生长素
生物
细胞生物学
拟南芥
转录因子
减压
植物激素
形态发生
抑制因子
双分子荧光互补
泛素连接酶
泛素
突变体
遗传学
基因表达
心理压抑
基因
作者
Sara Simonini,Joyita Deb,Laila Moubayidin,Pauline Stephenson,Manoj K. Valluru,Alejandra Freire Rios,Karim Sorefan,Dolf Weijers,Jiřı́ Friml,Lars Østergaard
出处
期刊:Genes & Development
[Cold Spring Harbor Laboratory Press]
日期:2016-10-15
卷期号:30 (20): 2286-2296
被引量:157
标识
DOI:10.1101/gad.285361.116
摘要
Tissue patterning in multicellular organisms is the output of precise spatio-temporal regulation of gene expression coupled with changes in hormone dynamics. In plants, the hormone auxin regulates growth and development at every stage of a plant's life cycle. Auxin signaling occurs through binding of the auxin molecule to a TIR1/AFB F-box ubiquitin ligase, allowing interaction with Aux/IAA transcriptional repressor proteins. These are subsequently ubiquitinated and degraded via the 26S proteasome, leading to derepression of auxin response factors (ARFs). How auxin is able to elicit such a diverse range of developmental responses through a single signaling module has not yet been resolved. Here we present an alternative auxin-sensing mechanism in which the ARF ARF3/ETTIN controls gene expression through interactions with process-specific transcription factors. This noncanonical hormone-sensing mechanism exhibits strong preference for the naturally occurring auxin indole 3-acetic acid (IAA) and is important for coordinating growth and patterning in diverse developmental contexts such as gynoecium morphogenesis, lateral root emergence, ovule development, and primary branch formation. Disrupting this IAA-sensing ability induces morphological aberrations with consequences for plant fitness. Therefore, our findings introduce a novel transcription factor-based mechanism of hormone perception in plants.
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