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1.
Gen Comp Endocrinol ; 174(3): 326-34, 2011 Dec 01.
Article in English | MEDLINE | ID: mdl-21978589

ABSTRACT

Vertebrate oocytes actively contribute to follicle development by secreting a variety of growth factors, among which bone morphogenetic protein 15 (BMP15/Bmp15) and growth differentiation factor 9 (GDF9/Gdf9) have been paid particular attention. In the present study, we describe the cellular localization, the developmental profiles, and the response to unilateral ovariectomy (a procedure implying the surgical removal of one of the ovaries) of protein and mRNA steady-state levels of Bmp15 and Gdf9 in the ovary of European sea bass, an important fish species for marine aquaculture industry. In situ hybridization and immunohistochemistry demonstrated that the oocyte is the main production site of Bmp15 and Gdf9 in European sea bass ovary. During oocyte development, Bmp15 protein expression started to be detected only from the lipid vesicle stage onwards but not in primary pre-vitellogenic (i.e. perinucleolar) oocytes as the bmp15 mRNA already did. Gdf9 protein and gdf9 mRNA expression were both detected in primary perinucleolar oocytes and followed similar decreasing patterns thereafter. Unilateral ovariectomy induced a full compensatory growth of the remaining ovary in the 2-month period following surgery (Á. García-López, M.I. Sánchez-Amaya, C.R. Tyler, F. Prat 2011). The compensatory growth elicited different changes in the expression levels of mRNA and protein of both factors, although the involvement of Bmp15 and Gdf9 in the regulatory network orchestrating such process remains unclear at present. Altogether, our results establish a solid base for further studies focused on elucidating the specific functions of Bmp15 and Gdf9 during primary and secondary oocyte growth in European sea bass.


Subject(s)
Bass/genetics , Bone Morphogenetic Protein 15/genetics , Growth Differentiation Factor 9/genetics , Ovariectomy , Ovary/metabolism , Animals , Bass/growth & development , Bass/metabolism , Bass/surgery , Bone Morphogenetic Protein 15/metabolism , Europe , Female , Gene Expression Profiling , Gene Expression Regulation, Developmental , Growth Differentiation Factor 9/metabolism , Ovarian Follicle/cytology , Ovarian Follicle/metabolism , Ovariectomy/veterinary , Ovary/growth & development , Ovulation/genetics , Ovulation/metabolism , Tissue Distribution
2.
Article in English | MEDLINE | ID: mdl-21782032

ABSTRACT

A real-time PCR-based gene expression survey was performed on isolated European sea bass follicles from primary growth to late vitellogenesis. Expression levels of 18 transcripts with demonstrated relevance during oogenesis, encoding gonadotropin, thyrotropin, estrogen, androgen, and vitellogenin receptors, steroidogenesis-related as well as growth and transcription factors were measured. Primary oocytes showed high mRNA levels of insulin-like growth factors 1 and 2, bone morphogenetic protein 4, estrogen receptor 2b, androgen receptor b, and SRY-box containing gene 17 together with low transcript amounts of gonadotropin receptors. Follicles at the lipid vesicles stage (i.e., the beginning of the secondary growth phase) showed elevated mRNA amounts of follicle stimulating hormone receptor (fshr) and anti-Mullerian hormone. Early-to-mid vitellogenic follicles showed high mRNA levels of fshr and cytochrome P450, family 19, subfamily A, polypeptide 1a while mid-to-late vitellogenic follicles expressed increasing transcript amounts of luteinizing hormone/choriogonadotropin receptor, steroidogenic acute regulatory protein, and estrogen receptors 1 and 2a. The molecular data presented here may serve as a solid base for future studies focused on unraveling the specific mechanisms orchestrating follicular development in teleost fish.


Subject(s)
Bass/growth & development , Bass/genetics , Vitellogenesis/genetics , Animals , Bass/metabolism , Europe , Female , Gene Expression Profiling , Intercellular Signaling Peptides and Proteins/genetics , Intercellular Signaling Peptides and Proteins/metabolism , Ovarian Follicle/growth & development , Receptors, Growth Factor/genetics , Receptors, Growth Factor/metabolism , Transcription Factors/genetics , Transcription Factors/metabolism
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