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Alkaliphilic bacterial diversity of Lake Van/Turkey

Year 2017, Volume: 10 Issue: 1, 92 - 103, 15.04.2017

Abstract

Lake Van, situated in Turkey's eastern Anatolian region, is a saline soda lake and it covers the lowest part of a vast basin. The importance of Lake Van comes from being one of the largest soda lakes and third largest endorheic lake on Earth with a volume of 607 km3. Although several biological studies have been done for Lake Van, research on microbial diversity of the lake is still missing. This paper contributes to scientific knowledge by research on alkaliphilic bacterial diversity of Lake Van. In this regard, culture-dependent and culture-independent methods were applied to the samples, which were taken from different locations close to the shores of surrounding cities. Isolation was performed on 10 different media. Bacterial diversity was analyzed by 16S rRNA gene PCR amplification, sequencing and blast analysis against NCBI database. Results showed that members of Proteobacteria especially Gammaproteobacteria and Actinobacteria phylums were represented dominantly. Culture-independent DGGE Denaturing Gradient Gel Electrophoresis and FISH Fluorescence In-Situ Hybridization methods were also used to detect the microbial populations in Lake Van. The results showed that the community was dominated by Bacteria

References

  • Altschul, S. F., Gish, W., Miller, W., Myers, E. W., Lipman, D. J. (1990). Basic local alignment search tool. Journal of molecular biology, 215 (3), 403-410.
  • Amann, R. I., Binder, B. J., Olson, R. J., Chisholm, S. W., Devereux, R., Stahl, D. A. (1990). Combination of 16S rRNA-targeted oligonucleotide probes with flow cytometry for analyzing mixed microbial populations. Applied and environmental microbiology, 56 (6), 1919-1925.
  • Antón, J., Llobet‐Brossa, E., Rodríguez‐Valera, F., Amann, R. (1999). Fluorescence in situ hybridization analysis of the prokaryotic community inhabiting crystallizer ponds. Environmental Microbiology, 1 (6), 517-523.
  • Antony, C. P., Murrell, J. C., Shouche, Y. S. (2012). Molecular diversity of methanogens and identification of Methanolobus sp. as active methylotrophic Archaea in Lonar crater lake sediments. FEMS microbiology ecology, 81 (1), 43-51.
  • Bell, K. S., Philp, J. C., Aw, D. W. J., Christofi, N. (1998). The genus Rhodococcus. Journal of Applied Microbiology, (2), 195-210.
  • Berber, İ. and Yenidünya, E. (2005). Identification of alkaliphilic Bacillus species isolated from Lake Van and its surroundings by computerized analysis of extracellular protein profiles. Turkish Journal of Biology, (3), 181-188.
  • Bilgili, A., Sağmanlıgil, H., Çetinkaya, N., Yarsan, E., Türel, İ. (1995). Van gölü suyunun doğal kalitesi ve buradan avlanan İnci kefali (Calcalburnus tarichii, Pallas 1811) örrneklerinde bazı ağır metal düzeyleri. A Ü Vet Fak Derg, 42.
  • Çiftçi, Y., Isik, M. A., Alkevli, T., Yeşilova, Ç. (2008). Van Gölü Havzasının Çevre Jeolojisi. Jeoloji Mühendisliği Dergisi, 32 (2), 45-77.
  • Cifuentes, A., Antón, J., Benlloch, S., Donnelly, A., Herbert, R. A., Rodríguez-Valera, F. (2000). Prokaryotic diversity in Zostera noltii-colonized marine sediments. Applied and environmental microbiology, 66 (4), 1715-1719.
  • Cukur, D., Krastel, S., Schmincke, H. U., Sumita, M., Çağatay, M. N., Meydan, A. F., Damcı E., Stockhecke, M. (2014). Seismic stratigraphy of lake Van, eastern Turkey. Quaternary Science Reviews, 104, 63-84.
  • Danulat, E. and Kempe, S. (1992). Nitrogenous waste excretion and accumulation of urea and ammonia in Chalcalburnus tarichi (Cyprinidae), endemic to the extremely alkaline Lake Van (Eastern Turkey). Fish physiology and biochemistry, 9 (5-6), 377-386.
