首页> 外文期刊>Plant Molecular Biology >A role of OsGA20ox1, encoding an isoform of gibberellin 20-oxidase, for regulation of plant stature in rice.
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A role of OsGA20ox1, encoding an isoform of gibberellin 20-oxidase, for regulation of plant stature in rice.

机译:编码赤霉素20-氧化酶同工型的OsGA20ox1在调节水稻植株中的作用。

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Gibberellin (GA) 20-oxidase (GA20ox) is a key enzyme that normally catalyzes the penultimate steps in GA biosynthesis. One of the GA20ox genes in rice (Oryza sativa L.), OsGA20ox2 (SD1), is well known as the 'Green Revolution gene', and loss-of function mutation in this locus causes semi-dwarfism. Another GA20ox gene, OsGA20ox1, has also been identified, but its contribution to plant stature has remained unclear because no suitable mutants have been available. We isolated a mutant, B142, tagged with a T-DNA containing three CaMV 35S promoters, which showed a tall, GA-overproduction phenotype. The final stature of the B142 mutant reflects internode overgrowth and is approximately twice that of its wild-type parent. This mutant responds to application of both GA3 and a GA biosynthesis inhibitor, indicating that it is a novel tall mutant of rice distinct from GA signaling mutants such as slr1. The integrated T-DNAs, which contain three CaMV 35S promoters, are located upstream of the OsGA20ox1 open reading frame (ORF) in the B142 mutant genome. Analysis of mRNA and the endogenous GAs reveal that biologically active GA level is increased by up-regulation of the OsGA20ox1 gene in B142. Introduction of OsGA20ox1 cDNA driven by 35S promoter into the wild type phenocopies the morphological characteristics of B142. These results indicate that the elongated phenotype of the B142 mutant is caused by up-regulation of the OsGA20ox1 gene. Moreover, the final stature of rice was reduced by specific suppression of the OsGA20ox1 gene expression. This result indicates that not only OsGA20ox2 but also OsGA20ox1 affects plant stature.
机译:赤霉素(GA)20-氧化酶(GA20ox)是一种关键酶,通常催化GA生物合成中的倒数第二步。水稻(Oryza sativa L.)的一种GA20ox基因OsGA20ox2(SD1)被称为“绿色革命基因”,该位点的功能缺失突变导致半侏儒症。还已经确定了另一个GA20ox基因OsGA20ox1,但是由于没有合适的突变体,其对植物生长的贡献还不清楚。我们分离了一个突变体,B142,用含有三个CaMV 35S启动子的T-DNA标记,该启动子显示出很高的GA过量生产表型。 B142突变体的最终身材反映了节间过度生长,大约是其野生型亲本的两倍。该突变体响应GA3和GA生物合成抑制剂的应用,表明它是不同于GA信号突变体(如slr1)的水稻新矮秆突变体。包含三个CaMV 35S启动子的整合T-DNA位于B142突变基因组中OsGA20ox1开放阅读框(ORF)的上游。对mRNA和内源性GA的分析表明,B142中OsGA20ox1基因的上调可提高生物活性GA的水平。将由35S启动子驱动的OsGA20ox1 cDNA导入野生型表型,证明B142的形态特征。这些结果表明,B142突变体的延长表型是由OsGA20ox1基因的上调引起的。此外,通过特异性抑制OsGA20ox1基因表达降低了水稻的最终形态。该结果表明,不仅OsGA20ox2而且OsGA20ox1都影响植物的身材。

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