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Developmental genetic and environmental variations of global DNA methylation in the first leaves emerging from the shoot apical meristem in poplar trees

机译:杨树茎尖分生组织出现的第一片叶子中全球DNA甲基化的发育遗传和环境变化

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摘要

In the context of climate changes, clarifying the causes underlying tree phenotypic plasticity and adaptation is crucial. Studies suggest a role of epigenetic mechanisms in response to external stimuli, raising the question whether such processes can promote acclimation of trees exposed to adverse climate conditions. Recently, we revealed an environmental epigenetic footprint in the shoot apical meristem (SAM) which could partially be transmitted mitotically, for several months, up until the winter-dormant bud in field conditions. Here, we extended our previous analysis to the leaves of the same clones. We aimed at estimating the range of developmentally, genetically, and environmentally induced variations on DNA methylation. We showed that only the first leaves emerging from the SAM displayed variations of DNA methylation under changing water conditions. We also found that these variations are genotype- and pedoclimatic site-dependent. Altogether, our data raised questions and perspectives on the direct acquisition, the maintenance of environmentally induced DNA methylation changes, and their mitotic transmission from the SAM to the first emerging leaves.
机译:在气候变化的背景下,弄清树木表型可塑性和适应性的根本原因至关重要。研究表明表观遗传机制在响应外部刺激中的作用,引发了这样一个问题,即这种过程是否可以促进暴露于不利气候条件的树木的适应性。最近,我们揭示了芽顶分生组织(SAM)中的环境表观遗传足迹,该现象可以部分有丝分裂地传播,持续数月,直到田间条件下的冬季休眠芽为止。在这里,我们将先前的分析扩展到相同克隆的叶子。我们旨在评估DNA甲基化在发育,遗传和环境上引起的变异的范围。我们显示,在不断变化的水质条件下,只有从SAM出来的第一片叶子显示出DNA甲基化的变化。我们还发现,这些变异是基因型和古气候位点依赖性的。总而言之,我们的数据对直接获取,维持环境诱导的DNA甲基化变化以及它们从SAM到第一个新兴叶片的有丝分裂传递提出了疑问和观点。

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