Isolation and Characterization of Alga-Lytic Bacterium HY0210-AK1 and Its Degradability of Anabaena cylindrica

남조류 분해세균 HY0210-AK1의 분리와 특성 및 Anabaena cylindrica 분해 활성

  • Published : 2003.06.01

Abstract

To isolate alga-lytic bacteria, a number of samples were collected from Lake of Sukchon and Pal'tang reservoir where cyanobacteria blooming occurred. HY0210-AK1, which exhibited high alga-lytic activity, was isolated using Anabaena cylindrica lawn. The morphological and biochemical characteristics of the isolate HY0210-AK1 were very similar to that of the genus Rhizobium. Taxonomic identification including 16S rDNA base sequencing and phylogenetic analysis indicated that the isolate Hy0210-AK1 had a 99.1% homology in its 16S rDNA babe sequence with Sphingobium herbicidovorans. A. cylindrica NIES-19 was susceptible to the alga-lytic bacterial attack. The growth-inhibiting offset of the bacterium was not different on A. cylindrica NIES-19 when Sphingobium herbicidovorans HY0210-AK1 was in the lag, exponential, and stationary growth phase, although the alga-Iytic effect of S. herbici-dovorans HY0210-AK1 that in stationary growth phase was somewhat pronounced at the first time of inoculation. When S. herbicidovorans HY0210-AK1 was inoculated was inoculated with $1\times 10^{8}$ CFU $ml^{-1}$ together with A cylindrica NIES-19, the bacterium proliferated and caused algal lysis. A. cylindrica NIES-19 died when S. herbicidovorans HY0210 AKl was added to the algal culture but not when duly the filtrates from the bacterial culture was added. This suggests that extracellular substances are not responsible for inhibition of A. cylindrica NIES-19 and that algal Iysis largely attributed to direct interaction between S. herbicidovorans HY0210-AK1 and A. cylindrica NIES-19. The alga-lytic bacterium HY0210-AK1 caused cell lysis and death of three strain of Micro-cystis aeruginosa, but revealed no alga-Iytic effects on the Stephanodiscus hantzschii.

남조류의 대발생이 자주 발생하는 석촌호수와 팔당호로부터 시료를 채취하여 남조류 분해세균의 분리를 시도하였다. MDM배지 상에서 Anabaena cylindrica를 숙주로 하는 over-layer method를 이용하여 Anabaena cylindrica lawn에서 남조류 분해 세균을 분리하여 HY0210-AK1으로 명명하였다. HY0210-AK1의 형태적, 생화학적 특성은 Rhizobium속과 유사하였으며, 16S rDNA 염기서열을 분석한 결과 Sphingobium herbicido vorans IFO 16415$^{T}$ 와 99.1%의 높은 유연관계를 보여 Sphingobium herbicidovorans HY0210-AK1로 동정하였다. 잠복기, 대수성장기, 정체기에 있는 Sphingobium herbicidovorans HY0210-AK1를 Anabaena cylindrica NIES-19와 혼합 배양하였을 때, 접종 초기에는 정체기의 Sphingobium herbicidovorans HY0210-AK1를 접종한 처리구에서 가장 좋은 살조 효과를 나타냈으나, 접종 7일 이후에는 커다란 차이를 보이지 않았다 또한,Sphingobium herbicidovorans HY0210-AK1는 $1\times 10^{8}$ CFU $ml^{-1}$ 이상의 농도로 처리하였을 때, Anabaena cylindrica NIES-19가 완전히 분해되었다. Sphingo bium herbicidovorans HY0210-AK1와 Anabaena cylin dricaNIES-19를 혼합 배양한 상등액을 여과하여 접종 하였을때는 납조류 성장 저해 효과가 나타나지 않았다. 따라서 Sphingobium herbicidovorans HY0210-AK1는 Anabaena cylindrica NIES-19를 직접 공격하여 분해하는 것으로 사료된다. Sphingobium herbicidovorans HY0210-AK1는 Microcystis aeruginosa 분해하였다..

