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首页> 外文期刊>The Plant Cell >A novel class of gibberellin 2-oxidases control semidwarfism, tillering, and root development in rice
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A novel class of gibberellin 2-oxidases control semidwarfism, tillering, and root development in rice

机译:一类新的赤霉素2-氧化酶控制水稻的半矮化,分till和根系发育

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摘要

Gibberellin 2-oxidases (GA2oxs) regulate plant growth by inactivating endogenous bioactive gibberellins (GAs). Two classes of GA2oxs inactivate GAs through 2beta-hydroxylation: a larger class of C(19) GA2oxs and a smaller class of C(20) GA2oxs. In this study, we show that members of the rice (Oryza sativa) GA2ox family are differentially regulated and act in concert or individually to control GA levels during flowering, tillering, and seed germination. Using mutant and transgenic analysis, C(20) GA2oxs were shown to play pleiotropic roles regulating rice growth and architecture. In particular, rice overexpressing these GA2oxs exhibited early and increased tillering and adventitious root growth. GA negatively regulated expression of two transcription factors, O. sativa homeobox 1 and TEOSINTE BRANCHED1, which control meristem initiation and axillary bud outgrowth, respectively, and that in turn inhibited tillering. One of three conserved motifs unique to the C(20) GA2oxs (motif III) was found to be important for activity of these GA2oxs. Moreover, C(20) GA2oxs were found to cause less severe GA-defective phenotypes than C(19) GA2oxs. Our studies demonstrate that improvements in plant architecture, such as semidwarfism, increased root systems and higher tiller numbers, could be induced by overexpression of wild-type or modified C(20) GA2oxs.
机译:赤霉素2-氧化酶(GA2oxs)通过使内源性生物活性赤霉素(GAs)失活来调节植物的生长。两类GA2oxs通过2beta-羟基化使GA失活:一类较大的C(19)GA2oxs和一类较小的C(20)GA2oxs。在这项研究中,我们表明水稻(Oryza sativa)GA2ox家族成员受到差异调节,在开花,分till和种子发芽过程中共同或单独发挥作用来控制GA水平。使用突变和转基因分析,C(20)GA2oxs显示发挥多效性作用调节水稻的生长和结构。特别是,过表达这些GA2oxs的水稻表现出早期,分till和不定根生长。 GA负调控两个转录因子O. sativa homeobox 1和TEOSINTE BRANCHED1的表达,它们分别控制分生组织的起始和腋芽的生长,进而抑制分in。 C(20)GA2oxs(基序III)独特的三个保守基序之一被发现对于这些GA2oxs的活性很重要。此外,C(20)GA2oxs被发现比C(19)GA2oxs引起更严重的GA缺陷表型。我们的研究表明,野生型或修饰的C(20)GA2oxs的过表达可以诱导植物结构的改善,例如半矮化,增加根系和提高分till数量。

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