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FREQUENCY OF DIVIDING CELLS AND GROWTH RATES IN POPULATION OF FILAMENTOUS CYANOBACTERIA ISOLATED FROM SULPHUROUS MESOTHERMAL SPRING OBANUL MARE (MANGALIA)

Sarchizian, . Iris, Ardelean, Ioan

First published: 2012-06-18https://doi.org/10.5593/sgem2012/s20.v5057View metrics

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Title
FREQUENCY OF DIVIDING CELLS AND GROWTH RATES IN POPULATION OF FILAMENTOUS CYANOBACTERIA ISOLATED FROM SULPHUROUS MESOTHERMAL SPRING OBANUL MARE (MANGALIA)
Authors
Sarchizian, . Iris, Ardelean, Ioan
Proceedings
SGEM International Multidisciplinary Scientific GeoConference EXPO Proceedings; SGEM2012 12th International Multidisciplinary Scientific GeoConference
Publisher
Stef92 Technology
Year
2012
Pages
423 - 430 pp
ISSN
1314-2704
ISBN
Not available yet
Language
en
Publication type
Conference Paper
References52
  1. PLoS ONE Bright field microscopy as an alternative to whole cell fluorescence in automated analysis of macrophage images. Aderem 9 2009

  2. Hydrobiologia Using frequency of dividing cells in estimating autotrophic picoplankton growth and productivity in the Chesapeake Bay Affronti 284 193 1994.

  3. Journal of Plankton Research Abundance, frequency of dividing cells and growth rates of Synechococcus sp. (cyanobacteria) in the stratified Northwest Mediterranean Sea Agawin 19 1599 1997

  4. Mar. Ecol. Prog. Ser. Diel patterns of cell division in marine Synechococcus spp. (Cyanobacteria): use of the frequency of dividing cells technique to measure growth rate. Campbell 32 139 1986

  5. Mar. Ecol. Prog. Ser. Diel patterns of cell division and growth rates of Synechococcus spp. in Long Island Sound. Carpenter 47 179 1988

  6. Deep-Sea Res. Estimating the carbon specific growth rate of the major algal species gTOups in eastern Indonesian waters by 14C labelling of taxon specific carotenoids. Gieskes 36 1127 1989

  7. Appl. Environ. Microbiol Frequency of dividing cells, a new approach to the determination of bacterial growth rates in aquatic environments. Hagstrom 37 805 1979

  8. Mar. EcoL Prog. Ser Temporal and spatial variability of chroococcoid cyanobacteria Synechococcus spp. Specific growth rates and their contribution to primary production in the Sargasso Sea. Ituriaga 44 175 1988

  9. Journal of Microbiology Simple method for a cell count of the colonial cyanobacterium , Microcystis sp. Joung 44 562 2006

  10. IEEE Transactions on Medical Imaging Computational framework for simulating fluorescence microscope images with cell populations. Lehmussola 1010 2007

  11. Journal of Phycology Relationship between the number of dividing and non dividing cells of cyanobacteria in North Atlantic picoplankton. Li 27 559 1991

  12. Mar. Ecol. Prog. Ser Ultraphytoplankton in the eastern Mediterranean Sea: towards deriving phytoplankton biomass from flow cytometric measurements of abundance, fluorescence and light scatter Li 79 1993

  13. Limnol. Oceanogr. The calculation of in situ growth rates of phytoplankton populations from fractions of cells undergoing mitosis: A clarification. McDuff 27 783 1982

  14. Appl. Environ. Microbiol. Christian R.R. Frequency of dividing cells as an estimator of bacterial productivity. Newell 42 23 1981

  15. Journal of Plankton Research Size-dependent growth rates in eukaryotic and prokaryotic algae exemplified by green algae and cyanobacteria: comparisons between unicells and colonial growth forms Nielsen 28 489 2006

  16. Microbiological Reviews Survival Strategies of Bacteria in the Natural Environment. Roszak 51 365 1987

  17. Romanian Journal of Biology- Plant Biology Axenic culture of a diazotrophic filamentous cyanobacterium isolated from mesothermal sulphurous springs (Obanul Mare - Mangalia). Sarchizian 55 47 2010

  18. Biotechniques Software for quantification of labeled bacteria from digital microscope images by automated image analysis. Selinummi 39 859 2005

  19. Can. J. Fish. Aquat. Sci. Algal picoplankton from marine and freshwater ecosystems: a multidisciplinary perspective. Stockner 43 2472 1986

  20. Freshwater Biol. Application of the frequency of dividing cells technique to estimate the in situ growth of Microcystis (Cyanobacteria). Tsujimura 48 2009 2003

  21. Annales de l’Institut Pasteur Microbiology Enumeration and size of planktonic bacteria determined by image analysis coupled with epifluorescence. Van Wambeke 139 261 1988

  22. Limnol. Oceanogr Estimate of phytoplankton division rates by the mitotic index method: the fmax approach revisited. Vaulot 37 644 1992

