Bednarski W, Adamczak M, Tomasik J, Plaszvzyk M (2004) Application of oil refinery waste in the
biosynthesis of glycolipids by yeast. J Bioresour Technol 95:15–18
Begley M, Cotter PD, Hill C, Ross RP (2009) Identification of a novel two-peptide lantibiotic,
lichenicidin, following rational genome mining for Lan M proteins. Appl Environ Microbiol
75:5451–5460
Belhaij A, Al-Mahdy O (2015) Foamability and foam stability of several surfactants solutions: the
role of screening and flooding. J Pet Environ Biotechnol 6:4. https://doi.org/10.4172/21577463.1000227
Bezza FA, Chirwa EMN (2015) Biosurfactant from Paenibacillus dendritiformis and its application
in assisting polycyclic aromatic hydrocarbon (PAH) and motor oil sludge removal from
contaminated soil and sand media. Process Saf Environ Prot 98:354–364
Bezza FA, Chirwa EMN (2017) Pyrene biodegradation enhancement potential of
lipopeptidebiosurfactant produced by Paenibacillus dendritiformis CN5 strain. J Hazard
Mater 321:218–227
Biniarz P, Łukaszewicz M, Janek T (2017) Screening concepts, characterization and structural
analysis of microbial-derived bioactive lipopeptides: a review. Crit Rev Biotechnol 37:393–410
Bodour A, Drees K, Maier R (2003) Distribution of biosurfactant producing bacteria in undisturbed
and contaminated arid southwestern soils. Appl Environ Microbiol 69(6):3280–3287
Cameron DR, Cooper DG, Neufeld RJ (1988) The mannoprotein of Saccharomyces cerevisiae is an
effective bioemulsifier. Appl Environ Microbiol 54(6):1420–1425
Chakrabarti S (2012) Bacterial biosurfactant characterization, antimicrobial and metal remediation
properties. Ph.D. thesis, National Institute of Technology, Surat, India
Chakraborty S, Ghosh M, Chakraborti S, Jana S, Sen KK, Kokare C, Zhang L (2015) Biosurfactant
produced from Actinomycetes nocardiopsis A17: characterization and its biological evaluation.
Int J Biol Macromol 79:405–412.
Chandran P, Das N (2010) Biosurfactant production and diesel oil degradation by yeast species
Trichosporon asahii isolated from petroleum hydrocarbon contaminated soil. Int J Eng Sci
Technol 2:6942–6953
Cheng Y, He HJ, Yang CP, Zeng GM, Li X, Chen H, Yu GL (2016) Challenges and solutions for
biofiltration of hydrophobic volatile organic compounds. Biotechnol Adv 34(6):1091–1102
Cruz JM, Hughes C, Quilty B, Montagnolli RN, Bidoia ED (2018) Agricultural feedstock
supplemented with manganese for biosurfactant production by Bacillus subtilis. Waste Biomass
Valoriz 9:613–618
de Lima JCB, Ribeiro EJ, Servulo EFC, Resende MM, Cardoso VL (2009) Biosurfactant production by Pseudomonas aeruginosa grown in residual soybean oil. Appl Biochem Biotechnol
152:156–168
Dhanarajan G, Rangarajan V, Bandi C, Dixit A, Das S, Ale K, Sen R (2017) Biosurfactantbiopolymer driven microbial enhanced oil recovery (MEOR) and its optimization by an
ANN-GA hybrid technique. J Biotechnol 256:46–56
Díaz de Rienzo MA, Stevenson P, Marchant R, Banat IM (2016) Antibacterial properties of
biosurfactants against selected Gram-positive and negative bacteria. FEMS Microbiol Lett
363:fnv224. https://doi.org/10.1093/femsle/fnv224
Drenckhan W, Hutzler S (2015) Structure and energy of liquid foams. Adv Colloid Interf Sci
224:1–16. https://doi.org/10.1016/j.cis.2015.05.004
Elazzazy AM, Abdelmoneim TS, Almaghrabi OA (2015) Isolation and characterization of
biosurfactant production under extreme environmental conditions by alkali-halo-thermophilic
bacteria from Saudi Arabia. Saudi J Biol Sci 22(4):466–475
El-Sheshtawya HS, Aiada I, Osman ME, Abo-ELnasrb A, Kobisya AS (2016) Production of
biosurfactants by Bacillus licheniformis and Candida albicans for application in microbial
enhanced oil recovery. Egypt J Pet 25:293–298
Eswari JS, Anand M, Venkateswarlu C (2016) Optimum culture medium composition for
lipopeptide production by Bacillus subtilis using response surface model-based ant colony
