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首页> 外文期刊>Journal of Botany >Experimental Treatment with a Hypomethylating Agent Alters Life History Traits and Fitness in Brassica rapa
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Experimental Treatment with a Hypomethylating Agent Alters Life History Traits and Fitness in Brassica rapa

机译:用次甲基化剂进行的实验处理改变了甘蓝型油菜的生活史特征和健康状况

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Epigenetic modifications to DNA can be inherited and may play a key role in evolution, with epigenetic influences on life history traits such as the timing of germination and flowering thought to be particularly important in plants. However, few studies have examined the effects of epigenetic modifications through experimental alteration of the methylome under differential growth conditions. In this study, we chemically induced global DNA hypomethylation using 5-azacytidine in three Brassica rapa plant populations differing in life history characteristics and under differing photoperiod treatments. We found that our 5-azacytidine treatment affected the timing of germination and that this effect differed across populations, with the treatment delaying germination in B. rapa Fast Plants, which have been artificially selected for rapid cycling, but accelerating germination in biennials. Rapid cycling B. rapa plants also were smaller and had lower reproductive fitness under the experimental demethylation treatment. There was no main effect of demethylation or photoperiod on flowering time, but the interaction was marginally significant, indicating that demethylation effects on flowering time depend on photoperiod. These results demonstrate that epigenetic modifications can influence phenotypic traits in ways that are dependent on genetic identity, life history, and light availability.
机译:DNA的表观遗传修饰可以被继承,并可能在进化中发挥关键作用,而表观遗传对生命历史特征(如发芽时间和开花时间)的影响在植物中尤为重要。然而,很少有研究通过在不同的生长条件下对甲基化组进行实验性改变来检验表观遗传修饰的影响。在这项研究中,我们使用5-氮杂胞苷在生命周期特征不同和光周期处理不同的三个甘蓝型油菜植物群中化学诱导了全局DNA低甲基化。我们发现我们的5-氮杂胞苷处理会影响发芽的时间,并且这种影响在不同种群之间有所不同,该处理方法会延迟B. rapa Fast Plants的发芽,后者已被人工选择用于快速循环,但可加速双年期发芽。在实验去甲基化处理下,快速循环的B. rapa植物也较小,生殖适应性较低。脱甲基化或光周期对开花时间没有主要影响,但相互作用很小,表明脱甲基化对开花时间的影响取决于光周期。这些结果表明,表观遗传修饰可以以依赖于遗传特性,生活史和光照的方式影响表型性状。

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