  • Dereeper, A., Audic, S., Claverie, J. M., Blanc, G. (2010). BLAST-EXPLORER helps you building datasets for phylogenetic analysis. BMC evolutionary biology, 10 (1), 8.
  • Dereeper, A., Guignon, V., Blanc, G., Audic, S., Buffet, S., Chevenet, F., Dufayard, J.F., Guindon, S., Lefort, V., Lescot, M., Claverie, J. M., Gascuel, O. (2008). Phylogeny. fr: robust phylogenetic analysis for the non-specialist. Nucleic acids research, 36 (suppl 2), W465-W469.
  • Deshmukh, K. B., Pathak, A. P., Karuppayil, M. S. (2011). Bacterial diversity of Lonar soda lake of India. Indian journal of Microbiology, 51 (1), 107-111.
  • Duckworth, A. W., Grant, W. D., Jones, B. E., Van Steenbergen, R. (1996). Phylogenetic diversity of soda lake alkaliphiles. FEMS Microbiology Ecology, 19 (3), 181-191.
  • Dyall-Smith, M. (2009). The Halohandbook: Protocols for Halobacterial Genetics. URL http://www. haloarchaea. com/resources/halohandbook/Halohandbook_2009_v7, 1.
  • Foti, M. J., Sorokin, D. Y., Zacharova, E. E., Pimenov, N. V., Kuenen, J. G., Muyzer, G. (2008). Bacterial diversity and activity along a salinity gradient in soda lakes of the Kulunda Steppe (Altai, Russia). Extremophiles, 12 (1), 133- 145.
  • Freyhof, J. (2014). Alburnus tarichi. The IUCN Red List of Threatened Species 2014: e.T4375A19222678. http://dx.doi.org/10.2305/IUCN.UK.2014-1.RLTS.T4375A19222678.en. Downloaded on 18 January 2016.
  • Horikoshi, K. (2008). Alkaliphiles. New York, NY, USA:John Wiley & Sons, Ltd.
  • İlçim, A., Özçelik, H., Çenet, M. (2013). A new natural hybrid of Cousinia Cass.(Asteraceae) from Türkiye. Biological Diversity and Conservation, 6 (1), 71-75.
  • Jan-Roblero, J., Magos, X., Fernández, L., Hernández-Rodríguez, C., Le Borgne, S. (2004). Phylogenetic analysis of bacterial populations in waters of the former Texcoco Lake, Mexico. Canadian journal of microbiology, 50 (12), 1049-1059.
  • Jones, B. E., Grant, W. D., Duckworth, A. W., Owenson, G. G. (1998). Microbial diversity of soda lakes. Extremophiles, 2 (3), 191-200.
  • Kadioğlu, M., Şen, Z., Batur, E. (1997). The greatest soda-water lake in the world and how it is influenced by climatic change. In Annales Geophysicae (Vol. 15, No. 11, pp. 1489-1497). Springer-Verlag.
  • Kanekar, P. P., Nilegaonkar, S. S., Sarnaik, S. S., Kelkar, A. S. (2002). Optimization of protease activity of alkaliphilic bacteria isolated from an alkaline lake in India. Bioresource Technology, 85 (1), 87-93.
  • Lane, D. J., Pace, B., Olsen, G. J., Stahl, D. A., Sogin, M. L., Pace, N. R. (1985). Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses. Proceedings of the National Academy of Sciences, 82 (20), 6955-6959.
  • López-García, P., Kazmierczak, J., Benzerara, K., Kempe, S., Guyot, F., Moreira, D. (2005). Bacterial diversity and carbonate precipitation in the giant microbialites from the highly alkaline Lake Van, Turkey. Extremophiles, 9 (4), 263-274.
  • Matyugina, E. and Belkova, N. (2015). Distribution and diversity of microbial communities in meromictic soda Lake Doroninskoe (Transbaikalia, Russia) during winter. Chinese Journal of Oceanology and Limnology, 33 (6), 1378.
  • Mutlu, M. B., Martínez-García, M., Santos, F., Peña, A., Guven, K., Antón, J. (2008). Prokaryotic diversity in Tuz Lake, a hypersaline environment in Inland Turkey. FEMS microbiology ecology, 65 (3), 474-483.
  • Muyzer, G., De Waal, E. C., Uitterlinden, A. G. (1993). Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA. Applied and environmental microbiology, 59 (3), 695-700.
