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母体温度暴露会损害鱼类的情绪和认知反应,并引发神经发育基因的失调。

Maternal temperature exposure impairs emotional and cognitive responses and triggers dysregulation of neurodevelopment genes in fish.

作者信息

Colson Violaine, Cousture Morgane, Damasceno Danielle, Valotaire Claudiane, Nguyen Thaovi, Le Cam Aurélie, Bobe Julien

机构信息

Fish Physiology and Genomics, INRA LPGP UR1037, Rennes, France.

出版信息

PeerJ. 2019 Jan 31;7:e6338. doi: 10.7717/peerj.6338. eCollection 2019.

Abstract

Fish are sensitive to temperature, but the intergenerational consequences of maternal exposure to high temperature on offspring behavioural plasticity and underlying mechanisms are unknown. Here we show that a thermal maternal stress induces impaired emotional and cognitive responses in offspring rainbow trout (). Thermal stress in mothers triggered the inhibition of locomotor fear-related responses upon exposure to a novel environment and decreased spatial learning abilities in progeny. Impaired behavioural phenotypes were associated with the dysregulation of several genes known to play major roles in neurodevelopment, including (autism susceptibility candidate 2), a key gene for neurodevelopment, more specifically neuronal migration and neurite extension, and critical for the acquisition of neurocognitive function. In addition, our analysis revealed the dysregulation of another neurodevelopment gene () as well as genes associated with human cognitive disorders (, ). We observed major differences in maternal mRNA abundance in the eggs following maternal exposure to high temperature indicating that some of the observed intergenerational effects are mediated by maternally-inherited mRNAs accumulated in the egg. Together, our observations shed new light on the intergenerational determinism of fish behaviour and associated underlying mechanisms. They also stress the importance of maternal history on fish behavioural plasticity.

摘要

鱼类对温度敏感,但母体暴露于高温对后代行为可塑性及潜在机制的代际影响尚不清楚。在此,我们表明母体热应激会导致后代虹鳟鱼的情绪和认知反应受损。母亲的热应激会导致后代在接触新环境时运动性恐惧相关反应受到抑制,并降低其空间学习能力。行为表型受损与已知在神经发育中起主要作用的几个基因的失调有关,包括(自闭症易感性候选基因2),这是神经发育的关键基因,更具体地说是神经元迁移和神经突延伸,对神经认知功能的获得至关重要。此外,我们的分析揭示了另一个神经发育基因()以及与人类认知障碍相关的基因(,)的失调。我们观察到母体暴露于高温后,卵中母体mRNA丰度存在重大差异,这表明一些观察到的代际效应是由卵中积累的母体遗传mRNA介导的。总之,我们的观察结果为鱼类行为的代际决定论及其相关潜在机制提供了新的线索。它们还强调了母体经历对鱼类行为可塑性的重要性。

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