Matsuoka Makoto P, van Nes Solveig, Andersen Øivind, Benfey Tillmann J, Reith Michael
Department of Biology, University of New Brunswick, Fredericton, New Brunswick, Canada.
Comp Biochem Physiol B Biochem Mol Biol. 2006 May;144(1):128-35. doi: 10.1016/j.cbpb.2006.02.008. Epub 2006 Mar 6.
Two forms of cytochrome P450 aromatase, acting in both the brain and the ovary, have been implicated in controlling ovarian development in fish. To better understand the expression of these two enzymes during sexual differentiation in Atlantic halibut (Hippoglossus hippoglossus), real-time PCR was used to quantify the mRNA levels of ovary- (cyp19a) and brain-type cytochrome P450 aromatase (cyp19b) genes in the gonad and brain during gonadal development. Both enzymes showed high levels of expression in both tissues in developmental stages prior to histologically detectable ovarian differentiation (38 mm fork length), with increased expression occurring slightly earlier in the brain than the gonad. Cyp19a showed a second peak of expression in later stages (> 48 mm) in the gonad, but not the brain. Cyp19b expression was generally higher in the brain than the gonad. These results suggest that sexual differentiation may begin in the brain prior to gonadal differentiation, supporting the idea that steroid hormone expression in the brain is a key determinant of phenotypic sex in fish. In an examination of sexually immature adults, cyp19a was highly expressed in female gonad while cyp19b was very highly expressed in the pituitary of both sexes. The ratio of cyp19a to cyp19b expression was much higher in ovaries than in testes in the adult fish, so this ratio was analyzed in the developing gonads of juvenile halibut in an attempt to infer their sex. This was only partially successful, with about half the fish in later developmental stages showing apparently sex-specific differences in aromatase expression.
细胞色素P450芳香化酶的两种形式在大脑和卵巢中均有作用,与鱼类卵巢发育的调控有关。为了更好地了解这两种酶在大西洋庸鲽(Hippoglossus hippoglossus)性别分化过程中的表达情况,采用实时定量PCR技术对性腺发育过程中性腺和大脑中卵巢型(cyp19a)和脑型细胞色素P450芳香化酶(cyp19b)基因的mRNA水平进行定量分析。在组织学上可检测到的卵巢分化之前的发育阶段(叉长38毫米),两种酶在这两种组织中均表现出高表达水平,且大脑中的表达增加略早于性腺。Cyp19a在性腺发育后期(>48毫米)出现第二个表达峰值,但在大脑中未出现。Cyp19b在大脑中的表达通常高于性腺。这些结果表明,性别分化可能在性腺分化之前在大脑中就已开始,支持了大脑中类固醇激素表达是鱼类表型性别的关键决定因素这一观点。在对性未成熟成鱼的研究中,cyp19a在雌性性腺中高表达,而cyp19b在两性的垂体中均高表达。在成年鱼中,卵巢中cyp19a与cyp19b的表达比值远高于睾丸,因此对幼年庸鲽发育中的性腺进行该比值分析,试图推断其性别。这只取得了部分成功,在发育后期约一半的鱼在芳香化酶表达上表现出明显的性别特异性差异。