Wu K, Li L, Gage D A, Zeevaart J A
Department of Energy Plant Research Laboratory, Michigan State University, East Lansing 48824, USA.
Plant Physiol. 1996 Feb;110(2):547-54. doi: 10.1104/pp.110.2.547.
Spinach (Spinacia oleracea L.) is a long-day (LD) rosette plant in which stem growth under LD conditions is mediated by gibberellins (GAs). Major control points in spinach are the later steps of sequential oxidation and elimination of C-20 of C20-GAs. Degenerate oligonucleotide primers were used to obtain a polymerase chain reaction product from spinach genomic DNA that has a high homology with GA 20-oxidase cDNAs from Cucurbita maxima L. and Arabidopsis thaliana Heynh. This polymerase chain reaction product was used as a probe to isolate a full-length cDNA clone with an open reading frame encoding a putative 43-kD protein of 374 amino acid residues. When this cDNA clone was expressed in Escherichia coli, the fusion protein catalyzed the biosynthetic sequence GA53-->GA44-->GA19-->GA20 and GA19-->GA17. This establishes that in spinach a single protein catalyzes the oxidation and elimination of C-20. Transfer of spinach plants from short day (SD) to LD conditions caused an increase in the level of all GAs of the early-13-hydroxylation pathway, except GA53, with GA20, GA1, and GA8 showing the largest increases. Northern blot analysis indicated that the level of GA 20-oxidase mRNA was higher in plants in LD than in SD conditions, with highest level of expression in the shoot tips and elongating stems. This expression pattern of GA 20-oxidase is consistent with the different levels of GA20, GA1, and GA8 found in spinach plants grown in SD and LD conditions.
菠菜(Spinacia oleracea L.)是一种长日照莲座状植物,在长日照条件下其茎的生长由赤霉素(GAs)介导。菠菜中的主要控制点是C20 - GAs的C - 20连续氧化和消除的后期步骤。使用简并寡核苷酸引物从菠菜基因组DNA中获得聚合酶链反应产物,该产物与来自南瓜(Cucurbita maxima L.)和拟南芥(Arabidopsis thaliana Heynh.)的GA 20 -氧化酶cDNA具有高度同源性。该聚合酶链反应产物用作探针,分离出一个全长cDNA克隆,其开放阅读框编码一个推定的由374个氨基酸残基组成的43 - kD蛋白。当该cDNA克隆在大肠杆菌中表达时,融合蛋白催化生物合成序列GA53→GA44→GA19→GA20和GA19→GA17。这表明在菠菜中单一蛋白催化C - 20的氧化和消除。将菠菜植株从短日照(SD)条件转移到长日照(LD)条件下,导致早期13 - 羟基化途径的所有赤霉素水平升高,但GA53除外,其中GA20、GA1和GA8的增加幅度最大。Northern印迹分析表明,GA 20 -氧化酶mRNA水平在长日照条件下的植株中高于短日照条件下,在茎尖和伸长茎中表达水平最高。GA 20 -氧化酶的这种表达模式与在短日照和长日照条件下生长的菠菜植株中发现的GA20、GA1和GA8的不同水平一致。