Department of Biological Sciences; Texas Tech University; Lubbock, TX USA.
Plant Signal Behav. 2013 Jun;8(6):e24563. doi: 10.4161/psb.24563. Epub 2013 Apr 19.
Plant microRNAs (miRNAs) are important regulators of development and stress responses and are oftentimes under transcriptional regulation by stresses and plant hormones. We recently showed that polycistronic MIR842 and MIR846 are expressed from the same primary transcript which is subject to alternative splicing. ABA treatment affects the alternative splicing of the primary cistronic transcript which results in differential expression of the two miRNAs that are predicted to target the same family of jacalin lectin genes. One variant of miR846 in roots can direct the cleavage of AT5G28520, which is also highly upregulated by ABA in roots. In this addendum, we present additional results further supporting the regulation of AT5G28520 by MIR846 using a T-DNA insertion line mapping upstream of MIR842 and MIR846. We also show that AT5G28520 is transcriptionally induced by ABA and this induction is subject to ABA signaling effectors in seedlings. Based on previous results and data presented in this paper, we propose an interaction loop between MIR846, AT5G28520 and ABA in roots.
植物 microRNAs (miRNAs) 是发育和应激反应的重要调节因子,通常受到应激和植物激素的转录调控。我们最近表明,多顺反子 MIR842 和 MIR846 由同一初级转录本表达,该转录本可进行可变剪接。ABA 处理会影响初级顺式转录本的可变剪接,从而导致两种 miRNA 的差异表达,这些 miRNA 被预测靶向同一家族的 jacalin 凝集素基因。根中的 miR846 的一个变体可以指导 AT5G28520 的切割,该基因在根中也被 ABA 高度上调。在本增刊中,我们使用 T-DNA 插入系映射 MIR842 和 MIR846 上游,提供了更多支持 MIR846 对 AT5G28520 进行调控的结果。我们还表明,AT5G28520 被 ABA 转录诱导,这种诱导受幼苗中 ABA 信号效应物的影响。基于先前的结果和本文提出的数据,我们提出了根中 MIR846、AT5G28520 和 ABA 之间的相互作用环。