  23. Bull. Jpn. Soc. Phycol. Fresh and salt-water forms of Spirulina platensis in axenic cultures. Watanabe 25 371 1977

  24. Plankton Benthos Res Relationship between cell growth and frequency of dividing cells of Microcystis aeruginosa. Yamamoto 5 131 2010

  25. J. Phycol. Measurement of in situ specific growth rates of Microcystis (cyanobacteria) from the frequency of dividing cells. Yamamoto 45 1003 2009

  26. Plankton Benthos Res. Effect of temperature on recruitment of cyanobacteria from the sediment and bloom formation in a shallow pond. Yamamoto 4 95 2009

  27. PLoS ONE Bright field microscopy as an alternative to whole cell fluorescence in automated analysis of macrophage images. Aderem 9 2009

  28. Hydrobiologia Using frequency of dividing cells in estimating autotrophic picoplankton growth and productivity in the Chesapeake Bay Affronti 284 193 1994.

  29. Journal of Plankton Research Abundance, frequency of dividing cells and growth rates of Synechococcus sp. (cyanobacteria) in the stratified Northwest Mediterranean Sea Agawin 19 1599 1997

  30. Mar. Ecol. Prog. Ser. Diel patterns of cell division in marine Synechococcus spp. (Cyanobacteria): use of the frequency of dividing cells technique to measure growth rate. Campbell 32 139 1986

  31. Mar. Ecol. Prog. Ser. Diel patterns of cell division and growth rates of Synechococcus spp. in Long Island Sound. Carpenter 47 179 1988

  32. Deep-Sea Res. Estimating the carbon specific growth rate of the major algal species gTOups in eastern Indonesian waters by 14C labelling of taxon specific carotenoids. Gieskes 36 1127 1989

  33. Appl. Environ. Microbiol Frequency of dividing cells, a new approach to the determination of bacterial growth rates in aquatic environments. Hagstrom 37 805 1979

  34. Mar. EcoL Prog. Ser Temporal and spatial variability of chroococcoid cyanobacteria Synechococcus spp. Specific growth rates and their contribution to primary production in the Sargasso Sea. Ituriaga 44 175 1988

  35. Journal of Microbiology Simple method for a cell count of the colonial cyanobacterium , Microcystis sp. Joung 44 562 2006

  36. IEEE Transactions on Medical Imaging Computational framework for simulating fluorescence microscope images with cell populations. Lehmussola 1010 2007

  37. Journal of Phycology Relationship between the number of dividing and non dividing cells of cyanobacteria in North Atlantic picoplankton. Li 27 559 1991

  38. Mar. Ecol. Prog. Ser Ultraphytoplankton in the eastern Mediterranean Sea: towards deriving phytoplankton biomass from flow cytometric measurements of abundance, fluorescence and light scatter Li 79 1993

  39. Limnol. Oceanogr. The calculation of in situ growth rates of phytoplankton populations from fractions of cells undergoing mitosis: A clarification. McDuff 27 783 1982

  40. Appl. Environ. Microbiol. Christian R.R. Frequency of dividing cells as an estimator of bacterial productivity. Newell 42 23 1981

  41. Journal of Plankton Research Size-dependent growth rates in eukaryotic and prokaryotic algae exemplified by green algae and cyanobacteria: comparisons between unicells and colonial growth forms Nielsen 28 489 2006

  42. Microbiological Reviews Survival Strategies of Bacteria in the Natural Environment. Roszak 51 365 1987

  43. Romanian Journal of Biology- Plant Biology Axenic culture of a diazotrophic filamentous cyanobacterium isolated from mesothermal sulphurous springs (Obanul Mare - Mangalia). Sarchizian 55 47 2010

  44. Biotechniques Software for quantification of labeled bacteria from digital microscope images by automated image analysis. Selinummi 39 859 2005

  45. Can. J. Fish. Aquat. Sci. Algal picoplankton from marine and freshwater ecosystems: a multidisciplinary perspective. Stockner 43 2472 1986

  46. Freshwater Biol. Application of the frequency of dividing cells technique to estimate the in situ growth of Microcystis (Cyanobacteria). Tsujimura 48 2009 2003

  47. Annales de l’Institut Pasteur Microbiology Enumeration and size of planktonic bacteria determined by image analysis coupled with epifluorescence. Van Wambeke 139 261 1988

  48. Limnol. Oceanogr Estimate of phytoplankton division rates by the mitotic index method: the fmax approach revisited. Vaulot 37 644 1992

  49. Bull. Jpn. Soc. Phycol. Fresh and salt-water forms of Spirulina platensis in axenic cultures. Watanabe 25 371 1977

  50. Plankton Benthos Res Relationship between cell growth and frequency of dividing cells of Microcystis aeruginosa. Yamamoto 5 131 2010

  51. J. Phycol. Measurement of in situ specific growth rates of Microcystis (cyanobacteria) from the frequency of dividing cells. Yamamoto 45 1003 2009

  52. Plankton Benthos Res. Effect of temperature on recruitment of cyanobacteria from the sediment and bloom formation in a shallow pond. Yamamoto 4 95 2009

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