State Key Laboratory of Tree Genetics and Breeding, Nanjing Forestry University, Nanjing 210037, China.
Key Open Laboratory of Forest Genetics and Gene Engineering of National Forestry & Grassland Administration, Nanjing 210037, China.
Int J Mol Sci. 2024 Jul 22;25(14):7987. doi: 10.3390/ijms25147987.
-methyladenosine (mA) RNA modification is the most prevalent form of RNA methylation and plays a crucial role in plant development. However, our understanding of mA modification in Masson pine ( Lamb.) remains limited. In this study, a complete analysis of mA writers, erasers, and readers in Masson pine was performed, and 22 mA regulatory genes were identified in total, including 7 mA writers, 7 mA erases, and 8 readers. Phylogenetic analysis revealed that all mA regulators involved in Masson pine could be classified into three distinct groups based on their domains and motifs. The tissue expression analysis revealed that the mA regulatory gene may exert a significant influence on the development of reproductive organs and leaves in Masson pine. Moreover, the results from stress and hormone expression analysis indicated that the mA regulatory gene in Masson pine might be involved in drought stress response, ABA-signaling-pathway activation, as well as resistance to . This study provided valuable and anticipated insights into the regulatory genes of mA modification and their potential epigenetic regulatory mechanisms in Masson pine.
m6A 修饰是最普遍的 RNA 甲基化形式,在植物发育中起着关键作用。然而,我们对马尾松(Lamb.)中的 mA 修饰的理解仍然有限。在这项研究中,对马尾松中的 mA 写入器、擦除器和读取器进行了全面分析,总共鉴定出 22 个 mA 调控基因,包括 7 个 mA 写入器、7 个 mA 擦除器和 8 个读取器。系统发育分析表明,马尾松中所有参与的 mA 调节剂都可以根据它们的结构域和基序分为三个不同的组。组织表达分析表明,mA 调控基因可能对马尾松生殖器官和叶片的发育有重要影响。此外,胁迫和激素表达分析的结果表明,马尾松中的 mA 调控基因可能参与干旱胁迫响应、ABA 信号通路激活以及对 的抗性。这项研究为马尾松中 mA 修饰的调控基因及其潜在的表观遗传调控机制提供了有价值的预期见解。