94. Kumar CG, Joo H-S, Choi J-W, Koo Y-M, Chang C-S (2004) Purification and characterization
of an extracellular polysaccharide from haloalkaliphilic Bacillus sp. I-450. Enzym Microb
Technol 34(7):673–681. https://doi.org/10.1016/j.enzmictec.2004.03.001
95. Aktuganov G, Jokela J, Kivelä H, Khalikova E, Melentjev A, Galimsianova N, Kuzmina L,
Kouvonen P, Himanen J-P, Susi P, Korpela T (2014) Isolation and identification of cyclic
lipopeptides from Paenibacillus ehimensis strain IB-X-b. J Chromatogr B 973:9–16
96. Watve MG, Tickoo R, Jog MM, Bhole BD (2001) How many antibiotics are produced by the
genus Streptomyces? Arch Microbiol 176:386–390
97. Sarker AK, Haque MA, Saha U, Rahman MA, Islam MAU (2015) Evaluation of antibacterial,
antifungal and cytotoxic potentials of crude metabolite of ANAM-39, a marine bacterium
isolated from Sundarbans, Bangladesh. Bangladesh Pharm J 18:103–109. https://doi.org/10.
3329/bpj.v18i2.24306
98. Borgave SB, Joshi AA, Kelkar AS, Kanekar PP (2012) Screening of alkaliphilic,
haloalkaliphilic and alkalithermophilic actinomycetes isolated from alkaline soda lake of
Lonar, India for antimicrobial activity. Int J Pharm Bio Sci 3(4):258–274
99. Shinde VA, Patil RB, Pawar PV (2017) Comparative study of antimicrobial potentials of
phospholipid compound produced by halophilic and alkaliphiles Bacillus subtilis isolated
from alkaline meteorite crater Lonar lake, India. Int J Life Sci 5(3):420–424
100. Tambekar DH, Dhundale VR (2013) Screening of antimicrobial potentials of haloalkaliphilic
bacteria isolated from Lonar lake. Int J Pharm Chem Biol Sci 3(3):820–825. www.ijpcbs.com
101. Jenifer JA, Donio MBS, Viji VT, Velmurugan S, Babu MM, Albin Dhas S, Citarasu T (2013)
Halo-alkaliphilic actinomycetes from solar salt works in India: diversity and microbial activity.
Blue Biotechnol J 2(1):137–151
102. Thumar J, Pethani B, Vasoya A (2010) Desert actinomycetes as the potential source of new
generation of antimicrobial agents: extraction and partial characterization. Int J Sci Comput
6(2):144–147
103. Thumar JT, Dhulia K, Singh SP (2010) Isolation and partial purification of an antimicrobial
agent from halotolerant alkaliphilic Streptomyces aburaviensis strain Kut-8. World J
Microbiol Biotechnol 26:2081–2087
104. Kishor PB, Padalia U (2015) In-vitro antimicrobial activity of fungi from extreme environment. Int J Life Sci A5:92–94. http://www.ijlsci.in
105. Kishor BP, Padalia U (2018) In-vitro antibacterial property of metabolites of alkaliphilic
isolates against methicillin resistant S. Aureus (MRSA). IJSART 4(2):127–131. www.ijsart.
com
106. Roth E, Schwenninger SM, Eugster-Meier E, Lacroix C (2011) Facultative anaerobic halophilic and alkaliphilic bacteria isolated from a natural smear ecosystem inhibit Listeria growth
in early ripening stages. Int J Food Microbiol 147(1):26–32. https://doi.org/10.1016/j.
ijfoodmicro.2011.02.032
107. Vasavada SH, Thumar JT, Singh SP (2006) Secretion of a potent antibiotic by salt-tolerant and
alkaliphilic actinomycete Streptomyces sannanensis strain RJT-1. Curr Sci 91:1393–1397
108. Singh LS, Mazumder S, Bora TC (2009) Optimisation of process parameters for growth and
bioactive metabolite produced by a salt-tolerant and alkaliphilic actinomycete, Streptomyces
tanashiensis strain A2D. J Mycol Med 19:225–233. https://doi.org/10.1016/j.mycmed.2009.
07.006
109. Kumar V, Gusain O, Thakur RL, Bisht GS (2013) Isolation, purification and partial characterization of an antibacterial agent produced by halotolerant alkaliphilic Streptomyces
sp. EWC 7(2). Proc Natl Acad Sci India Sect B Biol Sci 83:199–206. https://doi.org/10.
