Resource Enhancement and Utilization Technologies Division, Northwest Fisheries Science Center, National Marine Fisheries Service, National Oceanic and Atmospheric Administration, Seattle, WA 98112, USA.
Gen Comp Endocrinol. 2013 Nov 1;193:37-47. doi: 10.1016/j.ygcen.2013.07.007. Epub 2013 Jul 25.
Efforts to establish an aquaculture industry for sablefish (Anoplopoma fimbria) are constrained by reproductive dysfunction in wild-caught fish and by lack of reproduction of F1 females. Toward a better understanding of the reproductive dysfunction of captive broodstock, full-length cDNAs encoding the sablefish gonadotropin subunits (fshb, lhb and cga) and their receptors (fshr and lhcgr) were cloned, sequenced and quantitative real-time PCR assays developed. Sablefish gonadotropin subunits display some unique features, such as two additional Cys residues in the N-terminal region of Fshb and a lack of potential N-glycosylation sites in Fshb and Lhb, whereas Fshr and Lhcgr possess conserved structural characteristics described in other vertebrates. Wild females captured in fall completed gametogenesis in captivity the next spawning season, whereas females captured three months earlier, during summer, failed to mature. Interestingly, these wild non-maturing females exhibited similar reproductive features as prepubertal F1 females, including low levels of pituitary gonadotropin and ovarian receptor mRNAs and plasma sex steroids, and ovarian follicles arrested at the perinucleolus stage. In conclusion, this study described the cloning, molecular characterization and development of qPCRs for sablefish gonadotropins and their receptors. Rearing conditions may impair vitellogenic growth of ovarian follicles in sablefish, compromising the reproductive success of broodstock.
建立水貂鱼(Anoplopoma fimbria)水产养殖产业的努力受到野生捕获鱼类生殖功能障碍和 F1 雌性鱼类缺乏繁殖的限制。为了更好地了解圈养亲鱼的生殖功能障碍,我们克隆、测序并开发了全长 cDNA 编码水貂鱼促性腺激素亚基(fshb、lhb 和 cga)及其受体(fshr 和 lhcgr)。水貂鱼促性腺激素亚基具有一些独特的特征,例如 Fshb 的 N 端区域有两个额外的 Cys 残基,Fshb 和 Lhb 缺乏潜在的 N-糖基化位点,而 Fshr 和 Lhcgr 具有其他脊椎动物中描述的保守结构特征。秋季捕获的野生雌性在次年的繁殖季节完成了配子发生,而在夏季三个月前捕获的雌性未能成熟。有趣的是,这些野生未成熟的雌性表现出与青春期前 F1 雌性相似的生殖特征,包括垂体促性腺激素和卵巢受体 mRNA 和血浆性激素水平低,以及卵母细胞在核周体阶段停滞。总之,本研究描述了水貂鱼促性腺激素及其受体的克隆、分子特征和 qPCR 开发。养殖条件可能会损害水貂鱼卵巢滤泡的卵黄生成生长,从而影响亲鱼的繁殖成功。