Yamaguchi S, Smith M W, Brown R G, Kamiya Y, Sun T
Frontier Research Program, Institute of Physical and Chemical Research (RIKEN), Hirosawa 2-1, Wako-shi, Saitama 351-0198, Japan.
Plant Cell. 1998 Dec;10(12):2115-26. doi: 10.1105/tpc.10.12.2115.
Despite extensive studies on the roles of phytochrome in photostimulated seed germination, the mechanisms downstream of the photoreceptor that promote germination are largely unknown. Previous studies have indicated that light-induced germination of Arabidopsis seeds is mediated by the hormone gibberellin (GA). Using RNA gel blot analyses, we studied the regulation of two Arabidopsis genes, GA4 and GA4H (for GA4 homolog), both of which encode GA 3beta-hydroxylases that catalyze the final biosynthetic step to produce bioactive GAs. The newly isolated GA4H gene was expressed predominantly during seed germination. We show that expression of both GA4 and GA4H genes in imbibed seeds was induced within 1 hr after a brief red (R) light treatment. In the phytochrome B-deficient phyB-1 mutant, GA4H expression was not induced by R light, but GA4 expression still was, indicating that R light-induced GA4 and GA4H expression is mediated by different phytochromes. In contrast to the GA4 gene, the GA4H gene was not regulated by the feedback inhibition mechanism in germinating seeds. Our data demonstrate that expression of GA 3beta-hydroxylase genes is elevated by R light, which may result in an increase in biosynthesis of active GAs to promote seed germination. Furthermore, our results suggest that each GA 3beta-hydroxylase gene plays a unique physiological role during light-induced seed germination.
尽管针对光敏色素在光刺激种子萌发中的作用进行了广泛研究,但光受体下游促进种子萌发的机制仍不清楚。此前的研究表明,拟南芥种子的光诱导萌发是由激素赤霉素(GA)介导的。我们利用RNA凝胶印迹分析,研究了拟南芥的两个基因GA4和GA4H(GA4同源基因)的调控情况,这两个基因均编码GA 3β-羟化酶,催化生物活性GA合成的最后一步。新分离的GA4H基因主要在种子萌发过程中表达。我们发现,在经过短暂红光(R)处理后的1小时内,吸胀种子中GA4和GA4H基因的表达均被诱导。在缺乏光敏色素B的phyB-1突变体中,R光不能诱导GA4H基因表达,但仍可诱导GA4基因表达,这表明R光诱导的GA4和GA4H基因表达是由不同的光敏色素介导的。与GA4基因不同,GA4H基因在萌发种子中不受反馈抑制机制的调控。我们的数据表明,R光可提高GA 3β-羟化酶基因的表达,这可能导致活性GA生物合成增加,从而促进种子萌发。此外,我们的结果表明,每个GA 3β-羟化酶基因在光诱导种子萌发过程中都发挥着独特的生理作用。