State Key Laboratory of Plant Genomics, National Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, China.
Plant Cell Environ. 2013 Dec;36(12):2207-18. doi: 10.1111/pce.12130. Epub 2013 May 30.
MicroRNA319 (miR319) family is one of the conserved microRNA (miRNA) families among diverse plant species. It has been reported that miR319 regulates plant development in dicotyledons, but little is known at present about its functions in monocotyledons. In rice (Oryza sativa L.), the MIR319 gene family comprises two members, Osa-MIR319a and Osa-MIR319b. Here, we report an expression pattern analysis and a functional characterization of the two Osa-MIR319 genes in rice. We found that overexpressing Osa-MIR319a and Osa-MIR319b in rice both resulted in wider leaf blades. Leaves of osa-miR319 overexpression transgenic plants showed an increased number of longitudinal small veins, which probably accounted for the increased leaf blade width. In addition, we observed that overexpressing osa-miR319 led to enhanced cold tolerance (4 °C) after chilling acclimation (12 °C) in transgenic rice seedlings. Notably, under both 4 and 12 °C low temperatures, Osa-MIR319a and Osa-MIR319b were down-regulated while the expression of miR319-targeted genes was induced. Furthermore, genetically down-regulating the expression of either of the two miR319-targeted genes, OsPCF5 and OsPCF8, in RNA interference (RNAi) plants also resulted in enhanced cold tolerance after chilling acclimation. Our findings in this study demonstrate that miR319 plays important roles in leaf morphogenesis and cold tolerance in rice.
miR319 家族是不同植物物种中保守的 microRNA (miRNA) 家族之一。已有报道称 miR319 调控双子叶植物的发育,但目前对单子叶植物中的功能知之甚少。在水稻(Oryza sativa L.)中,MIR319 基因家族由两个成员组成,Osa-MIR319a 和 Osa-MIR319b。在这里,我们报告了水稻中这两个 Osa-MIR319 基因的表达模式分析和功能特征。我们发现,在水稻中过表达 Osa-MIR319a 和 Osa-MIR319b 都会导致叶片变宽。过表达 miR319 的水稻叶片表现出纵向小脉数量增加,这可能是叶片变宽的原因。此外,我们观察到过表达 osa-miR319 可增强转基因水稻幼苗在冷驯化(12°C)后的耐冷性(4°C)。值得注意的是,在 4°C 和 12°C 两种低温下,Osa-MIR319a 和 Osa-MIR319b 的表达下调,而 miR319 靶向基因的表达被诱导。此外,在 RNA 干扰(RNAi)植物中遗传下调两个 miR319 靶向基因 OsPCF5 和 OsPCF8 中的任何一个的表达,也会导致冷驯化后耐冷性增强。本研究的结果表明,miR319 在水稻叶片形态发生和耐冷性中发挥重要作用。