  • Mwirichia, R., Cousin, S., Muigai, A. W., Boga, H. I., Stackebrandt, E. (2011). Bacterial diversity in the haloalkaline Lake Elmenteita, Kenya. Current microbiology, 62 (1), 209-221.
  • Nayar, N., Shukla, I., Sultan, A. (2014). Epidemiology, prevalence and identification of Citrobacter species in clinical specimens in a tertiary care hospital in India. International Journal of Scientific and Research Publications, 4 (4), 1- 6.
  • Nogales, B., Moore, E. R., Abraham, W. R., Timmis, K. N. (1999). Identification of the metabolically active members of a bacterial community in a polychlorinated biphenyl‐polluted moorland soil. Environmental microbiology, 1 (3), 199-212.
  • Öztürk, B., Balkis, N., Güven, K. C., Aksu, A., Görgün, M., Hanilci, N. (2005). Investigations on the Sediment of Lake VAN II. Heavy metals, sulfur, hydrogen sulfide and Thiosulfuric acid S-(2-amino ethyl ester) contents. Journal of Black Sea/Mediterranean Environment, 11 (1), 125- 138.
  • Rees, H. C., Grant, W. D., Jones, B. E., Heaphy, S. (2004). Diversity of Kenyan soda lake alkaliphiles assessed by molecular methods. Extremophiles, 8 (1), 63-71.
  • Reimer, A., Landmann, G., Kempe, S. (2009). Lake Van, eastern Anatolia, hydrochemistry and history. Aquatic Geochemistry, 15 (1-2), 195-222.
  • Ronoh, R. C., Budambula, N. L., Mwirichia, R. K., Boga, H. I. (2013). Isolation and characterization of actinobacteria from Lake Magadi, Kenya. African Journal of Microbiology Research, 7 (32), 4200-4206.
  • Sarı, M. (2008). Integrated Sustainable Fisheries Management for Pearl Mullet of Lake Van, Turkey. Environmental Technologies, 177.
  • Selyanin, V. V., Oborotov, G. E., Zenova, G. M., Zvyagintsev, D. G. (2005). Alkaliphilic soil actinomycetes. Microbiology, 74 (6), 729-734.
  • Simachew, A., Lanzén, A., Gessesse, A., Øvreås, L. (2016). Prokaryotic community diversity along an increasing salt gradient in a soda ash concentration pond. Microbial ecology, 71 (2), 326-338.
  • Snaidr, J., Amann, R., Huber, I., Ludwig, W., Schleifer, K. H. (1997). Phylogenetic analysis and in situ identification of bacteria in activated sludge. Applied and Environmental Microbiology, 63 (7), 2884-2896.
  • Sorokin, D. Y., Berben, T., Melton, E. D., Overmars, L., Vavourakis, C. D., Muyzer, G. (2014). Microbial diversity and biogeochemical cycling in soda lakes. Extremophiles, 18 (5), 791-809.
  • Sorokin, D. Y. and Kuenen, J. G. (2005). Haloalkaliphilic sulfur-oxidizing bacteria in soda lakes. FEMS microbiology reviews, 29 (4), 685-702.
  • Sorokin, D. Y., Tourova, T. P., Panteleeva, A. N., Muyzer, G. (2012). Desulfonatronobacter acidivorans gen. nov., sp. nov. and Desulfobulbus alkaliphilus sp. nov., haloalkaliphilic heterotrophic sulfate-reducing bacteria from soda lakes. International journal of systematic and evolutionary microbiology, 62 (9), 2107-2113.
  • Tourova, T. P., Grechnikova, M. A., Kuznetsov, B. B., Sorokin, D. Y. (2014). Phylogenetic diversity of bacteria in soda lake stratified sediments. Microbiology, 83 (6), 869-879.
  • Vaneechoutte, M., Rossau, R., De Vos, P., Gillis, M., Janssens, D., Paepe, N., De Ruck, A., Fiers, T., Claeys, G., Kersters, K. (1992). Rapid identification of bacteria of the Comamonadaceae with amplified ribosomal DNA- restriction analysis (ARDRA). FEMS Microbiology Letters, 93 (3), 227-233.
  • Wagner, M., Horn, M., Daims, H. (2003). Fluorescence in situ hybridisation for the identification and characterisation of prokaryotes. Current opinion in microbiology, 6 (3), 302-309.
  • Yılmaz, A.B. and Aslan, L. (2014). Chewing Lice (Phthiraptera: Amblycera, Ischnocera) on Several Species of Wild Birds around the Lake Van Basin, Van, Eastern Turkey. Kafkas Universitesi Veteriner Fakultesi Dergisi, 21 (3), 333-338, 2015.

