation by Monascus purpureus FTC 5391 in 2-litre stirred tank fermenter using glucose
as a carbon source. J Trop Agric Fd Sc 33(2):277–284
Montoya C, Cochard B, Flori A, Cros D, Lopes R (2014) Genetic architecture of palm oil fatty
acid composition in cultivated oil palm (Elaeis guineensis Jacq.) compared to its wild relative E.
oleifera (H.B.K) Cortés. PLoS One 9(5):e95412. https://doi.org/10.1371/journal.pone.0095412
Ren Y, Gong J, Fu R, Zhang J, Fang K, Liu X (2018) Antibacterial dyeing of silk with prodigiosins
suspention produced by liquid fermentation. J Clean Prod 201:648–656. https://doi.org/10.1016/
j.jclepro.2018.08.098
Sumathi C, MohanaPriya D, Swarnalatha S, Dinesh MG, Sekaran G (2014) Production of prodigiosin using tannery fleshing and evaluating its pharmacological effects. Sci World J. https://doi.
org/10.1155/2014/290327
Suryawanshi RK, Patil CD, Borase HP, Salunke BK, Patil SV (2014) Studies on production and
biological potential of prodigiosin by Serratia marcescens. Appl Biochem Biotechnol 173:1209–
1221
Venil CK, Zakaria ZA, Ahmad WA (2013) Bacterial pigments and their applications. Process
Biochem 48:1065–1079
27
Acknowledgements The authors convey their sincerest gratitude to the Department of Biotechnology and Department of Chemical Engineering, National Institute of Technology Durgapur, India
for providing the necessary instrumental and infrastructural support.
References
Araújo HWC, Fukushima K, Campos-Takaki GM (2010) Prodigiosin production by Serratia
marcescens UCP 1549 using renewable-resources as a low cost substrate. Molecules 15:6931–
6940
Arivizhivendhan KV, Mahesh M, Mary RR, Sekaran G (2015) Bioactive prodigiosin isolated from
Serratia marcescens using solid state fermenter and its bactericidal activity compared with
conventional antibiotics. Microbial Biochemical Technol 7(5):305–312
Aruldass CA, Venil CK, Zakaria ZA, Ahmad WA (2014) Brown sugar as a low-cost medium for
the production of prodigiosin by locally isolated Serratia marcescens UTM1. Int Biodeterior
Biodegrad 95:19–24
Darshan N, Manonmani HK (2015) Prodigiosin and its potential applications. J Food Sci Technol
52:5393–5407
Economic times (2015) http://m.economictimes.com/markets/commodities/groundnut-oil-nowthe-most-expensive-cooking-oil-in-india/articleshow/47777970.cms
Faraag AH, El-Batal AI, El-Hendawy HH (2017) Characterization of prodigiosin produced by
Serratia marcescens strain isolated from irrigation water in Egypt. Nature and Science 15(5):55–
68
Giri AV, Anandkumar N, Muthukumaran G, Pennathur G (2004) A novel medium for the enhanced
cell growth and production of prodigiosin from Serratia marcescens isolated from soil. BMC
Microbiol 4(11):1–10
Kalivoda EJ, Stella NA, Aston MA, Fender JE, Thompson PP, Kowalski RP, Shanks RMQ (2010)
Cyclic AMP negatively regulates prodigiosin production by Serratia marcescens. Res Microbiol
161(2):158–167
Lu Y, Wang L, Xue Y, Zhang C, Xing X, Lou K, Zhang Z, Li Y, Zhang G, Bi J, Su Z (2009)
Production of violet pigment by a newly isolated psychrotrophic bacterium from a glacier in
Xinjiang, China. Biochem Eng J 43:135–141
Luedeking E, Piret L (1959) A kinetic study of the lactic acid fermentation: batch process at
controlled pH. J Biochem Microbiol Technol Eng 4:231–241
Musaalbakri AM, Ariff A, Rosfarizan M, Ismail AKM (2006) Kinetics and modelling of red pigment
fermentation by Monascus purpureus FTC 5391 in 2-litre stirred tank fermenter using glucose
as a carbon source. J Trop Agric Fd Sc 33(2):277–284
Montoya C, Cochard B, Flori A, Cros D, Lopes R (2014) Genetic architecture of palm oil fatty
acid composition in cultivated oil palm (Elaeis guineensis Jacq.) compared to its wild relative E.
oleifera (H.B.K) Cortés. PLoS One 9(5):e95412. https://doi.org/10.1371/journal.pone.0095412
Ren Y, Gong J, Fu R, Zhang J, Fang K, Liu X (2018) Antibacterial dyeing of silk with prodigiosins
suspention produced by liquid fermentation. J Clean Prod 201:648–656. https://doi.org/10.1016/
j.jclepro.2018.08.098
Sumathi C, MohanaPriya D, Swarnalatha S, Dinesh MG, Sekaran G (2014) Production of prodigiosin using tannery fleshing and evaluating its pharmacological effects. Sci World J. https://doi.
org/10.1155/2014/290327
Suryawanshi RK, Patil CD, Borase HP, Salunke BK, Patil SV (2014) Studies on production and
biological potential of prodigiosin by Serratia marcescens. Appl Biochem Biotechnol 173:1209–
1221
Venil CK, Zakaria ZA, Ahmad WA (2013) Bacterial pigments and their applications. Process
Biochem 48:1065–1079
