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低温介导的苹果(Malus x domestica Borkh.)休眠及其解除过程中的DNA甲基化变化揭示了表观遗传调控在冬季休眠中的重要性。

Chilling-Mediated DNA Methylation Changes during Dormancy and Its Release Reveal the Importance of Epigenetic Regulation during Winter Dormancy in Apple (Malus x domestica Borkh.).

作者信息

Kumar Gulshan, Rattan Usha Kumari, Singh Anil Kumar

机构信息

Department of Biotechnology, CSIR-Institute of Himalayan Bioresource Technology, Palampur 176061, HP, India.

Academy of Scientific and Innovative Research, New Delhi, India.

出版信息

PLoS One. 2016 Feb 22;11(2):e0149934. doi: 10.1371/journal.pone.0149934. eCollection 2016.

Abstract

Winter dormancy is a well known mechanism adopted by temperate plants, to mitigate the chilling temperature of winters. However, acquisition of sufficient chilling during winter dormancy ensures the normal phenological traits in subsequent growing period. Thus, low temperature appears to play crucial roles in growth and development of temperate plants. Apple, being an important temperate fruit crop, also requires sufficient chilling to release winter dormancy and normal phenological traits, which are often associated with yield and quality of fruits. DNA cytosine methylation is one of the important epigenetic modifications which remarkably affect the gene expression during various developmental and adaptive processes. In present study, methylation sensitive amplified polymorphism was employed to assess the changes in cytosine methylation during dormancy, active growth and fruit set in apple, under differential chilling conditions. Under high chill conditions, total methylation was decreased from 27.2% in dormant bud to 21.0% in fruit set stage, while no significant reduction was found under low chill conditions. Moreover, the demethylation was found to be decreased, while methylation increased from dormant bud to fruit set stage under low chill as compared to high chill conditions. In addition, RNA-Seq analysis showed high expression of DNA methyltransferases and histone methyltransferases during dormancy and fruit set, and low expression of DNA glcosylases during active growth under low chill conditions, which was in accordance with changes in methylation patterns. The RNA-Seq data of 47 genes associated with MSAP fragments involved in cellular metabolism, stress response, antioxidant system and transcriptional regulation showed correlation between methylation and their expression. Similarly, bisulfite sequencing and qRT-PCR analysis of selected genes also showed correlation between gene body methylation and gene expression. Moreover, significant association between chilling and methylation changes was observed, which suggested that chilling acquisition during dormancy in apple is likely to affect the epigenetic regulation through DNA methylation.

摘要

冬季休眠是温带植物采用的一种众所周知的机制,用于减轻冬季的寒冷温度。然而,在冬季休眠期间获得足够的低温可确保后续生长阶段的正常物候特征。因此,低温似乎在温带植物的生长发育中起着关键作用。苹果作为一种重要的温带水果作物,也需要足够的低温来解除冬季休眠并表现出正常的物候特征,而这些通常与果实的产量和品质相关。DNA胞嘧啶甲基化是重要的表观遗传修饰之一,在各种发育和适应过程中显著影响基因表达。在本研究中,采用甲基化敏感扩增多态性技术来评估在不同低温条件下苹果休眠、活跃生长和坐果期间胞嘧啶甲基化的变化。在高冷条件下,总甲基化率从休眠芽中的27.2%降至坐果期的21.0%,而在低冷条件下未发现显著降低。此外,与高冷条件相比,在低冷条件下从休眠芽到坐果期去甲基化减少,而甲基化增加。此外,RNA测序分析表明,在低冷条件下,DNA甲基转移酶和组蛋白甲基转移酶在休眠和坐果期间高表达,而DNA糖基化酶在活跃生长期间低表达,这与甲基化模式的变化一致。与参与细胞代谢、应激反应、抗氧化系统和转录调控的MSAP片段相关的47个基因的RNA测序数据显示甲基化与其表达之间存在相关性。同样,对选定基因的亚硫酸氢盐测序和qRT-PCR分析也显示基因体甲基化与基因表达之间存在相关性。此外,观察到低温与甲基化变化之间存在显著关联,这表明苹果休眠期间的低温获取可能通过DNA甲基化影响表观遗传调控。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/40ec/4763039/0d807c83dec0/pone.0149934.g001.jpg

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