Van Gölü’nün alkalifilik bakteriyel çeşitliliği

Year 2017, Volume: 10 Issue: 1, 92 - 103, 15.04.2017

Abstract

Van Gölü Türkiye Doğu Anadolu Bölgesi’nde yer alan, büyük bir havzanın alçak kısmını kaplayan tuzlu bir soda gölüdür. Van Gölü’nün önemi Dünya’nın en büyük soda göllerinden bir olmasından ve 607 km3’lük hacmi ile Dünya’nın en büyük 3. kapalı havza gölü olmasından kaynaklanmaktadır. Van Gölü ile ilgili bazı biyolojik çalışmalar yapılmasına rağmen mikrobiyal çeşitliliği üzerine araştırmalar yeterli değildir. Bu yüzden bu çalışma Van Gölü'ndeki alkalifilik bakteri çeşitliliği üzerine yapılan araştırmalara bilimsel katkılar sağlamaktadır. Bu amaçla, gölün çevresindeki şehirlerin kıyılara yakın, farklı noktalardan alınan su örneklerine kültür bağımlı ve kültürden bağımsız yöntemler uygulanmıştır. Kültür çalışmaları için 10 farklı besi yeri kullanılmıştır. Bakteriyel çeşitlilik, 16 S rRNA geninin PCR ile çoğaltılması, dizileme ve NCBI veri tabanı kullanılarak incelenmiştir. Sonuçlar, Proteobacteria özellikle Gammaproteobacteria ve Actinobacteria filumlarının baskın bir şekilde bulunduğunu göstermiştir. Mikrobiyal populasyonları belirlemek için kültür bağımsız yöntemler olan DGGE Denatüre Edici Gradiyent Jel Elektroforezi ve FISH Fluoresan In Situ Hibridizasyon kullanılmıştır. Sonuçlar kommunitede bakterilerin yoğun olduğunu göstermiştir

