模拟细菌感染诱导引进和本地家雀DNA甲基化的不同变化

IF 1.8 3区 生物学 Q1 ORNITHOLOGY
Aaron W. Schrey, Oluremi Ige, Daniella Ray, M. Ellesse Lauer, Danielle Dawkins, Natalie Schrey, Elizabeth Sheldon, Kailey McCain, J. Dylan Maddox, Kevin D. Kohl, Mark Ravinet, J. Briskie, Kate Buchanan, Roi Dor, Henrik Jensen, Blanca Jimeno, Kimberley Mathot, Phoung Ho, Melissah Rowe, Jorgen Soraker, Massamba Thiam, Vu Tien Thinh, Cedric Zimmer, Lynn B. Martin
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引用次数: 0

摘要

DNA甲基化可以随时间在个体内发生变化并调节基因表达,对鸟类生物学的许多方面都很重要。这在禽类对与引进有关的各种压力源(如感染和环境变化)的反应中尤为重要。然而,由于表观遗传研究的有限性,目前尚不清楚本地和引进鸟类种群对压力源的表观遗传反应是否不同,以及DNA甲基化如何有助于非本地种群的成功。为了解决这一知识差距,我们使用epiRADseq研究了模拟细菌感染前和8小时后家养麻雀Passer驯化个体DNA甲基化的变化。我们比较了野生捕获的来自引进种群的家麻雀和来自本地种群的家麻雀,评估了甲基化变化的基因组位置的数量、这些变化的幅度以及个体之间的差异。我们的研究结果表明,与来自本地种群的个体相比,来自引入种群的个体在DNA甲基化方面经历了更广泛的变化,具有更大的幅度和更高的方差。这些发现表明,DNA甲基化在个体对感染的反应中起着重要作用。他们还指出,与本地种群相比,来自引进种群的个体可能表现出不同的表观遗传反应,这与表观遗传缓冲的概念是一致的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Simulated bacterial infection induces different changes in DNA methylation between introduced and native house sparrows Passer domesticus

Simulated bacterial infection induces different changes in DNA methylation between introduced and native house sparrows Passer domesticus

Simulated bacterial infection induces different changes in DNA methylation between introduced and native house sparrows Passer domesticus

Simulated bacterial infection induces different changes in DNA methylation between introduced and native house sparrows Passer domesticus

Simulated bacterial infection induces different changes in DNA methylation between introduced and native house sparrows Passer domesticus

DNA methylation, which can change within-individuals over time and regulate gene expression, is important to many aspects of avian biology. It is particularly important in avian responses to various stressors associated with introductions, such as infection and environmental changes. However, it remains unclear whether native and introduced bird populations differ in their epigenetic responses to stressors, and how DNA methylation may contribute to the success of non-native populations because of the limited availability of epigenetic studies. To address this knowledge gap, we used epiRADseq to investigate changes in DNA methylation within-individual house sparrows Passer domesticus prior to and eight hours after a simulated bacterial infection. We compare wild-caught house sparrows from introduced populations with those from native populations, assessing the number of genomic locations that exhibit changes in methylation, the magnitude of those changes, and the variance among individuals. Our results show that individuals from introduced populations experience more widespread changes in DNA methylation, with greater magnitude and higher variance, compared to their counterparts from native populations. These findings suggest that DNA methylation plays a significant role in an individual's response to infection. They also indicate that individuals from introduced populations may exhibit distinct epigenetic responses compared to their native counterparts, consistent with the concept of epigenetic buffering.

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来源期刊
Journal of Avian Biology
Journal of Avian Biology 生物-鸟类学
CiteScore
3.70
自引率
0.00%
发文量
56
审稿时长
3 months
期刊介绍: Journal of Avian Biology publishes empirical and theoretical research in all areas of ornithology, with an emphasis on behavioural ecology, evolution and conservation.
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