Fisheries science
Print ISSN : 0919-9268
Differential Expression of mRNAs in the Marine Diatom Chaetoceros compressum Exposed to High Temperatures
Shigeharu Kinoshita, Kiyoshi Kikuchi, Hiroshi Yamada, Takeya Hara, Yasuo Itoh, Hideaki Kinoshita, Shugo Watabe
Author information
  • Shigeharu Kinoshita

    Laboratory of Aquatic Molecular Biology and Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo

  • Kiyoshi Kikuchi

    Laboratory of Aquatic Molecular Biology and Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo

  • Hiroshi Yamada

    Central Laboratory Marine Ecology Research Institute

  • Takeya Hara

    Central Laboratory Marine Ecology Research Institute

  • Yasuo Itoh

    Central Laboratory Marine Ecology Research Institute

  • Hideaki Kinoshita

    Central Laboratory Marine Ecology Research Institute

  • Shugo Watabe

    Laboratory of Aquatic Molecular Biology and Biotechnology, Graduate School of Agricultural and Life Sciences, The University of Tokyo

Corresponding author

ORCID
Keywords: diatom, Chaetoceros compressum, heat stress, hsps, RAP RT-PCR, glutamine, glutamine synthetase
JOURNAL FREE ACCESS

1998 Volume 64 Issue 5 Pages 831-835

Details
  • Published: 1998 Received: March 25, 1998 Available on J-STAGE: June 30, 2008 Accepted: - Advance online publication: - Revised: -
  • Correction information
    Date of correction: June 30, 2008 Reason for correction: - Correction: PDF FILE Details: -
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Abstract

We investigated mRNA expression patterns in the laboratory-reared diatom Chaetoceros compressum under temperature stress conditions. The diatom incubated at 30°C for 15min, showing 43% growth rate in a subsequent culture at 20°C for 2 days, were analyzed by mRNA arbitrarily primed reverse transcription-polymerase chain reaction (RAP RT-PCR) in comparison with control cells incubated at 20°C throughout. The heat stress at 30°C induced expression changes in 7 cDNAs, one of which showed 37% identity to a homologous region of the Bacteroides fragilis glutamine synthetase gene. This stress on the diatom resulted in 2.5-fold increase in its mRNA levels. Our results demonstrated that the gene (s) related to this cDNA is expressed in response to heat stress for the diatom, suggesting its possible applications to monitoring marine environments.

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