State Key Laboratory of Plant Genomics and Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.
J Genet Genomics. 2010 Jan;37(1):23-36. doi: 10.1016/S1673-8527(09)60022-9.
Gibberellin (GA) 2-oxidase plays a key role in the GA catabolic pathway through 2beta-hydroxylation. In the present study, we isolated a CaMV 35S-enhancer activation tagged mutant, H032. This mutant exhibited a dominant dwarf and GA-deficient phenotype, with a final stature that was less than half of its wild-type counterpart. The endogenous bioactive GAs are markedly decreased in the H032 mutant, and application of bioactive GAs (GA(3) or GA(4)) can reverse the dwarf phenotype. The integrated T-DNA was detected 12.8 kb upstream of the OsGA2ox6 in the H032 genome by TAIL-PCR. An increased level of OsGA2ox6 mRNA was detected at a high level in the H032 mutant, which might be due to the enhancer role of the CaMV 35S promoter. RNAi and ectopic expression analysis of OsGA2ox6 indicated that the dwarf trait and the decreased levels of bioactive GAs in the H032 mutant were a result of the up-regulation of the OsGA2ox6 gene. BLASTP analysis revealed that OsGA2ox6 belongs to the class III of GA 2-oxidases, which is a novel type of GA2ox that uses C20-GAs (GA(12) and/or GA(53)) as the substrates. Interestingly, we found that a GA biosynthesis inhibitor, paclobutrazol, positively regulated the OsGA2ox6 gene. Unlike the over-expression of OsGA2ox1, which led to a high rate of seed abortion, the H032 mutant retained normal flowering and seed production. These results indicate that OsGA2ox6 mainly affects plant stature, and the dominant dwarf trait of the H032 mutant can be used as an efficient dwarf resource in rice breeding.
赤霉素(GA)2-氧化酶通过 2β-羟化作用在 GA 分解代谢途径中起关键作用。本研究中,我们分离到一个 CaMV 35S-增强子激活标签突变体 H032。该突变体表现出显性矮化和 GA 缺乏表型,最终株高不到其野生型对照的一半。H032 突变体中内源性生物活性 GA 明显减少,施用生物活性 GA(GA(3) 或 GA(4))可逆转矮化表型。通过 TAIL-PCR 在 H032 基因组中 OsGA2ox6 的上游 12.8kb 处检测到整合的 T-DNA。在 H032 突变体中检测到 OsGA2ox6 mRNA 水平显著升高,这可能是由于 CaMV 35S 启动子的增强子作用。OsGA2ox6 的 RNAi 和异位表达分析表明,H032 突变体的矮化表型和生物活性 GA 水平降低是由于 OsGA2ox6 基因的上调。BLASTP 分析表明,OsGA2ox6 属于 GA 2-氧化酶的 III 类,是一种新型的 GA2ox,以 C20-GAs(GA(12) 和/或 GA(53))为底物。有趣的是,我们发现 GA 生物合成抑制剂多效唑正向调节 OsGA2ox6 基因。与 OsGA2ox1 的过表达导致高比例的种子败育不同,H032 突变体保留了正常的开花和种子生产。这些结果表明,OsGA2ox6 主要影响植物株高,H032 突变体的显性矮化特性可作为水稻育种中的有效矮化资源。