首页> 美国卫生研究院文献>The Plant Cell >Failure of the Tomato Trans-Acting Short Interfering RNA Program to Regulate AUXIN RESPONSE FACTOR3 and ARF4 Underlies the Wiry Leaf Syndrome
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Failure of the Tomato Trans-Acting Short Interfering RNA Program to Regulate AUXIN RESPONSE FACTOR3 and ARF4 Underlies the Wiry Leaf Syndrome

机译:番茄反式作用的短干扰RNA程序未能调节AUXIN响应因子3和ARF4成为叶片综合症的基础

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摘要

Interfering with small RNA production is a common strategy of plant viruses. A unique class of small RNAs that require microRNA and short interfering () biogenesis for their production is termed trans-acting short interfering RNAs (). Tomato (Solanum lycopersicum) wiry mutants represent a class of phenotype that mimics viral infection symptoms, including shoestring leaves that lack leaf blade expansion. Here, we show that four WIRY genes are involved in biogenesis, and in their corresponding mutants, levels of that regulate AUXIN RESPONSE FACTOR3 (ARF3) and ARF4 are reduced, while levels of their target ARFs are elevated. Reducing activity of both ARF3 and ARF4 can rescue the wiry leaf lamina, and increased activity of either can phenocopy wiry leaves. Thus, a failure to negatively regulate these ARFs underlies tomato shoestring leaves. Overexpression of these ARFs in Arabidopsis thaliana, tobacco (Nicotiana tabacum), and potato (Solanum tuberosum) failed to produce wiry leaves, suggesting that the dramatic response in tomato is exceptional. As negative regulation of orthologs of these ARFs by is common to land plants, we propose that levels serve as universal sensors for interference with small RNA biogenesis, and changes in their levels direct species-specific responses.
机译:干扰小RNA的产生是植物病毒的常见策略。一类需要微小RNA和短干扰()生物发生才能产生的独特小RNA称为反式短干扰RNA()。番茄(Solanum lycopersicum)线状突变体代表一类表型,可模仿病毒感染症状,包括缺乏叶片扩张的鞋带叶。在这里,我们显示了四个WIRY基因参与了生物发生,并且在其相应的突变体中,调节AUXIN响应因子3(ARF3)和ARF4的水平降低了,而其目标ARF的水平却升高了。降低ARF3和ARF4的活性都可以挽救丝状叶片的薄层,并增加两种表型的丝状叶片的活性。因此,不能负调控这些ARFs成为番茄鞋带叶的基础。这些ARF在拟南芥,烟草(Nicotiana tabacum)和马铃薯(Solanum tuberosum)中的过表达不能产生叶片,这表明番茄的显着响应是异常的。由于这些ARF直向同源物的负调控是陆地植物常见的,我们建议将水平用作干扰小RNA生物发生的通用传感器,并且其水平的变化将指导物种特异性反应。

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