4.5 Article

Molecular characterization and expression profiles of LPXRFa at the brain pituitary-gonad axis of half-smooth tongue sole (Cynoglossus semilaevis) during ovarian maturation

Publisher

ELSEVIER SCIENCE INC
DOI: 10.1016/j.cbpb.2017.11.016

Keywords

GnIH; LPXRFa; Ovarian maturation; Cynoglossus semilaevis

Funding

  1. National Natural Science Foundation of China [31602133, 31502145]
  2. Natural Science Foundation of Shandong Province [ZR2016CB02]
  3. Central Public-interest Scientific Institution Basal Research Fund, YSFRI, CAFS [20603022016018]
  4. China Agriculture Research System [CARS-47]

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Gonadotropin-inhibitory hormone (GnIH) has been characterized by its ability to inhibit either basal or gonadotropin-releasing hormone (GnRH)-induced gonadotropin synthesis and release in birds and mammals. However, the physiological role of GnIH on the reproductive axis in fish remains inconclusive, with most studies focusing on the orders Cypriniformes and Perciforrnes. To gain insight into the role of GnIH in the regulation of reproduction in the order Pleuronectiformes, we first cloned the LPXRFa gene, the piscine ortholog of GnIH, in the half-smooth tongue sole. The full-length cDNA of LPXRFa was 918 bp in size with an open reading frame (ORF) of 585 bp that encoded a 194 amino acids preprohormone with a calculated molecular mass and isoelectric point of 21.73 kDa and 6.52, respectively. The LPXRFa precursor encoded two putative peptide sequences that included -MPMRF or -MPQRF motifs at the C-terminal. Tissue distribution analysis showed that LPXRFa transcripts could be detected at high levels in the brains of both sexes and to a lesser extent in the ovary, heart and stomach of females, while a noteworthy expression was observed in the kidney and muscle of males. Furthermore, the expression patterns of LPXRFa mRNA during ovarian maturation were also investigated. In the brain, the mRNA expression of LPXRFa increased significantly at stage III, declined at stage V and reached a maximum at stage VI. In the pituitary, the levels of LPXRFa mRNA remained stable during ovarian maturation and increased significantly to the top level at stage V and then declined back to basal levels. In contrast, the ovarian LPXRFa mRNA levels declined sharply at stage Ill and remained depressed over the course of ovarian maturation. Taken together, our results provide further evidence for the existence of LPXRFa in the order Pleuronectiformes and suggest its possible involvement in the regulation of reproduction in the female tongue sole.

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