首页> 外文期刊>General and comparative endocrinology >Electrotransfer of single-chain LH gene into skeletal muscle induces early ovarian development of orange-spotted grouper (Epinephelus coioides)
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Electrotransfer of single-chain LH gene into skeletal muscle induces early ovarian development of orange-spotted grouper (Epinephelus coioides)

机译:单链LH基因的电转换器进入骨骼肌诱发橙色斑点石斑鱼(Epinephelus Coioides)的早期卵巢发育

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Luteinizing hormone (LH) plays important roles in regulating steroidogenesis and reproductive development of vertebrates. In the present paper, we study function of LH on early ovarian development of orange-spotted grouper by electrotransfer of single-chain LH gene into skeletal muscle for the first time. Short-term and long-term injection experiments were performed in this work, respectively. For short-term injection experiments, fish received one electrotransfer with the plasmid in skeletal muscle, then blood and muscle around the injected area were sampled 1, 3, 5 and 7 days after the injection, mRNA expression levels of LH gene relative to 185 were determined by quantitative real-time PCR (RT-PCR) assays and serum 17 beta-estradiol (E2) levels were quantified by ELISA method. The results showed that levels of mRNA of LH gene in muscle and serum E2 level increased from I day to 7 days after the injection. For long-term injection experiments, fish received electrotransfer with the plasmid 4 times at weekly intervals in skeletal muscle. 48 h after the last injection, blood, gonad and hypothalamus samples were collected. Transcripts of cyp19a1a, cyp19a1b and gnrh1 genes and levels of serum E2 were separately analyzed by RT-PCR assays and ELISA method, and ovarian tissues were made of paraffin sections and stained by hematoxylin-eosin by method and observed by optical microscopy. The results suggested that long-term injection of LH gene into muscle upregulated transcripts of cyp19a1a and cyp19a1b and downregulated that of gnrh1, and stimulated E2 production and early-stage oogenesis. Moreover, statistical data showed that 9 of 10 ovaries of injected fish with LH gene began to develop after the long-term experiments. These data suggest that single-chain LH gene introduced into skeletal muscle via electrotransfer can be expressed and induce the early ovarian development of juvenile orange-spotted grouper. This work contributes to solve reproductive dysfunctions associated with low hormone levels of teleosts, further it may represent the demonstration at regulation of LH on early ovarian development of orange spotted grouper to a certain extent. (C) 2017 Elsevier Inc. All rights reserved.
机译:叶黄素激素(LH)在调节脊椎动物的甾体素和生殖发育中起着重要作用。本文首次通过单链LH基因的电动翻译将单链LH基因的橙色斑点石斑网早期卵巢发育的功能研究了LH。在这项工作中分别进行短期和长期注射实验。对于短期注射实验,鱼类在骨骼肌中的质粒接收一个电流,然后在注射后的注射区域血液和肌肉在注射后的样品1,3,5和7天,LH基因的mRNA表达水平相对于185次通过ELISA方法定量通过定量实时PCR(RT-PCR)测定和血清17β-雌二醇(E2)水平。结果表明,肌肉中LH基因的mRNA水平从注射后的一天至7天增加到7天。对于长期注射实验,鱼在骨骼肌中每周间隔用质粒接收电路。在最后一次注射后48小时,收集血液,加仑和下丘脑样品。通过RT-PCR测定和ELISA方法分别分析CYP19A1A,CYP19A1B和GNRH1基因的转录物和血清E2的水平,通过方法由石蜡切片进行卵巢组织并通过方法通过苏毒素 - 曙红染色并通过光学显微镜观察。结果表明,长期将LH基因注射到CYP19A1A和CYP19A1B的肌肉上调转录物,并下调GNRH1,刺激E2的生产和早期O2。此外,统计数据显示,在长期实验后,具有LH基因的注射鱼的10个卵巢中的9个。这些数据表明,通过电转换器引入骨骼肌的单链LH基因可以表达并诱导少年橙色斑点石斑鱼的早期卵巢发育。这项工作有助于解决与低激素水平的生殖功能障碍,进一步可能代表LH在一定程度上对橙色斑点石斑网的早期卵巢发育的调节的示范。 (c)2017年Elsevier Inc.保留所有权利。

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