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Nutrient- and other stress-responsive microRNAs in plants: Role for thiol-based redox signaling

机译:植物中营养和其他胁迫响应性microRNA:基于硫醇的氧化还原信号的作用

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摘要

Now it is well recognized that the microRNA (miRNA) expression is altered in response to internal (developmental or hormonal) or external stimuli such as biotic and abiotic stresses in plants. It is also known that several miR-NAs are induced in response to deficiency of specific nutrients within the plant or in the external sources, i.e., soilutrient media. For instance, P-deprivation induces miR399, S-deprivation induces miR395 and Cu-deprivation induces miR398, miR397 and miR408 in several plantspecies. Although the transcription factors (PHR1, SLIM1 and SPB7) that regulate these nutrient-deprivation inducible miRNAs have been identified but the upstream biochemical pathway that activates them is relatively unknown. In a recent study, we demonstrated for the first time that redox signaling plays a critical role in S-deprivation-inducible miR395 expression in Arabidopsis. In this short review, we draw additional hypotheses for the involvement of redox signaling and/or reactive oxygen species (ROS) signaling in inducing other nutrient or stress-responsive miRNAs in plants.
机译:现在人们已经认识到,microRNA(miRNA)的表达会响应内部(发育或激素)或外部刺激(例如植物中的生物和非生物胁迫)而发生变化。还已知响应于植物内或外部源(即土壤/营养介质)中特定养分的缺乏而诱导了几种miR-NA。例如,在几种植物中,P剥夺诱导miR399,S剥夺诱导miR395,Cu剥夺诱导miR398,miR397和miR408。尽管已经确定了调节这些营养物剥夺诱导型miRNA的转录因子(PHR1,SLIM1和SPB7),但是激活它们的上游生化途径还是相对未知的。在最近的研究中,我们首次证明了氧化还原信号在拟南芥中S剥夺诱导的miR395表达中起关键作用。在这篇简短的综述中,我们得出了氧化还原信号和/或活性氧(ROS)信号参与植物中其他营养或胁迫响应性miRNA的参与的其他假设。

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