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首页> 外文期刊>The Plant Cell >AUXIN RESPONSE FACTOR8 Regulates Arabidopsis Petal Growth by Interacting with the bHLH Transcription Factor BIGPETALp
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AUXIN RESPONSE FACTOR8 Regulates Arabidopsis Petal Growth by Interacting with the bHLH Transcription Factor BIGPETALp

机译:AUXIN响应因子8通过与bHLH转录因子BIGPETALp相互作用来调节拟南芥的花瓣生长

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Plant organ growth and final size are determined by coordinated cell proliferation and expansion. The BIGPETALp (BPEp) basic helix-loop-helix (bHLH) transcription factor was shown to limit Arabidopsis thaliana petal growth by influencing cell expansion. We demonstrate here that BPEp interacts with AUXIN RESPONSE FACTOR8 (ARF8) to affect petal growth. This interaction is mediated through the BPEp C-terminal domain (SDBPEp) and the C-terminal domain of ARF8. Site-directed mutagenesis identified an amino acid consensus motif in SDBPEp that is critical for mediating BPEp-ARF8 interaction. This motif shares sequence similarity with motif III of ARF and AUXIN/INDOLE-3-ACETIC ACID proteins. Petals of arf8 mutants are significantly larger than those of the wild type due to increased cell number and increased cell expansion. bpe arf8 double mutant analyses show that during early petal development stages, ARF8 and BPEp work synergistically to limit mitotic growth. During late stages, ARF8 and BPEp interact to limit cell expansion. The alterations in cell division and cell expansion observed in arf8 and/or bpe mutants are associated with a change in expression of early auxin-responsive genes. The data provide evidence of an interaction between an ARF and a bHLH transcription factor and of its biological significance in regulating petal growth, with local auxin levels likely influencing such a biological function.
机译:植物器官的生长和最终大小取决于协调的细胞增殖和扩增。 BIGPETALp(BPEp)基本螺旋-环-螺旋(bHLH)转录因子显示通过影响细胞扩增来限制拟南芥花瓣的生长。我们在这里证明BPEp与AUXIN响应因子8(ARF8)相互作用以影响花瓣的生长。这种相互作用是通过APE8的BPEp C末端结构域(SDBPEp)和C末端结构域介导的。定点诱变确定了SDBPEp中的氨基酸共有基序,这对介导BPEp-ARF8相互作用至关重要。该基序与ARF和AUXIN / INDOLE-3-ACETIC蛋白质的基序III共享序列相似性。由于细胞数量增加和细胞扩增增加,arf8突变体的花瓣明显大于野生型。 bpe arf8双突变体分析表明,在花瓣发育早期,ARF8和BPEp协同作用以限制有丝分裂的生长。在晚期阶段,ARF8和BPEp相互作用以限制细胞扩增。在arf8和/或bpe突变体中观察到的细胞分裂和细胞扩增变化与早期生长素应答基因的表达变化有关。数据提供了ARF和bHLH转录因子之间的相互作用及其在调节花瓣生长中的生物学意义的证据,而局部生长素水平可能会影响这种生物学功能。

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