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biodispersan in grinding limestone and making paper.
J Dispers Sci Technol 10:241-250
Ryan KJ, Ray CG (2004) Sherris medical microbiology, 4th
edn. McGraw-Hill, New York. ISBN 08385-8529-9.
Medical publishing division, New York, USA
Saimmai A, Udomsilp S, Maneerat S (2013) Production
and characterization of biosurfactant from marine
bacterium Inquilinus limosus KB3 grown on low-cost
raw materials. Ann Microbiol 63:1327-1339
Seidel M, Alderwick LJ, Sahm H, Besra GS, Eggeling L
(2007) Topology and mutational analysis of the single
Emb arabinofuranosyltransferase of Corynebacterium
glutamicum as a model of Emb proteins of
Mycobacterium tuberculosis . Glycobiology 17:210-219
Sierra G (1960) Hemolytic effect of a glycolipid produced
by
Tahmourespour A, Salehi R, Kermanshahi RK (2011)
Lactobacillus acidophilus -derived biosurfactant effect
on gtfB and gtfC expression level in Streptococcus
mutans biofi lm cells. Braz J Microbiol 42:330-339
Tavares LFD, Silva PM, Junqueira M, Mariano DCO,
Nogueira FCS, Domont GB, Freire DMG, Neves
BC (2013) Characterization of rhamnolipids
produced by wild-type and engineered Burkholderia
kururiensis .
Appl
Microbiol
Biotechnol
97:1909-1921
Taylor JR, Mitchell D (2007) The wonder of probiotics. St
Martin's Press, New York
Thavasi R, Jayalakshmi S, Balasubramanian T, Banat IM
(2007) Biosurfactant production by Corynebacterium
kutscheri from waste motor lubricant oil and peanut
oil cake. Lett Appl Microbiol 45:686-691
Thavasi R, Jayalakshmi S, Banat IM (2011a) Application
of biosurfactant produced from peanut oil cake by
Lactobacillus delbrueckii in biodegradation of crude
oil. Bioresour Technol 102:3366-3372
Thavasi R, Subramanyam Nambaru VRM, Jayalakshmi S,
Balasubramanian T, Banat IM (2011b) Biosurfactant
production by Pseudomonas aeruginosa from renew-
able resources. Indian J Microbiol 51:30-36
Toribio J, Escalante AE, Soberón-Chávez G (2010)
Rhamnolipids: production in bacteria other than
Pseudomonas aeruginosa . Eur J Lipid Sci Technol
112:1082-1087
Tuleva BK, Ivanov GR, Christova NE (2002) Biosurfactant
production by a new Pseudomonas putida strain. Z
Naturforsch C 57:356-360
Tümmler B, Koopmann U, Grothues D, Weissbrodt H,
Steinkamp G, von der Hardt H (1991) Nosocomial
acquisition of Pseudomonas aeruginosa by cystic
fi brosis patients. J Clin Microbiol 29:1265-1267
Urakami T, Ito-Yoshida C, Araki H, Kijima T, Suzuki K-I,
Komagata K (1994) Transfer of Pseudomonas planta-
rii and Pseudomonas glumae to Burkholderia as
Burkholderia spp. and description of Burkholderia
vandii sp. nov. Int J Syst Evol Bacteriol 44:235-245
US Department of Health and Human Services (1986)
NIH guidelines for research involving recombinant
DNA molecules; Notice 51 FR 16958
US Environmental Protection agency (1997) Bacillus
licheniformis fi nal risk assessment. http://epagov/bio-
tech_rule/pubs/fra/fra005htm
Van Bogaert INA, Saerens K, De Muynck C, Develter D,
Soetaert W, Vandamme EJ (2007) Microbial produc-
tion and application of sophorolipids. Appl Microbiol
Biotechnol 76:23-34
van der Geize R, Dijkhuizen L (2004) Harnessing the
catabolic diversity of Rhodococci for environmental
and biotechnological applications. Curr Opin
Microbiol 7:255-261
Vasileva-Tonkova E, Gesheva V (2007) Biosurfactant pro-
duction by Antarctic facultative anaerobe Pantoea sp.
during growth on hydrocarbons. Curr Microbiol
54:136-141
Vasileva-Tonkova E, Galabova D, Stoimenova E,
Lalchev Z (2006) Production and properties of
Pseudomonas
aeruginosa .
Antonie
Van
Leeuwenhoek 26:189-192
Silvi S, Barghini P, Aquilanti A, Juarez-Jimenez B, Fenice
M (2013) Physiologic and metabolic characterization
of a new marine isolate (BM 39) of Pantoea sp. pro-
ducing high levels of exopolysaccharides. Microb Cell
Fact 12:10
Simmons DG, Davis DE, Rose LP, Gray JG, Luginbuhl
GH (1981) Alcaligenes faecalis - associated respira-
tory disease of chickens. Avian Dis 25:610-613
Smith MD, Angus BJ, Wuthiekanun V, White NJ (1997)
Arabinose assimilation defi nes a non-virulent bio-
type of Burkholderia pseudomallei . Infect Immun
65:4319-4321
Soberón-Chávez G, Lépine F, Déziel E (2005) Production
of rhamnolipids by Pseudomonas aeruginosa . Appl
Microbiol Biotechnol 68:718-725
St Denis M, Ramotar K, Vandemheen K, Tullis E, Ferris
W, Chan F, Lee C, Slinger R, Aaron SD (2007)
Infection with Burkholderia cepacia complex bacteria
and pulmonary exacerbation of cystic fi brosis. Chest
131:1188-1196
Stevens DA, Hamilton JR, Johnson N, Kim KK, Lee J-S
(2009) Halomonas , a newly recognized human patho-
gen causing infections and contamination in a dialysis
center: three new species. Medicine 88:244-249
Stoimenova E, Vasileva-Tonkova E, Sotirova A, Galabova
D, Lalchev Z (2009) Evaluation of different carbon
sources for growth and biosurfactant production by
Pseudomonas fl uorescens isolated from wastewaters.
Z Naturforsh C 64:96-102
Stover CK, Pham XQ, Erwim AL, Mizoguchi SD,
Warrener P, Hickey MJ, Brinkman FSL, Hufnagle
WO, Kowalik DJ, Lagrou M, Garber RL, Goltry L,
Tolentino E, Westbrock-Wadman S, Yuan Y, Brody
LL, Coulter SN, Folger KR, Kas A, Larbig K, Lim R,
Smith K, Spencer D, Wong GK-S, Wu Z, Paulsen IT,
Reizer J, Saier MH, Hancock REW, Lory S, Olson MV
(2000) Complete genome sequence of Pseudomonas
aeruginosa PAO1, an opportunistic pathogen. Nature
406:959-964
Stutts MJ, Schwab JH, Chen MG, Knowles MR, Boucher
RC (1986) Effects of Pseudomonas aeruginosa on
bronchial epithelial ion transport. Am Rev Respir Dis
134:17-21
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