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Identification and classification of the principal microflora of the sea pineapple <i>Halocynthia roretzi</i> using MALDI biotyping and 16S rRNA analysis

Authors
Nho, Seong-WonJang, Ho BinCha, In SeokPark, Seong BinKim, Young-KyuFagutao, Fernand F.Yu, Jong EarnJung, Tae-Sung
Issue Date
Apr-2014
Publisher
Inter-Research Science Center
Keywords
Halocynthia roretzi; Microflora; MALDI-biotyper; 16S rRNA
Citation
Aquatic Biology, v.20, no.3, pp 203 - 208
Pages
6
Indexed
SCIE
SCOPUS
Journal Title
Aquatic Biology
Volume
20
Number
3
Start Page
203
End Page
208
URI
https://scholarworks.gnu.ac.kr/handle/sw.gnu/71016
DOI
10.3354/ab00559
ISSN
1864-7782
1864-7790
Abstract
Halocynthia roretzi (phylum Cordata), also called 'sea pineapples', live in shallow coastal waters and typically feed on plankton and detritus that they filter from seawater. It has been reported that symbiotic microflora associated with H. roretzi act as protective agents that strengthen its immune system or control energy metabolism. This study analyzed the culturable microflora from the coelomic fluid of the sea pineapple using MALDI-biotyping and 16S rRNA sequencing, combining a recent technology with the conventional method of bacteria identification. The MALDI-biotyper enabled the classification of the symbiotic microflora into 5 groups based on the specific patterns of their mass spectrum. The 16S rRNA sequencing was then used to establish the identity of the dominant bacteria in 4 groups, later revealed as 2 groups of Vibrio spp., Shewanella spp. and Bacillus spp. MALDI-biotyping was applied for the identification of micro organisms directly from cultured agar, and, coupled with numerical taxonomic analyses, we determined the major microflora associated with H. roretzi.
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