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性反转程序是否会根据尼罗罗非鱼的性基因型而对竞争行为和性类固醇水平产生不同的影响?

Do sex reversal procedures differentially affect agonistic behaviors and sex steroid levels depending on the sexual genotype in Nile tilapia?

机构信息

Aquaculture Research and Education Center (CEFRA), University of Liège, Tihange, Belgium.

Laboratory of Hydrobiology, Official University of Bukavu, Bukavu, D. R. Congo.

出版信息

J Exp Zool A Ecol Integr Physiol. 2017 Apr;327(4):153-162. doi: 10.1002/jez.2080. Epub 2017 Aug 23.

Abstract

In Nile tilapia Oreochromis niloticus, phenotypic males and females with different sexual genotypes (XX, XY, YY) have particular behavioral and physiological traits. Compared to natural XX females and XY males, XY and YY females and XX males expressed higher level of aggressiveness that could be related to higher levels of 17β-estradiol and 11-ketotestosterone, respectively. Our results suggest that the presence of a Y chromosome increases aggressiveness in females. However, since the same relationship between aggressiveness and the Y chromosome is not observed in males, we can hypothesize that the differences in aggressiveness are not directly dependent on the genotype but on the sex reversal procedures applied on young fry during their sexual differentiation to produce these breeders. These hormonal treatments could have permanently modified the development of the brain and consequently influenced the behavior of adults independently of their genotype. In both hypotheses (genotype or sex reversal influence), the causes of behavioral modifications have to be searched in an early modification of the brain sexual differentiation.

摘要

在尼罗罗非鱼(Oreochromis niloticus)中,具有不同性基因型(XX、XY、YY)的表型雄性和雌性具有特定的行为和生理特征。与天然 XX 雌性和 XY 雄性相比,XY 和 YY 雌性以及 XX 雄性表现出更高水平的攻击性,这可能分别与更高水平的 17β-雌二醇和 11-酮睾酮有关。我们的结果表明,Y 染色体的存在会增加雌性的攻击性。然而,由于在雄性中没有观察到攻击性与 Y 染色体之间的这种关系,我们可以假设攻击性的差异不是直接取决于基因型,而是取决于幼鱼在性分化过程中进行性反转处理以产生这些繁殖者时所应用的程序。这些激素处理可能会永久性地改变大脑的发育,从而独立于其基因型影响成年动物的行为。在这两种假说(基因型或性反转影响)中,行为改变的原因必须在大脑性分化的早期改变中寻找。

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