Plant Signal Behav. 2013 Oct;8(10):doi: 10.4161/psb.26758. doi: 10.4161/psb.26758.
UV-B radiation elicits physiological and developmental changes in plants. In this work, to characterize the mechanisms of gene regulation by UV-B radiation, the global miRNA expression profiles in juvenile maize leaves were compared under control conditions in the absence of UV-B and after an 8 h-UV-B treatment similar to ambient UV-B levels using small RNA microarrays. Seventeen miRNA s were identified that were differentially expressed in response to UV-B. In parallel, the expression of putative mRNA targets was examined in mRNA microarrays using the same RNA samples used for the small RNA analysis. In general, there is a strong negative correlation to the miRNA expression. Thus, post-transcriptional regulation is an important step in gene expression by UV-B radiation in maize.
UV-B 辐射会引起植物的生理和发育变化。在这项工作中,为了研究 UV-B 辐射调控基因的机制,我们利用 miRNA 微阵列比较了在无 UV-B 条件下和类似于环境 UV-B 水平的 8 小时 UV-B 处理后,幼嫩玉米叶片中的全局 miRNA 表达谱。有 17 个 miRNA 被鉴定为对 UV-B 有差异表达。同时,使用相同的 RNA 样本,在 mRNA 微阵列上检测了假定的 mRNA 靶标表达。总的来说,miRNA 的表达与靶标 mRNA 的表达呈强烈的负相关。因此,在玉米中,UV-B 辐射诱导的基因表达的一个重要步骤是转录后调控。