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Repression of miR156 by miR159 Regulates the Timing of the Juvenile-to-Adult Transition in Arabidopsis

生物 拟南芥 心理压抑 表型 拟南芥 细胞生物学 开枪 MYB公司 转录因子 营养繁殖 少年 基因 小RNA 下调和上调 植物 遗传学 基因表达 突变体
作者
Changkui Guo,Yunmin Xu,Min Shi,Yongmin Lai,Xi Wu,Huasen Wang,Zhujun Zhu,R. Scott Poethig,Gang Wu
出处
期刊:The Plant Cell [Oxford University Press]
卷期号:29 (6): 1293-1304 被引量:170
标识
DOI:10.1105/tpc.16.00975
摘要

Temporally regulated microRNAs have been identified as master regulators of developmental timing in both animals and plants. In plants, vegetative development is regulated by a temporal decrease in miR156 level, but how this decreased expression is initiated and then maintained during shoot development remains elusive. Here, we show that miR159 is required for the correct timing of vegetative development in Arabidopsis thaliana Loss of miR159 increases miR156 level throughout shoot development and delays vegetative development, whereas overexpression of miR159 slightly accelerated vegetative development. The repression of miR156 by miR159 is predominantly mediated by MYB33, an R2R3 MYB domain transcription factor targeted by miR159. Loss of MYB33 led to subtle precocious vegetative phase change phenotypes in spite of the significant downregulation of miR156. MYB33 simultaneously promotes the transcription of MIR156A and MIR156C, as well as their target, SPL9, by directly binding to the promoters of these three genes. Rather than acting as major players in vegetative phase change in Arabidopsis, our results suggest that miR159 and MYB33 function as modifiers of vegetative phase change; i.e., miR159 facilitates vegetative phase change by repressing MYB33 expression, thus preventing MYB33 from hyperactivating miR156 expression throughout shoot development to ensure correct timing of the juvenile-to-adult transition in Arabidopsis.
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