Sieber Patrick, Wellmer Frank, Gheyselinck Jacqueline, Riechmann José Luis, Meyerowitz Elliot M
Division of Biology, California Institute of Technology, Pasadena, CA 91125, USA.
Development. 2007 Mar;134(6):1051-60. doi: 10.1242/dev.02817. Epub 2007 Feb 7.
In plants, members of microRNA (miRNA) families are often predicted to target the same or overlapping sets of genes. It has thus been hypothesized that these miRNAs may act in a functionally redundant manner. This hypothesis is tested here by studying the effects of elimination of all three members of the MIR164 family from Arabidopsis. It was found that a loss of miR164 activity leads to a severe disruption of shoot development, in contrast to the effect of mutation in any single MIR164 gene. This indicates that these miRNAs are indeed functionally redundant. Differences in the expression patterns of the individual MIR164 genes imply, however, that redundancy among them is not complete, and that these miRNAs show functional specialization. Furthermore, the results of molecular and genetic analyses of miR164-mediated target regulation indicate that miR164 miRNAs function to control the transcript levels, as well as the expression patterns, of their targets, suggesting that they might contribute to developmental robustness. For two of the miR164 targets, namely CUP-SHAPED COTYLEDON1 (CUC1) and CUC2, we provide evidence for their involvement in the regulation of growth and show that their derepression in miR164 loss-of-function mutants is likely to account for most of the mutant phenotype.
在植物中,常常预测微小RNA(miRNA)家族的成员靶向相同或重叠的基因集。因此,有人提出这些miRNA可能以功能冗余的方式发挥作用。本文通过研究从拟南芥中去除MIR164家族的所有三个成员的影响来验证这一假设。研究发现,与任何单个MIR164基因突变的影响相反,miR164活性的丧失会导致茎尖发育的严重破坏。这表明这些miRNA确实在功能上是冗余的。然而,各个MIR164基因表达模式的差异意味着它们之间的冗余并不完全,并且这些miRNA表现出功能特化。此外,对miR164介导的靶标调控的分子和遗传分析结果表明,miR164 miRNA的功能是控制其靶标的转录水平以及表达模式,这表明它们可能有助于发育稳健性。对于miR164的两个靶标,即杯状子叶1(CUC1)和CUC2,我们提供了它们参与生长调控的证据,并表明它们在miR164功能丧失突变体中的去抑制可能是导致大多数突变体表型的原因。