Agilent Technologies Australia, Forest Hill, Australia.
Planta. 2010 Oct;232(5):1141-9. doi: 10.1007/s00425-010-1248-0. Epub 2010 Aug 13.
The synthesis and deactivation of bioactive gibberellins (GA) are regulated by auxin and by GA signalling. The effect of GA on its own pathway is mediated by DELLA proteins. Like auxin, the DELLAs promote GA synthesis and inhibit its deactivation. Here, we investigate the relationships between auxin and DELLA regulation of the GA pathway in stems, using a pea double mutant that is deficient in DELLA proteins. In general terms our results demonstrate that auxin and DELLAs independently regulate the GA pathway, contrary to some previous suggestions. The extent to which DELLA regulation was able to counteract the effects of auxin regulation varied from gene to gene. For Mendel's LE gene (PsGA3ox1) no counteraction was observed. However, for another synthesis gene, a GA 20-oxidase, the effect of auxin was weak and in WT plants appeared to be completely over-ridden by DELLA regulation. For a key GA deactivation (2-oxidase) gene, PsGA2ox1, the up-regulation induced by auxin deficiency was reduced to some extent by DELLA regulation. A second pea 2-oxidase gene, PsGA2ox2, was up-regulated by auxin, in a DELLA-independent manner. In Arabidopsis also, one 2-oxidase gene was down-regulated by auxin while another was up-regulated. Monitoring the metabolism pattern of GA(20) showed that in Arabidopsis, as in pea, auxin can promote the accumulation of bioactive GA.
生物活性赤霉素 (GA) 的合成和失活受生长素和 GA 信号的调节。GA 对其自身途径的影响是由 DELLA 蛋白介导的。与生长素一样,DELLAs 促进 GA 的合成并抑制其失活。在这里,我们使用豌豆双突变体(缺乏 DELLA 蛋白)研究了生长素和 DELLA 对茎中 GA 途径的调节之间的关系。总的来说,我们的结果表明,生长素和 DELLAs 独立地调节 GA 途径,这与之前的一些观点相反。DELLA 调节能够抵消生长素调节的程度因基因而异。对于 Mendel 的 LE 基因(PsGA3ox1),没有观察到拮抗作用。然而,对于另一个合成基因,GA 20-氧化酶,生长素的作用较弱,在 WT 植物中似乎完全被 DELLA 调节所掩盖。对于关键的 GA 失活(2-氧化酶)基因 PsGA2ox1,生长素缺乏诱导的上调在一定程度上被 DELLA 调节所降低。豌豆的第二个 2-氧化酶基因 PsGA2ox2 被生长素上调,与 DELLA 无关。在拟南芥中,一个 2-氧化酶基因被生长素下调,而另一个基因被上调。监测 GA(20)的代谢模式表明,与豌豆一样,生长素可以促进生物活性 GA 的积累。