References

  • Altschul, S. F., Gish, W., Miller, W., Myers, E. W., Lipman, D. J. (1990). Basic local alignment search tool. Journal of molecular biology, 215 (3), 403-410.
  • Amann, R. I., Binder, B. J., Olson, R. J., Chisholm, S. W., Devereux, R., Stahl, D. A. (1990). Combination of 16S rRNA-targeted oligonucleotide probes with flow cytometry for analyzing mixed microbial populations. Applied and environmental microbiology, 56 (6), 1919-1925.
  • Antón, J., Llobet‐Brossa, E., Rodríguez‐Valera, F., Amann, R. (1999). Fluorescence in situ hybridization analysis of the prokaryotic community inhabiting crystallizer ponds. Environmental Microbiology, 1 (6), 517-523.
  • Antony, C. P., Murrell, J. C., Shouche, Y. S. (2012). Molecular diversity of methanogens and identification of Methanolobus sp. as active methylotrophic Archaea in Lonar crater lake sediments. FEMS microbiology ecology, 81 (1), 43-51.
  • Bell, K. S., Philp, J. C., Aw, D. W. J., Christofi, N. (1998). The genus Rhodococcus. Journal of Applied Microbiology, (2), 195-210.
  • Berber, İ. and Yenidünya, E. (2005). Identification of alkaliphilic Bacillus species isolated from Lake Van and its surroundings by computerized analysis of extracellular protein profiles. Turkish Journal of Biology, (3), 181-188.
  • Bilgili, A., Sağmanlıgil, H., Çetinkaya, N., Yarsan, E., Türel, İ. (1995). Van gölü suyunun doğal kalitesi ve buradan avlanan İnci kefali (Calcalburnus tarichii, Pallas 1811) örrneklerinde bazı ağır metal düzeyleri. A Ü Vet Fak Derg, 42.
  • Çiftçi, Y., Isik, M. A., Alkevli, T., Yeşilova, Ç. (2008). Van Gölü Havzasının Çevre Jeolojisi. Jeoloji Mühendisliği Dergisi, 32 (2), 45-77.
  • Cifuentes, A., Antón, J., Benlloch, S., Donnelly, A., Herbert, R. A., Rodríguez-Valera, F. (2000). Prokaryotic diversity in Zostera noltii-colonized marine sediments. Applied and environmental microbiology, 66 (4), 1715-1719.
  • Cukur, D., Krastel, S., Schmincke, H. U., Sumita, M., Çağatay, M. N., Meydan, A. F., Damcı E., Stockhecke, M. (2014). Seismic stratigraphy of lake Van, eastern Turkey. Quaternary Science Reviews, 104, 63-84.
  • Danulat, E. and Kempe, S. (1992). Nitrogenous waste excretion and accumulation of urea and ammonia in Chalcalburnus tarichi (Cyprinidae), endemic to the extremely alkaline Lake Van (Eastern Turkey). Fish physiology and biochemistry, 9 (5-6), 377-386.
  • Dereeper, A., Audic, S., Claverie, J. M., Blanc, G. (2010). BLAST-EXPLORER helps you building datasets for phylogenetic analysis. BMC evolutionary biology, 10 (1), 8.
  • Dereeper, A., Guignon, V., Blanc, G., Audic, S., Buffet, S., Chevenet, F., Dufayard, J.F., Guindon, S., Lefort, V., Lescot, M., Claverie, J. M., Gascuel, O. (2008). Phylogeny. fr: robust phylogenetic analysis for the non-specialist. Nucleic acids research, 36 (suppl 2), W465-W469.
  • Deshmukh, K. B., Pathak, A. P., Karuppayil, M. S. (2011). Bacterial diversity of Lonar soda lake of India. Indian journal of Microbiology, 51 (1), 107-111.
  • Duckworth, A. W., Grant, W. D., Jones, B. E., Van Steenbergen, R. (1996). Phylogenetic diversity of soda lake alkaliphiles. FEMS Microbiology Ecology, 19 (3), 181-191.
  • Dyall-Smith, M. (2009). The Halohandbook: Protocols for Halobacterial Genetics. URL http://www. haloarchaea. com/resources/halohandbook/Halohandbook_2009_v7, 1.
  • Foti, M. J., Sorokin, D. Y., Zacharova, E. E., Pimenov, N. V., Kuenen, J. G., Muyzer, G. (2008). Bacterial diversity and activity along a salinity gradient in soda lakes of the Kulunda Steppe (Altai, Russia). Extremophiles, 12 (1), 133- 145.
  • Freyhof, J. (2014). Alburnus tarichi. The IUCN Red List of Threatened Species 2014: e.T4375A19222678. http://dx.doi.org/10.2305/IUCN.UK.2014-1.RLTS.T4375A19222678.en. Downloaded on 18 January 2016.
  • Horikoshi, K. (2008). Alkaliphiles. New York, NY, USA:John Wiley & Sons, Ltd.
  • İlçim, A., Özçelik, H., Çenet, M. (2013). A new natural hybrid of Cousinia Cass.(Asteraceae) from Türkiye. Biological Diversity and Conservation, 6 (1), 71-75.
  • Jan-Roblero, J., Magos, X., Fernández, L., Hernández-Rodríguez, C., Le Borgne, S. (2004). Phylogenetic analysis of bacterial populations in waters of the former Texcoco Lake, Mexico. Canadian journal of microbiology, 50 (12), 1049-1059.
  • Jones, B. E., Grant, W. D., Duckworth, A. W., Owenson, G. G. (1998). Microbial diversity of soda lakes. Extremophiles, 2 (3), 191-200.
  • Kadioğlu, M., Şen, Z., Batur, E. (1997). The greatest soda-water lake in the world and how it is influenced by climatic change. In Annales Geophysicae (Vol. 15, No. 11, pp. 1489-1497). Springer-Verlag.
  • Kanekar, P. P., Nilegaonkar, S. S., Sarnaik, S. S., Kelkar, A. S. (2002). Optimization of protease activity of alkaliphilic bacteria isolated from an alkaline lake in India. Bioresource Technology, 85 (1), 87-93.
