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Journal of microbiology and biotechnology v.17 no.11, 2007년, pp.1875 - 1879   피인용횟수: 1

Arthrobacter subterraneus sp. nov., Isolated from Deep Subsurface Water of the South Coast of Korea

Chang, Ho-Won    (Biological Resource Center, KRIBB   ); Bae, Jin-Woo    (Biological Resource Center, KRIBB   ); Nam, Young-Do    (Biological Resource Center, KRIBB   ); Kwon, Hyuk-Yong    (Biological Resource Center, KRIBB   ); Park, Ja-Ryeong    (Biological Resource Center, KRIBB   ); Shin, Kee-Sun    (Biological Resource Center, KRIBB   ); Kim, Kyoung-Ho    (Biological Resource Center, KRIBB   ); Quan, Zhe-Xue    (Biological Resource Center, KRIBB   ); Rhee, Sung-Keun    (Department of Microbiology, Chungbuk National University   ); An, Kwang-Guk    (Department of Biology, Chungnam National University   ); Park, Yong-Ha    (Biological Resource Center, KRIBB  );
  • 초록

    Strain $CH7^T$ , a pale yellow-pigmented bacterium and new isolate from deep subsurface water of the South Coast of Korea, was subjected to a polyphasic taxonomic study. $CH7^T$ grew between 5 and $37^{\circ}C$ , pH 5.3-10.5, and tolerated up to 13% NaCl. A phylogenetic analysis based on 16S rRNA gene sequences showed that strain $CH7^T$ was associated with the genus Arthrobacter and phylogenetically closely related to the type strains Arthrobacter tumbae (99.4%) and Arthrobacter parietis (99.1%). However, DNA-DNA hybridization experiments revealed 2.1% and 12% between strain $CH7^T$ and Arthrobacter tumbae and Arthrobacter parietis, respectively. Thus, the phenotypic and phylogenetic differences suggested that $CH7^T$ should be placed in the genus Arthrobacter as a novel species, for which the name Arthrobacter subterraneus sp. novo is proposed. In addition, the type strain for the new species is $CH7^T$ ( $=KCTC\;9997^T=DSM\;17585^T$ ).


  • 주제어

    Arthrobacter .   16S rRNA gene .   phylogenetic characteristic.  

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  • 이 논문을 인용한 문헌 (1)

    1. Park, Kap-Joo ; Lee, Byeong-Chol ; Lee, Jae-Seok ; Park, Chan-Sun ; Cho, Myung-Hwan 2011. "Dominant-species Variation of Soil Microbes by Temperate Change" 환경생물 = Korean journal of environmental biology, 29(1): 52~60     

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