optimization. Sadhana 41:55–65
22
K. Mulugeta et al.
biosynthesis of glycolipids by yeast. J Bioresour Technol 95:15–18
Begley M, Cotter PD, Hill C, Ross RP (2009) Identification of a novel two-peptide lantibiotic,
lichenicidin, following rational genome mining for Lan M proteins. Appl Environ Microbiol
75:5451–5460
Belhaij A, Al-Mahdy O (2015) Foamability and foam stability of several surfactants solutions: the
role of screening and flooding. J Pet Environ Biotechnol 6:4. https://doi.org/10.4172/21577463.1000227
Bezza FA, Chirwa EMN (2015) Biosurfactant from Paenibacillus dendritiformis and its application
in assisting polycyclic aromatic hydrocarbon (PAH) and motor oil sludge removal from
contaminated soil and sand media. Process Saf Environ Prot 98:354–364
Bezza FA, Chirwa EMN (2017) Pyrene biodegradation enhancement potential of
lipopeptidebiosurfactant produced by Paenibacillus dendritiformis CN5 strain. J Hazard
Mater 321:218–227
Biniarz P, Łukaszewicz M, Janek T (2017) Screening concepts, characterization and structural
analysis of microbial-derived bioactive lipopeptides: a review. Crit Rev Biotechnol 37:393–410
Bodour A, Drees K, Maier R (2003) Distribution of biosurfactant producing bacteria in undisturbed
and contaminated arid southwestern soils. Appl Environ Microbiol 69(6):3280–3287
Cameron DR, Cooper DG, Neufeld RJ (1988) The mannoprotein of Saccharomyces cerevisiae is an
effective bioemulsifier. Appl Environ Microbiol 54(6):1420–1425
Chakrabarti S (2012) Bacterial biosurfactant characterization, antimicrobial and metal remediation
properties. Ph.D. thesis, National Institute of Technology, Surat, India
Chakraborty S, Ghosh M, Chakraborti S, Jana S, Sen KK, Kokare C, Zhang L (2015) Biosurfactant
produced from Actinomycetes nocardiopsis A17: characterization and its biological evaluation.
Int J Biol Macromol 79:405–412.
Chandran P, Das N (2010) Biosurfactant production and diesel oil degradation by yeast species
Trichosporon asahii isolated from petroleum hydrocarbon contaminated soil. Int J Eng Sci
Technol 2:6942–6953
Cheng Y, He HJ, Yang CP, Zeng GM, Li X, Chen H, Yu GL (2016) Challenges and solutions for
biofiltration of hydrophobic volatile organic compounds. Biotechnol Adv 34(6):1091–1102
Cruz JM, Hughes C, Quilty B, Montagnolli RN, Bidoia ED (2018) Agricultural feedstock
supplemented with manganese for biosurfactant production by Bacillus subtilis. Waste Biomass
Valoriz 9:613–618
de Lima JCB, Ribeiro EJ, Servulo EFC, Resende MM, Cardoso VL (2009) Biosurfactant production by Pseudomonas aeruginosa grown in residual soybean oil. Appl Biochem Biotechnol
152:156–168
Dhanarajan G, Rangarajan V, Bandi C, Dixit A, Das S, Ale K, Sen R (2017) Biosurfactantbiopolymer driven microbial enhanced oil recovery (MEOR) and its optimization by an
ANN-GA hybrid technique. J Biotechnol 256:46–56
Díaz de Rienzo MA, Stevenson P, Marchant R, Banat IM (2016) Antibacterial properties of
biosurfactants against selected Gram-positive and negative bacteria. FEMS Microbiol Lett
363:fnv224. https://doi.org/10.1093/femsle/fnv224
Drenckhan W, Hutzler S (2015) Structure and energy of liquid foams. Adv Colloid Interf Sci
224:1–16. https://doi.org/10.1016/j.cis.2015.05.004
Elazzazy AM, Abdelmoneim TS, Almaghrabi OA (2015) Isolation and characterization of
biosurfactant production under extreme environmental conditions by alkali-halo-thermophilic
bacteria from Saudi Arabia. Saudi J Biol Sci 22(4):466–475
El-Sheshtawya HS, Aiada I, Osman ME, Abo-ELnasrb A, Kobisya AS (2016) Production of
biosurfactants by Bacillus licheniformis and Candida albicans for application in microbial
enhanced oil recovery. Egypt J Pet 25:293–298
Eswari JS, Anand M, Venkateswarlu C (2016) Optimum culture medium composition for
lipopeptide production by Bacillus subtilis using response surface model-based ant colony
optimization. Sadhana 41:55–65
22
K. Mulugeta et al.
