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Adaptive plasticity and epigenetic variation in response to warming in an Alpine plant

机译:高山植物响应变暖的适应性可塑性和表观遗传变化

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摘要

Environmentally induced phenotypic plasticity may be a critical component of response to changing environments. We examined local differentiation and adaptive phenotypic plasticity in response to elevated temperature in half-sib lines collected across an elevation gradient for the alpine herb, Wahlenbergia ceracea. Using Amplified Fragment Length Polymorphism (AFLP), we found low but significant genetic differentiation between low- and high-elevation seedlings, and seedlings originating from low elevations grew faster and showed stronger temperature responses (more plasticity) than those from medium and high elevations. Furthermore, plasticity was more often adaptive for plants of low-elevation origin and maladaptive for plants of high elevation. With methylation sensitive-AFLP (MS-AFLP), we revealed an increase in epigenetic variation in response to temperature in low-elevation seedlings. Although we did not find significant direct correlations between MS-AFLP loci and phenotypes, our results demonstrate that adaptive plasticity in temperature response to warming varies over fine spatial scales and suggest the involvement of epigenetic mechanisms in this response.
机译:环境诱导的表型可塑性可能是对变化的环境做出反应的关键组成部分。我们检查了高山草药Wahlenbergia ceracea沿海拔梯度收集的半同胞系中温度升高引起的局部分化和适应性表型可塑性。使用扩增片段长度多态性(AFLP),我们发现低海拔和高海拔幼苗之间的遗传分化程度不高,但低海拔地区的幼苗比中高海拔地区的幼苗生长更快,并且显示出更强的温度响应(可塑性)。此外,可塑性通常更适合于低海拔起源的植物,而不适用于高海拔起源的植物。使用甲基化敏感性AFLP(MS-AFLP),我们揭示了低海拔幼苗中表观遗传变异对温度的响应增加。尽管我们没有发现MS-AFLP基因座与表型之间存在显着的直接相关性,但我们的研究结果表明,对温度变暖的适应性可塑性在精细的空间尺度上变化,并表明表观遗传机制参与了这种反应。

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