首页> 外文期刊>African Journal of Agricultural Research >Expression profile of sex steroid hormone estrogen receptors (ERs) in the development of juvenile hybrid grouper (Epinephelus fuscoguttatus ♀ Epinephelus polyphekadion ♂)
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Expression profile of sex steroid hormone estrogen receptors (ERs) in the development of juvenile hybrid grouper (Epinephelus fuscoguttatus ♀ Epinephelus polyphekadion ♂)

机译:性类固醇激素雌激素受体(ERS)在少年杂交石榴石发育中的表达谱(EPINEPHELUS FUSCOGUTTATUSⅣepinepheluspolyphekadion♂)

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Recognized for its traditional roles, estrogen is ever-present in all vertebrates, regulates reproduction by binding and activating estrogen receptors (ERs), and also controls several functions of vertebrates, including reproductive immune, and central nervous systems. In order to access any other possible functions of the estrogen receptors in the development of the juvenile Hybrid grouper (Epinephelus fuscoguttatus ♀× Epinephelu polyphekadion ♂), full-length of ERs cDNA sequences were isolated and analyses were found to be 2391 bp for hgERα, 2626 bp for gERb1 and 2339 bp for hgERb2, respectively. The results of amino acid and phylogenetic analysis revealed that each hgER was grouped in consistent taxonomic groups of perciformes and demonstrated great evolutional conservation in functional domains. Real-time PCR examination discovered that the receptors expressed in all tissues examined, though, at a different level, the ERα mRNA level expressed higher than ERβ1, and ERβ2 in tissues examined. The ERα mRNA level of expression was found to be highest in the tissue of the heart, followed by muscle, and liver. The ERβ1 mRNA level was greatest in heart tissue, trailed by liver and muscle and ERβ2 was highest in the heart trailed by stomach and liver. The minimal expression was recorded in the kidney, the gill, and the brain for ERα, ERβ1, and ERβ2 respectively. These results put forward that steroid hormone estrogen receptors might be playing a significant part in the controlling of social behavior complexity, plasticity behavior, and the assessment of a gratifying inducement in Hybrid grouper.
机译:为了其传统作用,雌激素在所有脊椎动物中存在,通过结合和激活雌激素受体(ERS)来调节繁殖,并控制脊椎动物的若干功能,包括生殖免疫和中枢神经系统。为了进入雌激素受体的任何其他可能的功能在少年杂交地震器(Epinephelus fuscoguttatusⅣ×Epinephelu Polyphekancohaion〗)中,分离全长的ERS cDNA序列,并发现分析为HGERα的2391bp, 2626 BP分别用于HIGHB2的GERB1和2339 BP。氨基酸和系统发育分析的结果表明,每个Hger在一致的perciformes中分类,并在功能域中展示了巨大的进化保护。实时PCR检查发现,在检查的所有组织中表达的受体在不同的水平,表达高于ERβ1的ERαmRNA水平和在组织中检查的ERβ2。发现ERαmRNA水平在心脏组织中是最高的,其次是肌肉和肝脏。 ERβ1mRNA水平在心脏组织中最大,肝脏落后,肌肉和ERβ2在胃和肝脏落后的心脏中最高。最小表达分别记录在肾脏,鳃和大脑中,分别用于ERα,ERβ1和ERβ2。这些结果提出,类固醇激素雌激素受体可能在控制社会行为复杂性,可塑性行为的控制方面发挥重要组成部分,以及对杂交地雷珀中令人满意的诱导的评估。

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