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首页> 外文期刊>Plant Growth Regulation: An International Journal on Natural and Synthetic Regulators >Strigolactone may interact with gibberellin to control apical dominance in pea (Pisum sativum)
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Strigolactone may interact with gibberellin to control apical dominance in pea (Pisum sativum)

机译:Strigolactone可能与赤霉素相互作用以控制豌豆(Pisum sativum)的顶端优势

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摘要

The role of strigolactones as plant growth regulators has been demonstrated through research on biosynthesis and signaling mutant plants and through the use of GR24, a synthetic analog of this class of molecules. Strigolactone mutants show a bushy phenotype and GR24 application inhibits the growth of axillary buds in these mutants, thus restoring the phenotype of a wild plant, which is characterized by a stronger apical dominance. In this work, we tested the effectiveness of this chemical on pea (Pisum sativum) plants following apex removal, which disrupts apical dominance and leads to axillary bud outgrowth. Moreover, we searched for relationships between the response to the strigolactone and gibberellin metabolism by applying GR24 to both climbing and dwarf peas, the latters being mutants for gibberellin biosynthesis. The results suggest that the endogenous level of the bioactive gibberellin GA_1 might modulate the response of decapitated pea plants to GR24, by changing bud sensitivity to the applied strigolactone.
机译:通过对生物合成和信号突变植物的研究以及通过使用GR24(此类分子的合成类似物)的研究,已证明了strigolactones作为植物生长调节剂的作用。 Strigolactone突变体显示出浓密的表型,GR24的应用抑制了这些突变体中腋芽的生长,从而恢复了野生植物的表型,其特征是更强的顶端优势。在这项工作中,我们测试了去除根尖后豌豆(Pisum sativum)植物中这种化学物质的有效性,这破坏了根尖优势并导致腋芽生长。此外,我们通过将GR24应用于攀缘豌豆和矮豌豆来搜索对链脲内酯和赤霉素代谢的反应之间的关系,后者是赤霉素生物合成的突变体。结果表明,生物活性赤霉素GA_1的内源性水平可能通过改变芽对所施用的Strigolactone的敏感性来调节断头豌豆植物对GR24的响应。

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