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논문 기본 정보

자료유형
학술저널
저자정보
박석환 (군산대학교) 이건형 (군산대학교)
저널정보
한국자연보호학회 한국자연보호학회지 한국자연보호학회지 제9권 제2호
발행연도
2015.1
수록면
149 - 156 (8page)

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This research is on the halophilic bacteria inhibiting in solar salterns. It was conducted by measuring thecomposition of cultivating ground in each step of salt production and targeting solar salterns during 2012and 2013 in Jeungdo, Shinangun, JeollaNam-do, Korea. In each step of salt production, the succession ofthe group has been studied using pyrosequencing method and the new halophile variety has been separatelyidentified in solar salterns. The results are as follows; The decomposition ability of protein, lipid, cellulose,and starch, has been experimented with separately identifying 33 bacteria that appeared as dominants in solarsalterns. Overall, the bacteria with decomposition capability of all 4 components were Micrococcus luteus,Nocardioides daejeonensis in Actinobacteria group, Halobacillus trueperi whb45 in Firmicutes group, andAurantimonas coralicida, Lutibacterium anuloederans, Nesiotobacter exalbescens in Alphaproteobacteriagroup. Analysis in the diversity of bacteria community of diluted solution with concentration of 3%, 6%,11%, 20%, and 30% has been made using pyrosequencing method. In the Order level, SAR 11 dominated in3% salt solution, Rhodobacterales group (18.9%) in 6% solution, Micrococcales group showed the highestratio in 11% and 20% solutions, and Rhodobacterales group was dominant in the solution of 30%. In Phylumlevel, Proteobacteria group showed dominancy in 3% and 6% salt solutions, Actinobacteria group wasdominant in 11% and 20% solutions, and Proteobacteria group was dominant in 30% solution. Among theisolated strains, seven novel strains (Kmb21, Kmb26, Kmb27, Kmb32, Kmb42, Kmb64, and Kmb80) weredonate registered to NCBI and KCTC, JCM, each as new variety candidate.

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