Keywords

References

  1. Appl. Environ. Microbiol. v.35 Interactions between the diatom Thallasiosira Pseudomonanna and an associated Pseudomonad in a mariculture system Baker,K.H.;D.S.Herson
  2. Arch Microbiol. v.137 Myxococcal predation of the cyanobacterium Phormidium luridum in aqueous environments Burnham,J.C.;S.A.Collart;M.J.Daft https://doi.org/10.1007/BF00414547
  3. Sci. Am. v.270 The toxin of cyanobacteria Carmichael,W.W. https://doi.org/10.1038/scientificamerican0194-64B
  4. Methods Enzymol. v.167 Culturing methods for cyanobacteria Castenholz,R.W. https://doi.org/10.1016/0076-6879(88)67006-6
  5. New Phytol. v.70 Bacterial pathogens of freshwater blue-green algae Daft,M.J.;W.D.Stewart https://doi.org/10.1111/j.1469-8137.1971.tb02582.x
  6. Microbiol. Rev. v.56 Oxygen relations of nitrogen fixation in cyanobacteria Fay,P.
  7. PHYLIP: Phylogenetic Inference Package(Version 3.5) Felsenstein,J.
  8. Toxic Microcystis Chemistry and detection of microcystins Harada,K.I.;Watanabe,M.F.(ed.);K.I.Harada(ed.);W.W.Carmichael(ed.);H.Fujiki(ed.)
  9. Mammalian protein metabolism Evolution of protein molecules Juke,T.H.;D.R.Cantor;Munro,H.N.(ed.)
  10. World J. Microbiol. Biotechnol v.10 Cyanobacteria in rice soils Khan,Z.U.M.;Z.U.T.Begum;R.Mandal;M.Z.Hossain https://doi.org/10.1007/BF00414867
  11. Kor. J. Environ. Biol. v.15 Lysis of Anabaena cylindrica(cyanobacterium) cell wall by extracellular enzyme of Moraxella sp. CK-1 Kim,C.H.;Y.K.Choi;B.R.Min
  12. Bergey's manual of systematic bacteriology v.1 Krige,N.R.;J.G.Holt
  13. Aquat. Microb. Ecol. v.22 Algicidal effect of the bacterium Alcaligens denitrificans on Microcystis spp. Manage,P.M.;Z.Kawabata;S.Nakano https://doi.org/10.3354/ame022111
  14. Res. Technol. v.27 Controlling attached blue-green algae with copper sulfate McGuire,R.M.;J.M.Jones;E.G.Means;G.Lzaguire;A.E.Reston
  15. Nucleic Acid Res. v.8 Rapid isolation of high molecular-weight plant DNA Murray,M.G.;W.F.Thompson https://doi.org/10.1093/nar/8.19.4321
  16. A manual of chemical and biological methods for seawater analysis(1st ed.) Parsons,R.T.;Y.Matia;C.M.Lalli
  17. Fresh water Biol. v.24 Toxicology of a soluble peptide from Microcystis sp. to zooplankton and fish Penaloza,R.;M.Rojas;I.Vila;F.Zambrano https://doi.org/10.1111/j.1365-2427.1990.tb00705.x
  18. Arch. Hydrobiol. v.133 Acute toxic effects of a novel cyanobacterial toxin on the crustaceans Artemia salina and Daphnia pulex Reinikainen,M.;J.Kiviranta;V.Ulvi;M.L.N.Paavola
  19. Aquaculture v.88 Cyanobacteria in fishponds Reyssac,S.J.;M.Pletikosic https://doi.org/10.1016/0044-8486(90)90315-E
  20. Mol. Bio. Evol. v.4 The neighbor-joining method: a new method for reconstructing phylogenetic trees Saitou,N.;M.Nei
  21. Nippon Suisan Gakkaishi v.57 Plaque formation by algicidal Saprospira sp. on a lawn of Chaetoceros ceratosporum Sakata,T.;Y.Fujita;H.Yasumoto https://doi.org/10.2331/suisan.57.1147
  22. J. Bacteriol. v.104 Lysis of blue-green algae by myxobacter Shilo,M.
  23. Appl. Environ. Microbiol. v.57 Toxicity and toxins of natural blooms and isolated strains of Microcystis spp.(Cyanobacteria) and improved procedure for purification of culture Shirai,M.;A.Ohtake;T.Sano;S.Matsumoto;T.Sakamoto;A.Sato;T.Aida;K.I.Harada;T.Shimada;M.Suzuki;M.Nakano
  24. J. Clin. MIcroniol. v.36 Phenotypic techniques for identification of unusualaerobic phtoenic gram-negative Bacilli Thompson,I.P.;M.J.Bailey;B.P.Rainey
  25. J. Phycol. v.28 Fate of the toxic cyclic heptapeptides, the microcystins from blooms of Microcystis(Cyanobacteria) in a hypertrophic lake Watanabe,M.M.;K.Kaya;N.Takamuara https://doi.org/10.1111/j.0022-3646.1992.00761.x
  26. J. Bacteriol. v.173 16S ribosomal DNA amplication for phylogentic study Wiesburg,W.;S.M.Barns;D.E.Pelletier;D.J.Lane