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XX 和 XY 尼罗罗非鱼早期发育过程中脑中色氨酸羟化酶的二态性表达。

Dimorphic expression of tryptophan hydroxylase in the brain of XX and XY Nile tilapia during early development.

机构信息

Department of Animal Sciences, School of Life Sciences-Centre of Advanced Study, University of Hyderabad, P.O. Central University, Hyderabad 500046, Andhra Pradesh, India.

出版信息

Gen Comp Endocrinol. 2010 Apr 1;166(2):320-9. doi: 10.1016/j.ygcen.2009.11.009. Epub 2009 Nov 16.

Abstract

Serotonin (5-HT) is well known for modulating the release of GnRH and gonadotropin in teleosts. Reports on increased female:male ratio after the blockade of 5-HT biosynthesis proposed a role for 5-HT in brain sex differentiation. Two types of tryptophan hydroxylase (Tph), rate-limiting enzyme in the biosynthesis of 5-HT were cloned from vertebrates. In the present study, we cloned Tph from brain and evaluated its importance during early development of XX and XY Nile tilapia. Tph cloned from tilapia brain is 1888 bp in length and it encodes predicted protein of 462 amino acid residues. Tph activity of tilapia was confirmed by demonstrating the conversion of L-tryptophan to 5-hydroxy tryptophan by the recombinant protein after transient transfection of this cDNA clone in COS-7 cells. Northern blot identified single transcript around 2kb in male brain. Tissue distribution of Tph revealed high abundance in brain, kidney, liver and testis. Semi-quantitative RT-PCR revealed exclusive expression of Tph in the male brain from 5 to 20 days post hatch (dph) while in the female brain, it was from 25 dph. These results were authenticated by localization of Tph transcripts in olfactory bulb-telencephalon region of 11 dph male brain using in situ hybridization. Tph immunoreactivity (-ir) was also evident in the nucleus preopticus-periventricularis area of male brain as early as 12 dph. However, Tph-ir was observed in several regions of both male and female brain without any distinction from 30 dph. Dimorphic expression pattern of Tph during early brain development around the critical period (7-21 dph) of gonadal sex determination and differentiation may implicate a role for Tph in brain sex differentiation of tilapia.

摘要

血清素(5-HT)在调节硬骨鱼促性腺激素释放激素(GnRH)和促性腺激素的释放方面是众所周知的。5-HT 生物合成阻断后雌性与雄性比例增加的报告提出 5-HT 在大脑性别分化中起作用。两种类型的色氨酸羟化酶(Tph),5-HT 生物合成的限速酶,已从脊椎动物中克隆出来。本研究从脑组织中克隆了 Tph,并评估了其在 XX 和 XY 尼罗罗非鱼早期发育过程中的重要性。从罗非鱼脑中克隆的 Tph 长 1888bp,它编码 462 个氨基酸残基的预测蛋白。通过将该 cDNA 克隆瞬时转染 COS-7 细胞后,证明重组蛋白将 L-色氨酸转化为 5-羟色氨酸,从而证实了罗非鱼 Tph 的活性。Northern blot 在雄性脑中鉴定出大约 2kb 的单一转录物。Tph 的组织分布显示在脑、肾、肝和睾丸中含量丰富。半定量 RT-PCR 显示 Tph 仅在雄性脑从孵化后 5 至 20 天(dph)表达,而在雌性脑中则从 25 dph 表达。通过原位杂交在 11 dph 雄性脑的嗅球-端脑区域定位 Tph 转录本,验证了这些结果。Tph 免疫反应性(-ir)在雄性脑的视前核-室周区也早在 12 dph 时就很明显。然而,从 30 dph 开始,Tph-ir 就可以在雄性和雌性脑的多个区域观察到,而没有任何区别。Tph 在性别决定和分化的关键期(7-21 dph)早期大脑发育中的二态表达模式可能暗示 Tph 在罗非鱼大脑性别分化中的作用。

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