Avarre Jean-Christophe, Guinand Bruno, Dugué Rémi, Cosson Jacky, Legendre Marc, Panfili Jacques, Durand Jean-Dominique
Institut des Sciences de l'Evolution de Montpellier , UMR 226 IRD-CNRS-UM2, Montpellier , France.
Faculty of Fisheries and Protection of Waters, South Bohemian Research Center of Aquaculture and Biodiversity of Hydrocenoses, Research Institute of Fish Culture and Hydrobiology, University of South Bohemia in Ceske Budejovice , Vodňany , Czech Republic.
PeerJ. 2014 Dec 18;2:e702. doi: 10.7717/peerj.702. eCollection 2014.
The black-chinned tilapia Sarotherodon melanotheron heudelotii Rüppell 1852 (Teleostei, Cichlidae) displays remarkable acclimation capacities. When exposed to drastic changes of salinity, which can be the case in its natural habitat, it develops quick physiological responses and keeps reproducing. The present study focused on the physiological impact of salinity on male reproductive capacities, using gene expression as a proxy of acclimation process. Two series of experimental fish were investigated: the first one was composed of fish maintained in freshwater for several generations and newly acclimated to salinities of 35 and 70, whereas the second one consisted of the descendants of the latter born and were raised under their native salinity. Expression patterns of 43 candidate genes previously identified from the testes of wild males was investigated in the three salinities and two generations. Twenty of them showed significant expression differences between salinities, and their predicted function revealed that most of them are involved in the osmotic tolerance of sperm cells and/or in the maintenance of sperm motility. A high level of expression variation was evidenced, especially for fish maintained in freshwater. In spite of this, gene expression patterns allowed the differentiation between fish raised in freshwater and those maintained in hypersaline water in both generations. Altogether, the results presented here suggest that this high variability of expression is likely to ensure the reproductive success of this species under varying salinities.
黑颏罗非鱼(Sarotherodon melanotheron heudelotii Rüppell,1852年)(硬骨鱼纲,丽鱼科)展现出显著的适应能力。当暴露于盐度的剧烈变化中时(在其自然栖息地可能会出现这种情况),它会迅速产生生理反应并持续繁殖。本研究聚焦于盐度对雄性繁殖能力的生理影响,使用基因表达作为适应过程的指标。研究了两组实验鱼:第一组由在淡水中饲养了几代且新适应35和70盐度的鱼组成,而第二组由前者在其原生盐度下出生并饲养的后代组成。在三种盐度和两代鱼中研究了先前从野生雄性睾丸中鉴定出的43个候选基因的表达模式。其中20个基因在不同盐度之间表现出显著的表达差异,其预测功能表明,它们中的大多数参与精子细胞的渗透耐受性和/或精子活力的维持。尤其是对于饲养在淡水中的鱼,表现出高水平的表达变异。尽管如此,基因表达模式在两代鱼中都能够区分饲养在淡水中的鱼和饲养在高盐水中的鱼。总之,此处呈现的结果表明,这种高表达变异性可能确保该物种在不同盐度下的繁殖成功。