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Bacterial production of fatty acid and biodiesel: opportunity and challenges  45

                                 ˇ
           IlicTomic, T., Genˇ ci´ c, M.S., Zivkovi´ c, M.Z., Vasiljevic, B., Djokic, L., Nikodinovic-Runic,
               J., et al., 2015. Structural diversity and possible functional roles of free fatty acids of the
               novel soil isolate Streptomyces sp. NP10. Appl. Microbiol. Biotechnol. 99, 4815 4833.
           Ishige, T., Tani, A., Sakai, Y., Kato, N., 2003. Wax ester production by bacteria. Curr. Opin.
               Microbiol. 6, 244 250.
           Janßen, H.J., Steinbu ¨chel, A., 2014. Production of triacylglycerols in Escherichia coli by
               deletion of the diacylglycerol kinase gene and heterologous overexpression of atfA from
               Acinetobacter baylyi ADP1. Appl. Microbiol. Biotechnol. 98, 1913 1924.
           Kalscheuer, R., Sto ¨lting, T., Steinbu ¨chel, A., 2006. Microdiesel: Escherichia coli engineered
               for fuel production. Microbiology 152, 2529 2536.
           Kalscheuer, R., Sto ¨veken, T., Malkus, U., Reichelt, R., Golyshin, P.N., Sabirova, J.S., et al.,
               2007. Analysis of storage lipid accumulation in Alcanivorax borkumensis: evidence for
               alternative triacylglycerol biosynthesis routes in bacteria. J. Bacteriol. 189, 918 928.
           Karatay, S.E., Do ¨nmez, G., 2011. Microbial oil production from thermophile cyanobacteria
               for biodiesel production. Appl. Energy 88, 3632 3635.
           Katayama, T., Kanno, M., Morita, N., Hori, T., Narihiro, T., Mitani, Y., et al., 2014. An ole-
               aginous bacterium that intrinsically accumulates long-chain free fatty acids in its cyto-
               plasm. Appl. Environ. Microbiol. 80, 1126 1131.
           Khosla, K., Rathour, R., Maurya, R., Maheshwari, N., Gnansounou, E., Larroche, C., et al.,
               2017. Biodiesel production from lipid of carbon dioxide sequestrating bacterium and
               lipase of psychrotolerant Pseudomonas sp. ISTPL3 immobilized on biochar. Bioresour.
               Technol. 245, 743 750.
           Kim, J., Yun, S., 2006. Discovery of cellulose as a smart material. Macromolecules 39,
               4202 4206.
           Kumar, M., Thakur, I.S., 2018. Municipal secondary sludge as carbon source for production
               and characterization of biodiesel from oleaginous bacteria. Bioresour. Technol. Rep. 4,
               106 113.
           Kumar, S., Gupta, N., Pakshirajan, K., 2015. Simultaneous lipid production and dairy waste-
               water treatment using Rhodococcus opacus in a batch bioreactor for potential biodiesel
               application. J. Environ. Chem. Eng. 3, 1630 1636.
           Kumar, M., Gazara, R.K., Verma, S., Kumar, M., Verma, P.K., Thakur, I.S., 2016a. Genome
               sequence of carbon dioxide-sequestering Serratia sp. strain ISTD04 isolated from mar-
               ble mining rocks. Genome Announc. 4, 5.
           Kumar, M., Gazara, R.K., Verma, S., Kumar, M., Verma, P.K., Thakur, I.S., 2016b. Genome
               sequence of Pandoraea sp. ISTKB, a lignin degrading β-proteobacterium, isolated from
               the rhizospheric soil. Genome Announc. 4, 6.
           Kumar, M., Ghosh, P., Khosla, K., Thakur, I.S., 2016c. Biodiesel production from municipal
               secondary sludge. Bioresour. Technol. 216, 165 171.
           Kumar, M., Gupta, A., Thakur, I.S., 2016d. Carbon dioxide sequestration by chemolitho-
               trophic oleaginous bacteria for production and optimization of polyhydroxyalkanoate.
               Bioresour. Technol. 213, 249 256.
           Kumar, M., Gupta, J., Thakur, I.S., 2016e. Production and optimization of polyhydroxyalk-
               anoate from oleaginous bacteria Bacillus sp. ISTC1. Res. Rev. J. Microbiol. Biotechnol.
               5, 80 89.
           Kumar, M., Khosla, K., Thakur, I.S., 2017a. Optimization of process parameters for the pro-
               duction of biodiesel from carbon dioxide sequestering bacterium. JEES 3, 43 50.
           Kumar, M., Morya, R., Gnansounou, E., Larroche, C., Thakur, I.S., 2017b. Characterization
               of carbon dioxide concentrating chemolithotrophic bacterium Serratia sp. ISTD04 for
               production of biodiesel. Bioresour. Technol. 243, 893 897.
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