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性腺转录组对饮食能量摄入的改变:感知生殖环境。

Gonadal transcriptome alterations in response to dietary energy intake: sensing the reproductive environment.

作者信息

Martin Bronwen, Pearson Michele, Brenneman Randall, Golden Erin, Wood William, Prabhu Vinayakumar, Becker Kevin G, Mattson Mark P, Maudsley Stuart

机构信息

Laboratory of Neurosciences, National Institute on Aging, Baltimore, Maryland, United States of America.

出版信息

PLoS One. 2009;4(1):e4146. doi: 10.1371/journal.pone.0004146. Epub 2009 Jan 7.

Abstract

Reproductive capacity and nutritional input are tightly linked and animals' specific responses to alterations in their physical environment and food availability are crucial to ensuring sustainability of that species. We have assessed how alterations in dietary energy intake (both reductions and excess), as well as in food availability, via intermittent fasting (IF), affect the gonadal transcriptome of both male and female rats. Starting at four months of age, male and female rats were subjected to a 20% or 40% caloric restriction (CR) dietary regime, every other day feeding (IF) or a high fat-high glucose (HFG) diet for six months. The transcriptional activity of the gonadal response to these variations in dietary energy intake was assessed at the individual gene level as well as at the parametric functional level. At the individual gene level, the females showed a higher degree of coherency in gonadal gene alterations to CR than the males. The gonadal transcriptional and hormonal response to IF was also significantly different between the male and female rats. The number of genes significantly regulated by IF in male animals was almost 5 times greater than in the females. These IF males also showed the highest testosterone to estrogen ratio in their plasma. Our data show that at the level of gonadal gene responses, the male rats on the IF regime adapt to their environment in a manner that is expected to increase the probability of eventual fertilization of females that the males predict are likely to be sub-fertile due to their perception of a food deficient environment.

摘要

生殖能力与营养输入紧密相连,动物对其物理环境和食物可获得性变化的特定反应对于确保该物种的可持续性至关重要。我们评估了通过间歇性禁食(IF)改变饮食能量摄入(包括减少和过量)以及食物可获得性如何影响雄性和雌性大鼠的性腺转录组。从四个月大开始,雄性和雌性大鼠接受20%或40%的热量限制(CR)饮食方案、隔日喂食(IF)或高脂肪高糖(HFG)饮食,为期六个月。在个体基因水平以及参数功能水平上评估性腺对这些饮食能量摄入变化的转录活性。在个体基因水平上,雌性大鼠性腺基因对CR的改变比雄性大鼠具有更高程度的一致性。雄性和雌性大鼠对IF的性腺转录和激素反应也存在显著差异。IF在雄性动物中显著调节的基因数量几乎是雌性动物的5倍。这些接受IF的雄性大鼠血浆中的睾酮与雌激素比值也最高。我们的数据表明,在性腺基因反应水平上,接受IF方案的雄性大鼠以一种预期会增加其预测可能因感知食物缺乏环境而生育力低下的雌性最终受精概率的方式适应其环境。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f6c7/2607546/23a1766c94a3/pone.0004146.g001.jpg

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