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早期生活和代际压力对大脑的影响。

The effects of early-life and intergenerational stress on the brain.

机构信息

Division of Mathematics & Natural Sciences, Penn State Altoona, 3000 Ivyside Dr., Altoona, PA 16601, USA.

Eberly College of Science, Pennsylvania State University, University Park, PA 16802, USA.

出版信息

Proc Biol Sci. 2023 Nov 29;290(2011):20231356. doi: 10.1098/rspb.2023.1356.

Abstract

Stress experienced during ontogeny can have profound effects on the adult phenotype. However, stress can also be experienced intergenerationally, where an offspring's phenotype can be moulded by stress experienced by the parents. Although early-life and intergenerational stress can alter anatomy, physiology, and behaviour, nothing is known about how these stress contexts interact to affect the neural phenotype. Here, we examined how early-life and intergenerational stress affect the brain in eastern fence lizards (). Some lizard populations co-occur with predatory fire ants, and stress from fire ant attacks exerts intergenerational physiological and behavioural changes in lizards. However, it is unclear if intergenerational stress, or the interaction between intergenerational and early-life stress, modulates the brain. To test this, we captured gravid females from fire ant invaded and uninvaded populations, and subjected offspring to three early-life stress treatments: (1) fire ant attack, (2) corticosterone, or (3) a control. Corticosterone and fire ant attack decreased some aspects of the neural phenotype while population of origin and the interaction of early-life stress and population had no effects on the brain. These results suggest that early-life stressors may better predict adult brain variation than intergenerational stress in this species.

摘要

个体发育过程中所经历的压力会对成年表型产生深远影响。然而,压力也可以在代际间传递,即父母所经历的压力可以塑造后代的表型。尽管早期生活和代际压力会改变解剖结构、生理机能和行为,但人们尚不清楚这些压力环境如何相互作用影响神经表型。在这里,我们研究了早期生活和代际压力如何影响东部围栏蜥蜴(Sceloporus undulatus)的大脑。一些蜥蜴种群与具有掠夺性的火蚁共存,火蚁的攻击会对蜥蜴产生代际的生理和行为变化。然而,目前尚不清楚代际压力或代际压力与早期生活压力的相互作用是否会调节大脑。为了检验这一点,我们从火蚁入侵和未入侵的种群中捕获了怀孕的雌性蜥蜴,并对其后代进行了三种早期生活压力处理:(1)火蚁攻击,(2)皮质酮,或(3)对照。皮质酮和火蚁攻击降低了神经表型的某些方面,而种群起源和早期生活压力与种群的相互作用对大脑没有影响。这些结果表明,在这种物种中,早期生活压力源可能比代际压力更能预测成年大脑的变化。

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