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Photoperiod reverses the effects of estrogens on male aggression via genomic and nongenomic pathways

机译:光周期通过基因组和非基因组途径逆转雌激素对男性侵略的影响

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摘要

Despite recent discoveries of the specific contributions of genes to behavior, the molecular mechanisms mediating contributions of the environment are understudied. We demonstrate that the behavioral effects of estrogens on aggression are completely reversed by a discrete environmental signal, day length. Selective activation of either estrogen receptor α or β decreases aggression in long days and increases aggression in short days. In the bed nucleus of the stria terminalis, one of several nuclei in a neural circuit that controls aggression, estrogen-dependent gene expression is increased in long days but not in short days, suggesting that estrogens decrease aggression by driving estrogen-dependent gene expression. Estradiol injections increased aggression within 15 min in short days but not in long days, suggesting that estrogens increase aggression in short days primarily via nongenomic pathways. These data demonstrate that the environment can dictate how hormones affect a complex behavior by altering the molecular pathways targeted by steroid receptors.
机译:尽管最近发现了基因对行为的特定贡献,但仍未研究介导环境贡献的分子机制。我们证明雌激素对侵略的行为影响被离散的环境信号,日长完全逆转。雌激素受体α或β的选择性激活在长日内降低了攻击性,在短日内增加了攻击性。在控制侵略的神经回路中的几个核之一的终末层床核中,雌激素依赖性基因表达在长日内增加,但在短时间内却没有增加,这表明雌激素通过驱动雌激素依赖性基因表达而降低了侵略性。雌二醇注射在短时间内会在15分钟内增加攻击性,但在长日内不会增加,这表明雌激素主要通过非基因组途径在短时间内增加攻击性。这些数据表明环境可以通过改变类固醇受体靶向的分子途径来决定激素如何影响复杂行为。

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