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Induced Expression of Doublesex-and mab-3-related Transcription Factor-1 (DMRT-1) mRNA by Testosterone in the Olive Flounder, Paralichthys olivaceus ovary  

Jo, Pil-Gue (Division of Marine Environment & Bioscience, Korea Maritime University)
An, Kwang-Wook (Division of Marine Environment & Bioscience, Korea Maritime University)
Kim, Na-Na (Division of Marine Environment & Bioscience, Korea Maritime University)
Choi, Yong-Ki (Division of Marine Environment & Bioscience, Korea Maritime University)
Cho, Sung-Hwoan (Division of Marine Environment & Bioscience, Korea Maritime University)
Min, Byung-Hwa (Aquaculture Research Team, NFRDI)
Lim, Han-Kyu (Aquaculture Research Team, NFRDI)
Choi, Cheol-Young (Division of Marine Environment & Bioscience, Korea Maritime University)
Publication Information
Journal of Aquaculture / v.20, no.3, 2007 , pp. 199-202 More about this Journal
Abstract
We isolated a 317 bp of partial cDNA for doublesex-and mab-3-related transcription factor-1 (DMRT-1) from the testis of olive flounder, Paralichthys olivaceus using RT-PCR. Based on the multiple sequence alignment, olive flounder DMRT-1 shared relatively high sequence homology (82 to 94%) with orthologues from other teleost species such as Atlantic halibut, Hippoglossus hippoglossus, black porgy, Acanthopagrus schlegeli and rainbow trout, Oncorhynchus mykiss. DMRT-1 mRNA was predominantly expressed in the testis of olive flounder. In our investigation for the effect of testosterone treatment in vivo on induced expression of ovarian DMRT-1 transcript, mRNA levels of DMRT-1 in ovary were significantly up-regulated by testosterone treatments (0.3 or $3.0{\mu}g$ testosterone/g body weight for 12 to 36 hours) as judged by RT-PCR analysis. In overall, transcriptional stimulation of DMRT-1 during treatments was more affected by doses of testosterone than treatment durations. This result strongly suggests that the regulation of DMRT-1 be tissue- and gender-specific in olive flounder, and also provides useful baseline knowledge on the testosterone-mediated regulation in the reproductive physiology of this species.
Keywords
Olive flounder; Paralichthys olivaceus; Testosterone; DMRT-1; mRNA;
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