Perry Blair W, Armstrong Ellie E, Robbins Charles T, Jansen Heiko T, Kelley Joanna L
School of Biological Sciences, Washington State University, Pullman, WA 99164, USA.
School of the Environment, Washington State University, Pullman, WA 99164, USA.
Integr Comp Biol. 2022 Dec 30;62(6):1802-1811. doi: 10.1093/icb/icac093.
Hibernation in brown bears is an annual process involving multiple physiologically distinct seasons-hibernation, active, and hyperphagia. While recent studies have characterized broad patterns of differential gene regulation and isoform usage between hibernation and active seasons, patterns of gene and isoform expression during hyperphagia remain relatively poorly understood. The hyperphagia stage occurs between active and hibernation seasons and involves the accumulation of large fat reserves in preparation for hibernation. Here, we use time-series analyses of gene expression and isoform usage to interrogate transcriptomic regulation associated with all three seasons. We identify a large number of genes with significant differential isoform usage (DIU) across seasons and show that these patterns of isoform usage are largely tissue-specific. We also show that DIU and differential gene-level expression responses are generally non-overlapping, with only a small subset of multi-isoform genes showing evidence of both gene-level expression changes and changes in isoform usage across seasons. Additionally, we investigate nuanced regulation of candidate genes involved in the insulin signaling pathway and find evidence of hyperphagia-specific gene expression and isoform regulation that may enhance fat accumulation during hyperphagia. Our findings highlight the value of using temporal analyses of both gene- and isoform-level gene expression when interrogating complex physiological phenotypes and provide new insight into the mechanisms underlying seasonal changes in bear physiology.
棕熊的冬眠是一个年度过程,涉及多个生理上不同的季节——冬眠、活跃和暴食。虽然最近的研究已经描述了冬眠季节和活跃季节之间基因调控差异和异构体使用的广泛模式,但暴食期间基因和异构体表达的模式仍然相对了解较少。暴食阶段发生在活跃季节和冬眠季节之间,涉及大量脂肪储备的积累,为冬眠做准备。在这里,我们使用基因表达和异构体使用的时间序列分析来研究与所有三个季节相关的转录组调控。我们鉴定出大量在不同季节具有显著异构体使用差异(DIU)的基因,并表明这些异构体使用模式在很大程度上是组织特异性的。我们还表明,DIU和基因水平的差异表达反应通常不重叠,只有一小部分多异构体基因显示出基因水平表达变化和不同季节异构体使用变化的证据。此外,我们研究了胰岛素信号通路中候选基因的细微调控,并发现了暴食特异性基因表达和异构体调控的证据,这些调控可能会增强暴食期间的脂肪积累。我们的研究结果突出了在研究复杂生理表型时使用基因和异构体水平基因表达的时间分析的价值,并为熊生理季节性变化的潜在机制提供了新的见解。