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Chilling-induced DNA Demethylation is associated with the cold tolerance of Hevea brasiliensis

机译:低温诱导的DNA去甲基化与巴西橡胶树的耐寒性有关

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Low temperature influences the development and latex production of rubber trees (Hevea brasiliensis) when extension to suboptimal high-latitude areas. The successful extension of Hevea brasiliensis cultivation to high-latitude areas has long believed to benefit from the breeding of cold-tolerant cultivars. A puzzling incongruity is the variation in cold tolerance among the cultivated clones despite their similar genetic make-up. To investigate this, we first transferred cultivar Reyan 7–33-97 to short-term cold treatment, and showed that cold-related genes (such as HbICE1 and HbCBF2), cold-responsive (COR) genes, and DNA-methylation related genes (such as HbMET1) were induced by cold treatment. Furthermore, long-term cold treatment not only elevated the transcriptional activities of the HbICE1, HbCBF2, and HbMET, but also induced DNA demethylation of their promoters. Cold treatment increased the transcriptional activities of demethylation-related genes such as the HbDME, HbROS, and HbDML genes, but did not alter the promoter methylation status. Furthermore, the HbICE1 and HbMET promoters showed hypomethylation status in samples collected at the end of winter from 12 different cultivars grown in four geographical locations, but switched to hypermethylation status at the end of summer. Expression of COR was correlated with the low temperature. Given that little genetic diversity exists in the HbICE1 and HbMET promoters among different cultivars, the DNA demethylation induced by cold was highly correlated with low temperature, but not with the genetic backgrounds of cultivars. Cold-induced epigenetic modification might play an important role in cold tolerance of H. brasiliensis.
机译:当延伸到次优的高纬度地区时,低温会影响橡胶树(巴西橡胶树)的发育和乳胶生产。长期以来,人们一直认为巴西橡胶树栽培成功地扩展到高纬度地区受益于耐寒品种的育种。令人费解的不一致之处是尽管克隆的基因组成相似,但它们之间的耐寒性却存在差异。为了对此进行研究,我们首先将栽培品种Reyan 7–33-97转移到短期冷处理中,并显示了与冷相关的基因(例如HbICE1和HbCBF2),与冷相关的基因(COR)和与DNA甲基化相关的基因(例如HbMET1)是通过冷处理诱导的。此外,长期的冷处理不仅提高了HbICE1,HbCBF2和HbMET的转录活性,而且还诱导了其启动子的DNA脱甲基。冷处理增加了脱甲基化相关基因(如HbDME,HbROS和HbDML基因)的转录活性,但并未改变启动子的甲基化状态。此外,HbICE1和HbMET启动子在冬季末从四个地理位置生长的12个不​​同品种采集的样品中显示出低甲基化状态,但在夏季末转换为高甲基化状态。 COR的表达与低温相关。考虑到不同品种的HbICE1和HbMET启动子几乎没有遗传多样性,冷诱导的DNA去甲基化与低温高度相关,而与品种的遗传背景无关。低温诱导的表观遗传修饰可能在巴西利亚嗜热菌的耐寒性中起重要作用。

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