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首页> 外文期刊>Reproductive Biology and Endocrinology >Small-scale transcriptomics reveals differences among gonadal stages in Asian seabass (Lates calcarifer)
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Small-scale transcriptomics reveals differences among gonadal stages in Asian seabass (Lates calcarifer)

机译:小规模转录组学揭示了亚洲鲈鱼性腺阶段之间的差异

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Background The Asian seabass (Lates calcarifer) is a protandrous hermaphrodite that typically matures as a male at approximately 2–4 years of age and then changes sex in subsequent years. Although several sexual maturation stages have been described histologically for both testis and ovary, the underlying gene expression profiles remain lacking. The development of a gene expression platform is therefore necessary to improve our understanding of the gonad development of this cultured teleost species. Methods Thirty Asian seabass gonads were collected from farms in Singapore, examined histologically and staged according to their sex and gonadal maturation status. Partial coding sequences of 24 sex-related genes were cloned using degenerate primers and were sequenced. Additional 13 cDNA sequences were obtained through next-generation sequencing. A real-time qPCR was then performed using the microfluidic-based Fluidigm 48.48 Dynamic arrays. Results We obtained 17 ovaries and 13 testes at various stages of sexual maturation. Of the 37 genes that were tested, 32 (86%) showed sexually dimorphic expression. These genes included sex-related genes, sox9, wt1, amh, nr5a2, dmrt1 and nr0b1, which showed testis-enhanced expression similar to other vertebrate species. Known male- and female-enhanced germ cells markers, which were established from studies in other species, similarly showed testis- and ovary-enhanced expression, respectively, in the Asian seabass. Three pro-Wnt signaling genes were also upregulated in the ovary, consistent with existing studies that suggested the role of Wnt signaling in ovarian differentiation in teleosts and mammals. The expression patterns of genes involved in steroidogenesis, retinoic acid metabolism, apoptosis and NF-κB signaling were also described. We were able to classify gonads according to sex and gonadal maturation stages, based on their small-scale transcriptomic profiles, and to uncover a wide variation in expression profiles among individuals of the same sex. Conclusions The analysis of a selected set of genes related to reproduction and in sufficient number of individuals using a qPCR array can elucidate new insights into the molecular mechanisms involved in Asian seabass gonad development. Given the conservation of gene expression patterns found in this study, these insights may also help us draw parallels with other teleosts.
机译:背景技术亚洲鲈鱼(Lates calcarifer)是一种原产于雌雄同体的雌雄同体,通常在大约2-4岁时作为雄性成熟,然后在随后的几年中改变性别。尽管在组织学上已经描述了睾丸和卵巢的几个性成熟阶段,但是仍然缺乏潜在的基因表达谱。因此,开发基因表达平台对于增进我们对这种养殖硬骨鱼类性腺发育的理解是必要的。方法从新加坡的养殖场中收集了三十只亚洲鲈鱼性腺,对其性别和性腺成熟状态进行了组织学检查和分期。使用简并引物克隆了24个性别相关基因的部分编码序列,并进行了测序。通过下一代测序获得了另外13个cDNA序列。然后使用基于微流体的Fluidigm 48.48动态阵列进行实时qPCR。结果我们在性成熟的各个阶段获得了17个卵巢和13个睾丸。在测试的37个基因中,有32个(86%)显示出性二态表达。这些基因包括与性有关的基因,sox9,wt1,amh,nr5a2,dmrt1和nr0b1,这些基因显示出与其他脊椎动物相似的睾丸增强表达。根据其他物种的研究建立的已知男性和女性增强生殖细胞标记分别在亚洲海鲈中分别显示出睾丸和卵巢增强的表达。卵巢中的三个前Wnt信号基因也被上调,这与现有研究表明Wnt信号在硬骨鱼和哺乳动物卵巢分化中的作用一致。还描述了参与类固醇生成,视黄酸代谢,细胞凋亡和NF-κB信号传导的基因的表达模式。我们能够根据性腺和性腺的小规模转录组谱,根据性别和性腺成熟阶段对其进行分类,并发现同性个体之间的表达谱差异很大。结论使用qPCR阵列对一组与繁殖相关的基因进行了分析,并利用足够数量的个体对这些基因进行了分析,可以阐明对亚洲鲈鱼性腺发育所涉及的分子机制的新见解。考虑到本研究中发现的基因表达模式的保守性,这些见解也可能有助于我们与其他硬骨鱼进行比较。

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