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DNA methylation and the promotion of flowering by vernalization

机译:DNA甲基化和春化促进开花

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摘要

We have tested the hypothesis that the promotion of flowering by prolonged exposure to low temperatures (vernalization) is mediated by DNA demethylation [Burn, J. E., Bagnall, D. J., Metzger, J. M., Dennis, E. S. & Peacock, W. J. (1993) Proc. Natl. Acad. Sci. USA 90, 287–291]. Arabidopsis plants that have reduced levels of DNA methylation because of the presence of a methyltransferase (METI) antisense gene flowered earlier than untransformed control plants, without the need for a cold treatment. Decreased DNA methylation mutants (ddm1) also flowered earlier than the wild-type progenitor under conditions where they respond to vernalization. We conclude that demethylation of DNA is sufficient to cause early flowering, and we have found that the promotion of flowering is directly proportional to the decrease in methylation in METI antisense lines. The early-flowering phenotype was inherited in sexual progeny, even when the antisense transgene had been lost by segregation. Methyltransferase antisense plants with low DNA methylation levels responded to a low-temperature treatment by flowering even earlier than their untreated siblings indicating that the promotion of flowering by cold and by demethylation was additive when neither treatment saturated the early-flowering response. As in untransformed control plants, the cold-induced early-flowering signal was reset in progeny of METI antisense plants. These observations suggest that the demethylation brought about by a METI antisense can account for some properties of vernalization, but not for the need for revernalization in each generation.
机译:我们已经检验了以下假设:通过长时间暴露于低温(春化作用)来促进开花是由DNA脱甲基作用所介导的(Burn,J.E.,Bagnall,D.J.,Metzger,J.M.,Dennis,E.S.&Peacock,W.J.(1993)Proc。 Natl。学院科学美国90,287-291]。由于存在甲基转移酶(METI)反义基因,因此比未转化的对照植物早开花的DNA甲基化水平降低的拟南芥植物,无需进行冷处理。减少的DNA甲基化突变体(ddm1)在对春化反应的条件下,也比野生型祖先开花得早。我们得出结论,DNA的去甲基化足以引起早期开花,并且我们发现开花的促进与METI反义品系中甲基化的减少成正比。即使在反义转基因因分离而丢失的情况下,早开花表型仍在性后代中遗传。具有低DNA甲基化水平的甲基转移酶反义植物对低温处理的反应甚至比未处理的兄弟姐妹更早开花,这表明当两种处理都未达到早开花反应的饱和度时,通过冷和去甲基化促进开花是加性的。与未转化的对照植物一样,METI反义植物的后代中重置了冷诱导的早开花信号。这些观察结果表明,由METI反义物引起的脱甲基化可以解释春化的一些特性,但不能解释每一代都需要进行春化。

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