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圆尾斗鱼下丘脑中的 DNA 甲基化模式支持其用于领地行为的即时决策场景。

DNA Methylation Patterns in the Round Goby Hypothalamus Support an On-The-Spot Decision Scenario for Territorial Behavior.

机构信息

Program Man-Society-Environment, Department of Environmental Sciences, University of Basel, Vesalgasse 1, CH-4051 Basel, Switzerland.

Genetic Diversity Centre Zurich, ETH Zurich, Universitätstrasse 16, CH-8092 Zurich, Switzerland.

出版信息

Genes (Basel). 2019 Mar 14;10(3):219. doi: 10.3390/genes10030219.

Abstract

The question as to how early life experiences are stored on a molecular level and affect traits later in life is highly topical in ecology, medicine, and epigenetics. In this study, we use a fish model to investigate whether DNA methylation mediates early life experiences and predetermines a territorial male reproductive phenotype In fish, adult reproductive phenotypes frequently depend on previous life experiences and are often associated with distinct morphological traits. DNA methylation is an epigenetic mechanism which is both sensitive to environmental conditions and stably inherited across cell divisions. We therefore investigate early life predisposition in the round goby by growth back-calculations and then study DNA methylation by MBD-Seq in the brain region controlling vertebrate reproductive behavior, the hypothalamus. We find a link between the territorial reproductive phenotype and high growth rates in the first year of life. However, hypothalamic DNA methylation patterns reflect the current behavioral status independently of early life experiences. Together, our data suggest a non-predetermination scenario in the round goby, in which indeterminate males progress to a non-territorial status in the spawning season, and in which some males then assume a specialized territorial phenotype if current conditions are favorable.

摘要

早期生活经历如何在分子水平上储存并影响生命后期的特征,这是生态学、医学和表观遗传学中非常热门的话题。在这项研究中,我们使用鱼类模型来研究 DNA 甲基化是否介导早期生活经历并预先确定有领地的雄性生殖表型。在鱼类中,成年生殖表型经常取决于先前的生活经历,并且通常与独特的形态特征相关。DNA 甲基化是一种对环境条件敏感且在细胞分裂中稳定遗传的表观遗传机制。因此,我们通过生长回溯来研究圆斑星鲽的早期生活倾向,然后通过 MBD-Seq 研究控制脊椎动物生殖行为的脑区(下丘脑)中的 DNA 甲基化模式。我们发现有领地的生殖表型与生命第一年的高生长速度之间存在联系。然而,下丘脑的 DNA 甲基化模式独立于早期生活经历反映了当前的行为状态。总之,我们的数据表明,在圆斑星鲽中存在一种非预先确定的情况,其中不确定的雄性在繁殖季节会发展为非领地状态,如果当前条件有利,一些雄性随后会表现出专门的领地表型。

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