MORF9‐dependent specific plastid RNA editing inhibits root growth under sugar starvation in Arabidopsis

RNA编辑 拟南芥 质体 NdhF 核糖核酸 生物 抄写(语言学) 细胞生物学 基因 生物化学 叶绿体 突变体 语言学 哲学 叶绿体DNA
作者
Yakun Xie,Jinfa Yu,Faan Tian,Xue Li,Xinyan Chen,Yanyun Li,Binghua Wu,Ying Miao
出处
期刊:Plant Cell and Environment [Wiley]
卷期号:47 (6): 1921-1940 被引量:2
标识
DOI:10.1111/pce.14856
摘要

Multiple organellar RNA editing factor (MORF) complex was shown to be highly associated with C-to-U RNA editing of vascular plant editosome. However, mechanisms by which MORF9-dependent plastid RNA editing controls plant development and responses to environmental alteration remain obscure. In this study, we found that loss of MORF9 function impaired PSII efficiency, NDH activity, and carbohydrate production, rapidly promoted nuclear gene expression including sucrose transporter and sugar/energy responsive genes, and attenuated root growth under sugar starvation conditions. Sugar repletion increased MORF9 and MORF2 expression in wild-type seedlings and reduced RNA editing of matK-706, accD-794, ndhD-383 and ndhF-290 in the morf9 mutant. RNA editing efficiency of ndhD-383 and ndhF-290 sites was diminished in the gin2/morf9 double mutants, and that of matK-706, accD-794, ndhD-383 and ndhF-290 sites were significantly diminished in the snrk1/morf9 double mutants. In contrast, overexpressing HXK1 or SnRK1 promoted RNA editing rate of matK-706, accD-794, ndhD-383 and ndhF-290 in leaves of morf9 mutants, suggesting that HXK1 partially impacts MORF9 mediated ndhD-383 and ndhF-290 editing, while SnRK1 may only affect MORF9-mediated ndhF-290 site editing. Collectively, these findings suggest that sugar and/or its intermediary metabolites impair MORF9-dependent plastid RNA editing resulting in derangements of plant root development.
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