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不同的神经基因组反应塑造了个性和配偶偏好的社会学习。

Divergent neurogenomic responses shape social learning of both personality and mate preference.

机构信息

Department of Biology, Texas A&M University, College Station, TX 77843, USA

Centro de Investigaciones Científicas de las Huastecas 'Aguazarca', A. C., Calnali, Hidalgo 43233, Mexico.

出版信息

J Exp Biol. 2020 Mar 16;223(Pt 6):jeb220707. doi: 10.1242/jeb.220707.

Abstract

Behavior plays a fundamental role in shaping the origin and fate of species. Mating decisions can act to promote or restrict gene flow, as can personality traits that influence dispersal and niche use. Mate choice and personality are often both learned and therefore influenced by an individual's social environment throughout development. Likewise, the molecular pathways that shape these behaviors may also be co-expressed. In this study on swordtail fish (), we show that female mating preferences for species-typical pheromone cues are entirely dependent on social experience with adult males. Experience with adults also shapes development along the shy-bold personality axis, with shy behaviors arising from exposure to risk-averse heterospecifics as a potential stress-coping strategy. In maturing females, conspecific exposure results in a strong upregulation of olfaction and vision genes compared with heterospecific exposure, as well as immune response genes previously linked to anxiety, learning and memory. Conversely, heterospecific exposure involves an increased expression of genes important for neurogenesis, synaptic plasticity and social decision-making. We identify subsets of genes within the social decision-making network and with known stress-coping roles that may be directly coupled to the olfactory processes females rely on for social communication. Based on these results, we conclude that the social environment affects the neurogenomic trajectory through which socially sensitive behaviors are learned, resulting in adult phenotypes adapted for specific social groupings.

摘要

行为在塑造物种的起源和命运方面起着至关重要的作用。交配决策可以促进或限制基因流动,而影响扩散和生态位利用的个性特征也是如此。配偶选择和个性通常都是后天习得的,因此在个体发育过程中会受到其社会环境的影响。同样,塑造这些行为的分子途径也可能会共同表达。在这项关于剑尾鱼的研究中,我们表明,雌性对物种典型信息素线索的交配偏好完全取决于与成年雄性的社会经验。与成年人的接触也会沿着害羞-大胆的个性轴塑造发育,害羞行为源于与规避风险的异性接触,这可能是一种应对压力的策略。在成熟的雌性中,与同种个体的接触会导致嗅觉和视觉基因的强烈上调,而与异性个体的接触则会导致与焦虑、学习和记忆相关的免疫反应基因上调。相反,与异性个体的接触涉及到与神经发生、突触可塑性和社会决策相关的重要基因的表达增加。我们确定了社会决策网络中的基因子集,以及具有已知应激应对作用的基因,这些基因可能与雌性用于社交交流的嗅觉过程直接相关。基于这些结果,我们得出结论,社会环境会通过影响神经发生轨迹来影响社交敏感行为的学习,从而导致适应特定社会群体的成年表型。

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