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雌雄同体硬骨鱼黑鲈(条纹锯鮨)中GnRH2和GnRH3的鉴定与表达

Identification and expression of GnRH2 and GnRH3 in the black sea bass (Centropristis striata), a hermaphroditic teleost.

作者信息

Morin Scott J, Decatur Wayne A, Breton Timothy S, Marquis Timothy J, Hayes Mary K, Berlinsky David L, Sower Stacia A

机构信息

Center for Molecular and Comparative Endocrinology, University of New Hampshire, 316 Rudman Hall, 46 College Road, Durham, NH, 03824-3544, USA.

出版信息

Fish Physiol Biochem. 2015 Apr;41(2):383-95. doi: 10.1007/s10695-014-9990-z. Epub 2014 Sep 26.

Abstract

We cloned two cDNAs for two gonadotropin-releasing hormones, GnRH2 (chicken GnRH-II) and GnRH3 (salmon GnRH), respectively, from the black sea bass (Centropristis striata). Black sea bass are protogynous hermaphroditic teleosts that change from females to males between 2 and 5 years of age. Similar to other GnRH precursors, the precursors of black sea bass GnRH2 and GnRH23 consisted of a signal peptide, decapeptide, a downstream processing site, and a GnRH-associated peptide. Our analyses failed to identify GnRH1. GnRH3 precursor transcript was more widely distributed in a variety of tissues compared with GnRH2. Further examination of GnRH expression and gonadal histology was done in black sea bass from three different size groups: small (11.4-44.1 g), medium (179.4-352.2 g) and large (393.8-607.3 g). Interestingly, GnRH3 expression occurred only in the pituitaries of males in the small and medium groups compared with expression of GnRH2. Future functional studies of the sea bass GnRHs will be valuable in elucidating the potential underlying neuroendocrine mechanisms of black sea bass reproduction and may ultimately contribute to management advances in this commercially important fish.

摘要

我们分别从黑海鲈(条纹锯鮨)中克隆了两种促性腺激素释放激素(GnRH)的互补DNA(cDNA),即GnRH2(鸡GnRH-II)和GnRH3(鲑鱼GnRH)。黑海鲈是雌性先熟的雌雄同体硬骨鱼,在2至5岁之间由雌性转变为雄性。与其他GnRH前体相似,黑海鲈GnRH2和GnRH3的前体由一个信号肽、十肽、一个下游加工位点和一个GnRH相关肽组成。我们的分析未能鉴定出GnRH1。与GnRH2相比,GnRH3前体转录本在多种组织中的分布更为广泛。我们对来自三个不同大小组的黑海鲈进行了GnRH表达和性腺组织学的进一步检查:小(11.4 - 44.1克)、中(179.4 - 352.2克)和大(393.8 - 607.3克)。有趣的是,与GnRH2的表达相比,GnRH3的表达仅在中小组雄性的垂体中出现。未来对海鲈GnRHs的功能研究对于阐明黑海鲈繁殖潜在的神经内分泌机制具有重要价值,并且最终可能有助于这种具有商业重要性的鱼类的管理进展。

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