1007/s40011-012-0117-y
110. Jenifer JA, Donio MBS, Michaelbabu M, Vincent SGP, Citarasu T (2015) Haloalkaliphilic
Streptomyces spp. AJ8 isolated from solar salt works and its’ pharmacological potential. AMB
Expr 5:59–68. https://doi.org/10.1186/s13568-015-0143-2
111. Deshmukh DV, Puranik PR (2010) Application of Plackett-Burman design to evaluate media
components affecting antibacterial activity of alkaliphilic cyanobacteria isolated from Lonar
Lake. Turk J Biochem 35(2):114–120
192
E. Khalikova et al.
of an extracellular polysaccharide from haloalkaliphilic Bacillus sp. I-450. Enzym Microb
Technol 34(7):673–681. https://doi.org/10.1016/j.enzmictec.2004.03.001
95. Aktuganov G, Jokela J, Kivelä H, Khalikova E, Melentjev A, Galimsianova N, Kuzmina L,
Kouvonen P, Himanen J-P, Susi P, Korpela T (2014) Isolation and identification of cyclic
lipopeptides from Paenibacillus ehimensis strain IB-X-b. J Chromatogr B 973:9–16
96. Watve MG, Tickoo R, Jog MM, Bhole BD (2001) How many antibiotics are produced by the
genus Streptomyces? Arch Microbiol 176:386–390
97. Sarker AK, Haque MA, Saha U, Rahman MA, Islam MAU (2015) Evaluation of antibacterial,
antifungal and cytotoxic potentials of crude metabolite of ANAM-39, a marine bacterium
isolated from Sundarbans, Bangladesh. Bangladesh Pharm J 18:103–109. https://doi.org/10.
3329/bpj.v18i2.24306
98. Borgave SB, Joshi AA, Kelkar AS, Kanekar PP (2012) Screening of alkaliphilic,
haloalkaliphilic and alkalithermophilic actinomycetes isolated from alkaline soda lake of
Lonar, India for antimicrobial activity. Int J Pharm Bio Sci 3(4):258–274
99. Shinde VA, Patil RB, Pawar PV (2017) Comparative study of antimicrobial potentials of
phospholipid compound produced by halophilic and alkaliphiles Bacillus subtilis isolated
from alkaline meteorite crater Lonar lake, India. Int J Life Sci 5(3):420–424
100. Tambekar DH, Dhundale VR (2013) Screening of antimicrobial potentials of haloalkaliphilic
bacteria isolated from Lonar lake. Int J Pharm Chem Biol Sci 3(3):820–825. www.ijpcbs.com
101. Jenifer JA, Donio MBS, Viji VT, Velmurugan S, Babu MM, Albin Dhas S, Citarasu T (2013)
Halo-alkaliphilic actinomycetes from solar salt works in India: diversity and microbial activity.
Blue Biotechnol J 2(1):137–151
102. Thumar J, Pethani B, Vasoya A (2010) Desert actinomycetes as the potential source of new
generation of antimicrobial agents: extraction and partial characterization. Int J Sci Comput
6(2):144–147
103. Thumar JT, Dhulia K, Singh SP (2010) Isolation and partial purification of an antimicrobial
agent from halotolerant alkaliphilic Streptomyces aburaviensis strain Kut-8. World J
Microbiol Biotechnol 26:2081–2087
104. Kishor PB, Padalia U (2015) In-vitro antimicrobial activity of fungi from extreme environment. Int J Life Sci A5:92–94. http://www.ijlsci.in
105. Kishor BP, Padalia U (2018) In-vitro antibacterial property of metabolites of alkaliphilic
isolates against methicillin resistant S. Aureus (MRSA). IJSART 4(2):127–131. www.ijsart.
com
106. Roth E, Schwenninger SM, Eugster-Meier E, Lacroix C (2011) Facultative anaerobic halophilic and alkaliphilic bacteria isolated from a natural smear ecosystem inhibit Listeria growth
in early ripening stages. Int J Food Microbiol 147(1):26–32. https://doi.org/10.1016/j.
ijfoodmicro.2011.02.032
107. Vasavada SH, Thumar JT, Singh SP (2006) Secretion of a potent antibiotic by salt-tolerant and
alkaliphilic actinomycete Streptomyces sannanensis strain RJT-1. Curr Sci 91:1393–1397
108. Singh LS, Mazumder S, Bora TC (2009) Optimisation of process parameters for growth and
bioactive metabolite produced by a salt-tolerant and alkaliphilic actinomycete, Streptomyces
tanashiensis strain A2D. J Mycol Med 19:225–233. https://doi.org/10.1016/j.mycmed.2009.
07.006
109. Kumar V, Gusain O, Thakur RL, Bisht GS (2013) Isolation, purification and partial characterization of an antibacterial agent produced by halotolerant alkaliphilic Streptomyces
sp. EWC 7(2). Proc Natl Acad Sci India Sect B Biol Sci 83:199–206. https://doi.org/10.
1007/s40011-012-0117-y
110. Jenifer JA, Donio MBS, Michaelbabu M, Vincent SGP, Citarasu T (2015) Haloalkaliphilic
Streptomyces spp. AJ8 isolated from solar salt works and its’ pharmacological potential. AMB
Expr 5:59–68. https://doi.org/10.1186/s13568-015-0143-2
111. Deshmukh DV, Puranik PR (2010) Application of Plackett-Burman design to evaluate media
components affecting antibacterial activity of alkaliphilic cyanobacteria isolated from Lonar
Lake. Turk J Biochem 35(2):114–120
192
E. Khalikova et al.
