Fazio Géraldine, Monée Hélene, Da Silva Catherine, Simon-Levert Gael, Allienne Jean-François, Lecomte-Finiger Raymonde, Sasal Pierre
Laboratoire de Biologie et d'Ecologie Tropicale et Méditerrandénne, UMR 5244 CNRS-EPHE-UPVD, Université de Perpignan Via Domitia, 52 Avenue Paul Alduy, 66860 Perpignan Cedex, France.
J Parasitol. 2009 Aug;95(4):808-16. doi: 10.1645/GE-1705.1.
The European eel, Anguilla anguilla, is considered an endangered species that is under pressure for many reasons. Among others, the introduced parasite Anguillicola crassus is thought to play an important role in the decline of eel populations. These nematodes have been shown to negatively affect many fitness-related traits in eels, e.g., growth, osmoregulation, and stress tolerance. Nevertheless, there has been little work on the way in which the host-parasite interaction influences the molecular regulation of these key physiological processes. We experimentally analyzed the effect of this nematode on the expression of genes involved in the physiology of European eels during their continental life. Included are genes that are implicated in the eel's somatic growth (insulin-like growth factor 1 and thyroid hormone receptor beta), osmoregulation (Na+/K+-ATPase beta1 and aquaporin 3), and hematopoiesis (hemoglobin alpha-chain). Our results showed the absence of an effect on genes involved in fish growth; the parasite may, however, have an effect on osmoregulation and hematopoiesis. We also noted a differential impact of male and female parasites on the expression of some genes, perhaps owing to the sexual dimorphism in body size of the parasite.
欧洲鳗鲡(Anguilla anguilla)被视为一种濒危物种,由于多种原因而面临压力。其中,外来寄生虫粗厚鳗鲡线虫(Anguillicola crassus)被认为在鳗鲡种群数量下降中起重要作用。这些线虫已被证明会对鳗鲡许多与健康相关的特征产生负面影响,例如生长、渗透压调节和应激耐受性。然而,关于宿主 - 寄生虫相互作用影响这些关键生理过程分子调控的方式,相关研究很少。我们通过实验分析了这种线虫对欧洲鳗鲡在其陆地生活阶段参与生理过程的基因表达的影响。其中包括与鳗鲡体细胞生长(胰岛素样生长因子1和甲状腺激素受体β)、渗透压调节(Na+/K+-ATP酶β1和水通道蛋白3)以及造血作用(血红蛋白α链)相关的基因。我们的结果表明,该线虫对参与鱼类生长的基因没有影响;然而,它可能对渗透压调节和造血作用有影响。我们还注意到雄性和雌性寄生虫对某些基因表达的影响存在差异,这可能是由于寄生虫体型的性别二态性所致。