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动态m6A mRNA甲基化揭示了猕猴桃中AcALKBH10参与成熟相关品质调控。

Dynamic m6A mRNA methylation reveals the involvement of AcALKBH10 in ripening-related quality regulation in kiwifruit.

作者信息

Su Dan, Shu Peng, Hu Nan, Chen Yuan, Wu Yi, Deng Heng, Du Xiaofei, Zhang Xumeng, Wang Ruochen, Li Huajia, Zeng Yunliu, Li Dawei, Xie Yue, Li Mingzhang, Hong Yiguo, Liu Kaidong, Liu Mingchun

机构信息

Key Laboratory of Bio-resource and Eco-environment of Ministry of Education, College of Life Sciences, Sichuan University, Chengdu, 610065, Sichuan, China.

Clinical Medical Research Center, Xinqiao Hospital, Army Medical University, Chongqing, 400037, China.

出版信息

New Phytol. 2024 Sep;243(6):2265-2278. doi: 10.1111/nph.20008. Epub 2024 Jul 26.

DOI:10.1111/nph.20008
PMID:39056285
Abstract

Kiwifruit ripening is a complex and highly coordinated process that occurs in conjunction with the formation of fruit edible quality. The significance of epigenetic changes, particularly the impact of N6-methyladenosine (m6A) RNA modification on fruit ripening and quality formation, has been largely overlooked. We monitored m6A levels and gene expression changes in kiwifruit at four different stages using LC-MS/MS, MeRIP, RNA-seq, and validated the function of AcALKBH10 through heterologous transgenic expression in tomato. Notable m6A modifications occurred predominantly at the stop codons and the 3' UTRs and exhibited a gradual reduction in m6A levels during the fruit ripening process. Moreover, these m6A modifications in the aforementioned sites demonstrated a discernible inverse relationship with the levels of mRNA abundance throughout the ripening process, suggesting a repression effect of m6A modification in the modulation of kiwifruit ripening. We further demonstrated that AcALKBH10 rather than AcECT9 predominantly regulates m6A levels in ripening-related genes, thereby exerting the regulatory control over the ripening process and the accumulation of soluble sugars and organic acids, ultimately influencing fruit ripening and quality formation. In conclusion, our findings illuminate the epi-regulatory mechanism involving m6A in kiwifruit ripening, offering a fresh perspective for cultivating high-quality kiwifruit with enhanced nutritional attributes.

摘要

猕猴桃成熟是一个复杂且高度协调的过程,与果实可食用品质的形成同时发生。表观遗传变化的重要性,尤其是N6-甲基腺苷(m6A)RNA修饰对果实成熟和品质形成的影响,在很大程度上被忽视了。我们使用LC-MS/MS、MeRIP、RNA-seq监测了猕猴桃四个不同阶段的m6A水平和基因表达变化,并通过在番茄中的异源转基因表达验证了AcALKBH10的功能。显著的m6A修饰主要发生在终止密码子和3' UTR处,并且在果实成熟过程中m6A水平逐渐降低。此外,上述位点的这些m6A修饰在整个成熟过程中与mRNA丰度水平呈现出明显的负相关关系,表明m6A修饰在调节猕猴桃成熟中具有抑制作用。我们进一步证明,在成熟相关基因中,主要是AcALKBH10而非AcECT9调节m6A水平,从而对成熟过程以及可溶性糖和有机酸的积累施加调控,最终影响果实成熟和品质形成。总之,我们的研究结果阐明了m6A参与猕猴桃成熟的表观调控机制,为培育具有更高营养特性的高品质猕猴桃提供了新的视角。

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