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Effects of temperature and salinity stress on DNA methylation in a highly invasive marine invertebrate the colonial ascidian Didemnum vexillum

机译:温度和盐分胁迫对高侵害性海洋无脊椎动物殖民地海藻Didemnum vexillum中DNA甲基化的影响

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摘要

Environmentally induced epigenetic changes may contribute to phenotypic plasticity, increase adaptive potential in changing environments, and play a key role in the establishment and spread of invasive species in new habitats. In this study, we used methylation-sensitive amplified polymorphism (MSAP) to assess environmentally induced DNA methylation changes in a globally invasive clonal ascidian, Didemnum vexillum. We tested the effect of increasing temperature (19, 25 and 27 °C) and decreasing salinity (34, 32, 30, 28 and 26 practical salinity units (PSU)) on global DNA methylation, growth and survival rates. Exposure to 27 °C resulted in significant changes in DNA methylation over time. Growth also decreased in colonies exposed to high temperatures, suggesting they were under thermal stress. In contrast, no differences in growth nor DNA methylation patterns were observed in colonies exposed to a decreasing salinity gradient, potentially due to prior adaptation. The results of this study show that environmental stress can induce significant global DNA methylation changes in an invasive marine invertebrate on very rapid timescales, and that this response varies depending on the type, magnitude, and duration of the stressor. Changes in genomic DNA methylation and the rate of growth may act to ‘buy survival time’ under stressful conditions, expanding the distribution limits of this globally invasive species.
机译:环境诱导的表观遗传变化可能有助于表型可塑性,增加环境变化中的适应能力,并在新栖息地的入侵物种的建立和传播中发挥关键作用。在这项研究中,我们使用了甲基化敏感的扩增多态性(MSAP)来评估环境诱导的全球入侵性克隆性海藻Didemnum vexillum中的DNA甲基化变化。我们测试了温度升高(19、25和27°C)和盐度降低(34、32、30、28和26实际盐度单位(PSU))对全球DNA甲基化,生长和存活率的影响。暴露于27°C会导致DNA甲基化随时间发生显着变化。暴露于高温的菌落的生长也降低,表明它们处于热胁迫下。相反,在盐度梯度降低的菌落中未观察到生长或DNA甲基化模式的差异,这可能是由于先前的适应。这项研究的结果表明,环境压力可以在非常快的时间范围内在入侵性无脊椎动物中引起显着的全球DNA甲基化变化,并且这种响应取决于压力源的类型,大小和持续时间而变化。基因组DNA甲基化和增长率的变化可能会在压力条件下起到“购买生存时间”的作用,从而扩大了这种全球入侵物种的分布范围。

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