  • Lane, D. J., Pace, B., Olsen, G. J., Stahl, D. A., Sogin, M. L., Pace, N. R. (1985). Rapid determination of 16S ribosomal RNA sequences for phylogenetic analyses. Proceedings of the National Academy of Sciences, 82 (20), 6955-6959.
  • López-García, P., Kazmierczak, J., Benzerara, K., Kempe, S., Guyot, F., Moreira, D. (2005). Bacterial diversity and carbonate precipitation in the giant microbialites from the highly alkaline Lake Van, Turkey. Extremophiles, 9 (4), 263-274.
  • Matyugina, E. and Belkova, N. (2015). Distribution and diversity of microbial communities in meromictic soda Lake Doroninskoe (Transbaikalia, Russia) during winter. Chinese Journal of Oceanology and Limnology, 33 (6), 1378.
  • Mutlu, M. B., Martínez-García, M., Santos, F., Peña, A., Guven, K., Antón, J. (2008). Prokaryotic diversity in Tuz Lake, a hypersaline environment in Inland Turkey. FEMS microbiology ecology, 65 (3), 474-483.
  • Muyzer, G., De Waal, E. C., Uitterlinden, A. G. (1993). Profiling of complex microbial populations by denaturing gradient gel electrophoresis analysis of polymerase chain reaction-amplified genes coding for 16S rRNA. Applied and environmental microbiology, 59 (3), 695-700.
  • Mwirichia, R., Cousin, S., Muigai, A. W., Boga, H. I., Stackebrandt, E. (2011). Bacterial diversity in the haloalkaline Lake Elmenteita, Kenya. Current microbiology, 62 (1), 209-221.
  • Nayar, N., Shukla, I., Sultan, A. (2014). Epidemiology, prevalence and identification of Citrobacter species in clinical specimens in a tertiary care hospital in India. International Journal of Scientific and Research Publications, 4 (4), 1- 6.
  • Nogales, B., Moore, E. R., Abraham, W. R., Timmis, K. N. (1999). Identification of the metabolically active members of a bacterial community in a polychlorinated biphenyl‐polluted moorland soil. Environmental microbiology, 1 (3), 199-212.
  • Öztürk, B., Balkis, N., Güven, K. C., Aksu, A., Görgün, M., Hanilci, N. (2005). Investigations on the Sediment of Lake VAN II. Heavy metals, sulfur, hydrogen sulfide and Thiosulfuric acid S-(2-amino ethyl ester) contents. Journal of Black Sea/Mediterranean Environment, 11 (1), 125- 138.
  • Rees, H. C., Grant, W. D., Jones, B. E., Heaphy, S. (2004). Diversity of Kenyan soda lake alkaliphiles assessed by molecular methods. Extremophiles, 8 (1), 63-71.
  • Reimer, A., Landmann, G., Kempe, S. (2009). Lake Van, eastern Anatolia, hydrochemistry and history. Aquatic Geochemistry, 15 (1-2), 195-222.
  • Ronoh, R. C., Budambula, N. L., Mwirichia, R. K., Boga, H. I. (2013). Isolation and characterization of actinobacteria from Lake Magadi, Kenya. African Journal of Microbiology Research, 7 (32), 4200-4206.
  • Sarı, M. (2008). Integrated Sustainable Fisheries Management for Pearl Mullet of Lake Van, Turkey. Environmental Technologies, 177.
  • Selyanin, V. V., Oborotov, G. E., Zenova, G. M., Zvyagintsev, D. G. (2005). Alkaliphilic soil actinomycetes. Microbiology, 74 (6), 729-734.
  • Simachew, A., Lanzén, A., Gessesse, A., Øvreås, L. (2016). Prokaryotic community diversity along an increasing salt gradient in a soda ash concentration pond. Microbial ecology, 71 (2), 326-338.
  • Snaidr, J., Amann, R., Huber, I., Ludwig, W., Schleifer, K. H. (1997). Phylogenetic analysis and in situ identification of bacteria in activated sludge. Applied and Environmental Microbiology, 63 (7), 2884-2896.
  • Sorokin, D. Y., Berben, T., Melton, E. D., Overmars, L., Vavourakis, C. D., Muyzer, G. (2014). Microbial diversity and biogeochemical cycling in soda lakes. Extremophiles, 18 (5), 791-809.
  • Sorokin, D. Y. and Kuenen, J. G. (2005). Haloalkaliphilic sulfur-oxidizing bacteria in soda lakes. FEMS microbiology reviews, 29 (4), 685-702.
  • Sorokin, D. Y., Tourova, T. P., Panteleeva, A. N., Muyzer, G. (2012). Desulfonatronobacter acidivorans gen. nov., sp. nov. and Desulfobulbus alkaliphilus sp. nov., haloalkaliphilic heterotrophic sulfate-reducing bacteria from soda lakes. International journal of systematic and evolutionary microbiology, 62 (9), 2107-2113.
  • Tourova, T. P., Grechnikova, M. A., Kuznetsov, B. B., Sorokin, D. Y. (2014). Phylogenetic diversity of bacteria in soda lake stratified sediments. Microbiology, 83 (6), 869-879.
  • Vaneechoutte, M., Rossau, R., De Vos, P., Gillis, M., Janssens, D., Paepe, N., De Ruck, A., Fiers, T., Claeys, G., Kersters, K. (1992). Rapid identification of bacteria of the Comamonadaceae with amplified ribosomal DNA- restriction analysis (ARDRA). FEMS Microbiology Letters, 93 (3), 227-233.
  • Wagner, M., Horn, M., Daims, H. (2003). Fluorescence in situ hybridisation for the identification and characterisation of prokaryotes. Current opinion in microbiology, 6 (3), 302-309.
  • Yılmaz, A.B. and Aslan, L. (2014). Chewing Lice (Phthiraptera: Amblycera, Ischnocera) on Several Species of Wild Birds around the Lake Van Basin, Van, Eastern Turkey. Kafkas Universitesi Veteriner Fakultesi Dergisi, 21 (3), 333-338, 2015.
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Details

