首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Gibberellin Signaling Repressor LlDELLA1 Controls the Flower and Pod Development of Yellow Lupine (Lupinus luteus L.)
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Gibberellin Signaling Repressor LlDELLA1 Controls the Flower and Pod Development of Yellow Lupine (Lupinus luteus L.)

机译:Gibberellin信号传导抑制器Lldella1控制黄羽羽的花和豆荚(Lupinus Luteus L.)

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摘要

Precise control of generative organ development is of great importance for the productivity of crop plants, including legumes. Gibberellins (GAs) play a key role in the regulation of flowering, and fruit setting and development. The major repressors of GA signaling are DELLA proteins. In this paper, the full-length cDNA of LlDELLA1 gene in yellow lupine (Lupinus luteus L.) was identified. Nuclear-located LlDELLA1 was clustered in a second phylogenetic group. Further analyses revealed the presence of all conserved motifs and domains required for the GA-dependent interaction with Gibberellin Insensitive Dwarf1 (GID1) receptor, and involved in the repression function of LlDELLA1. Studies on expression profiles have shown that fluctuating LlDELLA1 transcript level favors proper flower and pod development. Accumulation of LlDELLA1 mRNA slightly decreases from the flower bud stage to anther opening (dehiscence), while there is rapid increase during pollination, fertilization, as well as pod setting and early development. LlDELLA1 expression is downregulated during late pod development. The linkage of LlDELLA1 activity with cellular and tissue localization of gibberellic acid (GA3) offers a broader insight into the functioning of the GA pathway, dependent on the organ and developmental stage. Our analyses provide information that may be valuable in improving the agronomic properties of yellow lupine.
机译:精确控制生成器官的发展对于作物植物的生产力非常重要,包括豆类。吉布林素(天然气)在开花的调节和水果环境和发展中起着关键作用。 GA信号传导的主要阻遏物是Della蛋白。本文鉴定了黄羽磺胺(Lupinus Luttus L.)中Lldella1基因的全长cDNA。核定位的Lldella1在第二个系统发育基团中聚集。进一步的分析显示,存在与嗜酸甘油蛋白不敏感矮化矮化(GID1)受体的GA依赖性相互作用所需的所有保守基序和结构域,并参与Lldella1的抑制功能。表达型材的研究表明,波动的Lldella1转录水平融合了适当的花和荚。 Lldella1 mRNA的积累从花蕾阶段略微减少到花药开口(开放),而在授粉,施肥和豆荚环境和早期发育期间存在迅速增加。 Lldella1表达在晚豆荚开发期间下调。 Lldella1活性与胶纤维酸(Ga3)的细胞和组织定位的连锁提供了更广泛的洞察GA通路的功能,取决于器官和发育阶段。我们的分析提供了在改善黄羽磺丁的农艺性质方面可能有价值的信息。

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