Baroiller Jean-François, D'Cotta Helena
CIRAD, Institut des Sciences de l'Evolution, Montpellier, France.
Sex Dev. 2016;10(5-6):242-266. doi: 10.1159/000452362. Epub 2016 Dec 2.
Fish sex reversal is a means to understand sex determination and differentiation, but it is also used to control sex in aquaculture. This review discusses sex reversal in gonochoristic fish, with the coexistence of genetic and environmental influences. The different periods of fish sensitivity to sex reversal treatments are presented with the mechanisms implicated. The old players of sex differentiation are revisited with transcriptome data and loss of function studies following hormone- or temperature-induced sex reversal. We also discuss whether cortisol is the universal mediator of sex reversal in fish due to its implication in ovarian meiosis and 11KT increase. The large plasticity in fish for sex reversal is also evident in the brain, with a reversibility existing even in adulthood. Studies on epigenetics are presented, since it links the environment, gene expression, and sex reversal, notably the association of DNA methylation in sex reversal. Manipulations with exogenous factors reverse the primary sex in many fish species under controlled conditions, but several questions arise on whether this can occur under wild conditions and what is the ecological significance. Cases of sex reversal in wild fish populations are shown and their fitness and future perspectives are discussed.
鱼类性逆转是理解性别决定和分化的一种手段,但它也被用于水产养殖中的性别控制。本综述讨论了雌雄异体鱼类的性逆转,其中遗传和环境影响并存。介绍了鱼类对性逆转处理的不同敏感时期及其涉及的机制。利用转录组数据以及激素或温度诱导性逆转后的功能丧失研究,重新审视了性别分化的经典因素。我们还讨论了皮质醇是否由于其在卵巢减数分裂和11酮睾酮增加中的作用,而成为鱼类性逆转的普遍介导因子。鱼类性逆转的巨大可塑性在大脑中也很明显,甚至在成年期也存在可逆性。本文介绍了表观遗传学研究,因为它将环境、基因表达和性逆转联系起来,特别是DNA甲基化在性逆转中的关联。在可控条件下,通过外源因素的操作可以使许多鱼类的初始性别发生逆转,但在野生条件下是否会发生这种情况以及其生态意义是什么,引发了几个问题。展示了野生鱼类种群中的性逆转案例,并讨论了它们的适应性和未来前景。