Primary Language Turkish
Journal Section Research Article
Authors

Nilgün Poyraz This is me

Mehmet Burçin Mutlu This is me

Publication Date April 15, 2017
Published in Issue Year 2017 Volume: 10 Issue: 1

Cite

APA Poyraz, N., & Mutlu, M. B. (2017). Van Gölü’nün alkalifilik bakteriyel çeşitliliği. Biological Diversity and Conservation, 10(1), 92-103.

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❖  Correspondance Adres: Prof. Ersin YÜCEL, Sazova Mahallesi, Ziraat Caddesi, No.277 F Blok, 26005 Tepebaşı-Eskişehir/Türkiye
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Web Address: http://www.biodicon.com;   https://dergipark.org.tr/en/pub/biodicon
❖ Biological Diversity and Conservation/ Biyolojik Çeşitlilik ve Koruma
❖ ISSN 1308-5301 Print; ISSN 1308-8084 Online
❖ Start Date Published 2008
© Copyright by Biological Diversity and Conservation/Biyolojik Çeşitlilik ve Koruma-Available online at www.biodicon.com/All rights reserved
Publisher : ERSİN YÜCEL (https://www.ersinyucel.com.tr/)
❖ This journal is published three numbers in a year. Printed in Eskişehir/Türkiye.
❖ All sorts of responsibilities of the articles published in this journal are belonging to the authors
Editör / Editor-In-Chief : Prof.Dr. Ersin YÜCEL, https://orcid.org/0000-0001-8274-7578