Liu Hui, Todd Erica V, Lokman P Mark, Lamm Melissa S, Godwin John R, Gemmell Neil J
Department of Anatomy, University of Otago, Dunedin, New Zealand.
Department of Zoology, University of Otago, Dunedin, New Zealand.
Mol Reprod Dev. 2017 Feb;84(2):171-194. doi: 10.1002/mrd.22691. Epub 2016 Sep 9.
Teleost fish exhibit remarkably diverse and plastic patterns of sexual development. One of the most fascinating modes of plasticity is functional sex change, which is widespread in marine fish including species of commercial importance; however, the regulatory mechanisms remain elusive. In this review, we explore such sexual plasticity in fish, using the bluehead wrasse (Thalassoma bifasciatum) as the primary model. Synthesizing current knowledge, we propose that cortisol and key neurochemicals modulate gonadotropin releasing hormone and luteinizing hormone signaling to promote socially controlled sex change in protogynous fish. Future large-scale genomic analyses and systematic comparisons among species, combined with manipulation studies, will likely uncover the common and unique pathways governing this astonishing transformation. Revealing the molecular and neuroendocrine mechanisms underlying sex change in fish will greatly enhance our understanding of vertebrate sex determination and differentiation as well as phenotypic plasticity in response to environmental influences. Mol. Reprod. Dev. 84: 171-194, 2017. © 2016 Wiley Periodicals, Inc.
硬骨鱼表现出极其多样且具有可塑性的性发育模式。其中最引人入胜的可塑性模式之一是功能性性别转变,这种现象在包括具有商业重要性的物种在内的海洋鱼类中广泛存在;然而,其调控机制仍然难以捉摸。在这篇综述中,我们以蓝头濑鱼(Thalassoma bifasciatum)作为主要模型,探讨鱼类中的这种性可塑性。综合当前的知识,我们提出皮质醇和关键神经化学物质调节促性腺激素释放激素和促黄体生成素信号,以促进雌性先熟鱼类中受社会控制的性别转变。未来的大规模基因组分析以及物种间的系统比较,再结合操纵研究,可能会揭示控制这种惊人转变的共同和独特途径。揭示鱼类性别转变背后的分子和神经内分泌机制将极大地增进我们对脊椎动物性决定和分化以及对环境影响的表型可塑性的理解。《分子生殖与发育》84: 171 - 194, 2017。© 2016威利期刊公司。