生物
细胞生物学
突变体
自噬
N6-甲基腺苷
转录因子
抄写(语言学)
衰老
RNA结合蛋白
遗传学
翻译(生物学)
核糖核酸
拟南芥
甲基化
同源(生物学)
叶绿体
袋3
平动调节
基因
RNA识别基序
基因表达调控
蛋白质结构域
功能(生物学)
转录调控
遗传筛选
DNA甲基化
长寿
蛋白质生物合成
植物
作者
Mengzhuo Li,Xingguan Zhang,Xiuyang Si,Yue Sun,Changtian Pan,Gang Lu
出处
期刊:The Plant Cell
[Oxford University Press]
日期:2026-03-01
卷期号:38 (3)
标识
DOI:10.1093/plcell/koag064
摘要
N 6-methyladenosine (m6A) is the most abundant internal modification in eukaryotic mRNA, with essential roles in plant development and stress adaptation. However, its regulatory function in leaf senescence remains poorly defined. Here, we demonstrate that tomato (Solanum lycopersicum) leaf aging is accompanied by dynamic changes in m6A levels and that YT521-B homology (YTH) domain protein 3 (SlYTH3) acts as an m6A reader to preserve leaf longevity by recognizing m6A-modified transcripts of HOMEODOMAIN-LEUCINE ZIPPER IV 2 (SlHDZIV2). Loss of SlYTH3 accelerates dark-induced leaf senescence, leading to chloroplast disruption, photosynthetic impairment, and premature activation of senescence-associated genes. Mechanistically, SlYTH3 binds to the canonical m6A motif (RRACH) within SlHDZIV2 mRNA, enhancing both its transcript stability and translation efficiency. Genetic analyses confirmed that SlHDZIV2 functions downstream of SlYTH3. Furthermore, SlHDZIV2 directly activates transcription of autophagy-related 5 (SlATG5), thereby sustaining autophagic activity during senescence. Disruption of this regulatory cascade in slhdziv2 or slatg5 mutants results in precocious leaf senescence. Together, these findings unveil an m6A-dependent regulatory module, SlYTH3-SlHDZIV2-SlATG5 that integrates RNA methylation and autophagy to modulate leaf senescence, providing mechanistic insights into epitranscriptomic control of plant aging.
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