Zhang Jian-Feng, Yuan Li-Jie, Shao Yi, Du Wei, Yan Da-Wei, Lu Ying-Tang
Key Laboratory of MOE for Plant Developmental Biology, College of Life Science, Wuhan University, Wuhan, 430072, China.
Plant Cell Environ. 2008 Apr;31(4):562-74. doi: 10.1111/j.1365-3040.2008.01786.x. Epub 2008 Jan 17.
The phytohormone abscisic acid (ABA) regulates plant growth and development as well as stress tolerance. To gain more insights into ABA signalling, a population of chemical-inducible activation-tagged Arabidopsis mutants was screened on the basis of the ABA effect on the inhibition of seed germination. Two novel ABA supersensitive mutants ABA supersensitive during germination1 (absg1) and absg2 were characterized as alleles of Dicer-like1 (DCL1) and HEN1, respectively, as microRNA biogenesis genes, and accordingly, these two mutants were renamed dcl1-11 and hen1-16. The dcl1-11 mutant was an ABA hypersensitive mutant for seed germination and root growth. Reverse transcriptase polymerase chain reaction assays revealed that the expression of ABA- and stress-responsive genes was increased in dcl1-11, as compared with the wild type (WT). Furthermore, the germination assay showed that dcl1-11 was also more sensitive to salt and osmotic stress. The hen1-16 mutant also showed supersensitive to ABA during seed germination. Further analysis showed that, among the microRNA biogenesis genes, all the other mutants were not only enhanced in sensitivity to ABA, salt and osmotic stress, but also enhanced the expression of ABA-responsive genes. In addition to the mutants in the microRNA biogenesis, the interruption of the production of crucial components of other small RNA pathways such as dcl2, dcl3 and dcl4 also caused ABA supersensitive during germination.
植物激素脱落酸(ABA)调控植物生长发育以及胁迫耐受性。为了更深入了解ABA信号传导,基于ABA对种子萌发抑制的效应,筛选了一组化学诱导激活标签拟南芥突变体。两个新的ABA超敏感突变体——萌发期ABA超敏感1(absg1)和absg2,分别被鉴定为Dicer样蛋白1(DCL1)和HEN1的等位基因,它们都是微小RNA生物合成基因,因此,这两个突变体被重新命名为dcl1 - 11和hen1 - 16。dcl1 - 11突变体在种子萌发和根生长方面是ABA超敏感突变体。逆转录聚合酶链反应分析表明,与野生型(WT)相比,dcl1 - 11中ABA和胁迫响应基因的表达增加。此外,萌发试验表明,dcl1 - 11对盐胁迫和渗透胁迫也更敏感。hen1 - 16突变体在种子萌发期间对ABA也表现出超敏感性。进一步分析表明,在微小RNA生物合成基因中,所有其他突变体不仅对ABA、盐和渗透胁迫的敏感性增强,而且ABA响应基因的表达也增强。除了微小RNA生物合成中的突变体,其他小RNA途径关键成分(如dcl2、dcl3和dcl4)的产生中断也导致萌发期间ABA超敏感。