首页> 美国卫生研究院文献>Frontiers in Behavioral Neuroscience >Interaction does Count: A Cross-Fostering Study on Transgenerational Effects of Pre-reproductive Maternal Enrichment
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Interaction does Count: A Cross-Fostering Study on Transgenerational Effects of Pre-reproductive Maternal Enrichment

机译:互动确实很重要:关于繁殖前孕产妇富集的跨代影响的交叉培养研究

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摘要

Pre-reproductive environmental enrichment of female rats influences sensorimotor development and spatial behavior of the offspring, possibly through the changed maternal nurturing. Nevertheless, maternal care could be not the solely responsible for changing offspring developmental trajectories. To disentangle the specific contribution to the transgenerational inheritance of pre- and post-natal factors, a cross-fostering study was performed. Female rats were reared in an enriched environment from weaning to sexual maturity, while control female rats were reared under standard conditions. Following mating with standard-reared males, all females were housed individually. Immediately after delivery, in- or cross-fostering manipulations were performed so that any foster dams received pups born to another dam of the same (in-fostering) or the opposite (cross-fostering) pre-reproductive rearing condition. In lactating dams maternal care and nesting activities were assessed, while in their male pups spatial abilities were assessed through Morris Water Maze (MWM) test at post-natal day 45. Moreover, the expression of Brain-Derived-Neurotrophic-Factor (BDNF) was evaluated in the hippocampus and frontal cortex of dams and pups at weaning. Pre-reproductive maternal environmental enrichment, followed by adoption procedures, loosened its potential in modifying maternal care and offspring developmental trajectories, as indicated by the lack of differences between in-fostered groups of dams and pups. In addition, enriched dams rearing standard pups showed the least complex maternal repertoire (the highest sniffing duration and the lowest nest quality), and their pups showed a reduced spatial learning in the MWM. Nevertheless, pre-reproductive maternal enrichment kept influencing neurotrophic pattern, with enriched dams expressing increased frontal BDNF levels (regardless of the kind of fostered pups), and their offspring expressing increased hippocampal BDNF levels. The present findings enlighten the crucial importance of the early mother-pups interactions in influencing maternal care and offspring phenotype, with the enriched dam-standard pups couple resulting in the most maladaptive encounter. Our study thus sustains that the bidirectional interactions between mother and pups are able to deeply shape offspring phenotype.
机译:雌性大鼠的生殖前环境富集可能通过改变母体的营养来影响其后代的感觉运动发育和空间行为。然而,产妇护理可能不是改变后代发展轨迹的唯一原因。为了弄清对产前和产后因素的跨代遗传的具体贡献,进行了交叉培养研究。从断奶到性成熟,在丰富的环境中饲养雌性大鼠,而在标准条件下饲养对照雌性大鼠。与标准饲养的雄性交配后,所有雌性都单独饲养。分娩后立即进行育种或交叉育种操作,以使任何寄养水坝都接受与繁殖前相同或相反(育种)条件相反的另一只水坝所生的幼崽。在哺乳期大坝中,对产后第45天的产妇护理和筑巢活动进行了评估,在雄性幼崽中,通过莫里斯水迷宫(MWM)测试评估了它们的空间能力。此外,脑源性神经营养因子(BDNF)的表达断奶时在大坝和幼仔的海马和额叶皮层进行了评估。产前母体的环境富集,再加上收养程序,丧失了其在改变母体护理和后代发展轨迹方面的潜力,这在水坝和幼崽的受养群体之间缺乏差异表明。此外,饲养标准幼崽的富水母鼠的母体库最少(嗅探时间最长,巢质量最低),而幼崽在MWM中的空间学习能力下降。尽管如此,生殖前母体的富集仍会影响神经营养模式,富集的水坝表达的额叶BDNF水平升高(不论寄养幼崽的种类如何),其后代表达的海马BDNF水平升高。本研究结果启发了早期母幼仔互动对影响孕产妇保健和后代表型的至关重要性,而丰富的大坝标准幼仔夫妇则导致了最适应不良的遭遇。因此,我们的研究认为,母鼠之间的双向相互作用能够深深地塑造后代表型。

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