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Experimental DNA Demethylation Associates with Changes in Growth and Gene Expression of Oak Tree Seedlings

机译:实验性DNA去甲基化与橡树幼苗生长和基因表达的变化相关

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摘要

Epigenetic modifications such as DNA methylation, where methyl groups are added to cytosine base pairs, have the potential to impact phenotypic variation and gene expression, and could influence plant response to changing environments. One way to test this impact is through the application of chemical demethylation agents, such as 5-Azacytidine, which inhibit DNA methylation and lead to a partial reduction in DNA methylation across the genome. In this study, we treated 5-month-old seedlings of the tree, , with foliar application of 5-Azacytidine to test whether a reduction in genome-wide methylation would cause differential gene expression and change phenotypic development. First, we demonstrate that demethylation treatment led to 3–6% absolute reductions and 6.7–43.2% relative reductions in genome-wide methylation across CG, CHG, and CHH sequence contexts, with CHH showing the strongest relative reduction. Seedlings treated with 5-Azacytidine showed a substantial reduction in new growth, which was less than half that of control seedlings. We tested whether this result could be due to impact of the treatment on the soil microbiome and found minimal differences in the soil microbiome between two groups, although with limited sample size. We found no significant differences in leaf fluctuating asymmetry ( , deviations from bilateral symmetry), which has been found in other studies. Nonetheless, treated seedlings showed differential expression of a total of 23 genes. Overall, this study provides initial evidence that DNA methylation is involved in gene expression and phenotypic variation in seedlings and suggests that removal of DNA methylation affects plant development.
机译:表观遗传修饰(例如DNA甲基化)将甲基添加到胞嘧啶碱基对中,可能会影响表型变异和基因表达,并可能影响植物对环境变化的反应。测试这种影响的一种方法是通过使用化学脱甲基剂,例如5-氮杂胞苷,它们会抑制DNA甲基化并导致整个基因组中DNA甲基化的部分减少。在这项研究中,我们用叶氮5-氮杂胞苷处理了5个月大的树苗,以测试全基因组甲基化水平的降低是否会引起差异基因表达并改变表型发育。首先,我们证明了去甲基化处理在CG,CHG和CHH序列范围内导致全基因组甲基化的绝对减少3–6%,相对减少6.7–43.2%,其中CHH表现出最大的相对减少。用5-氮杂胞苷处理的幼苗显示出新生长的显着减少,这少于对照幼苗的一半。我们测试了这个结果是否可能是由于处理对土壤微生物组的影响,尽管样本量有限,但两组之间的土壤微生物组差异却很小。我们发现叶片波动不对称性(与双侧对称性的偏差)没有显着差异,这在其他研究中已经发现。然而,处理过的幼苗显示出总共23个基因的差异表达。总的来说,这项研究提供了DNA甲基化参与幼苗的基因表达和表型变异的初步证据,并表明DNA甲基化的去除会影响植物的发育。

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