Department of Horticulture, The Pennsylvania State University, 103 Tyson Building, University Park, PA 16802, USA.
J Plant Physiol. 2011 Jul 15;168(11):1200-7. doi: 10.1016/j.jplph.2011.01.006. Epub 2011 Feb 16.
The interaction between the plant hormones, brassinosteroids and auxins has been documented in various processes using a variety of plants and plant parts. In this study, detached inflorescences from brassinosteroid biosynthesis and signaling Arabidopsis mutants were evaluated for their gravitropic bending in response to epibrassinolide (EBR) and indole-3-acetic acid (IAA). EBR supplied to the base of detached inflorescences stimulated gravitropic bending in all BR biosynthetic mutants but there was no effect on the BR signaling mutant or wild type plants. When IAA was supplied to the base of BR mutant inflorescences both natural and EBR-induced gravitropic bending was inhibited. Treatment with the auxin inhibitors also decreased both natural and EBR-induced gravitropic bending. No gravitropic bending was observed when the apical tips of BR mutant inflorescences were removed. IAA treatment to the tips of decapitated BR mutant inflorescences restored gravitropic bending to values observed in the inflorescences with an apical tip, however, EBR applied to the tip had no effect. When decapitated inflorescences from BR mutants were treated with IAA to the base and either gel, EBR or IAA was applied to the tip; there was no gravitropic bending. These results show that brassinosteroids have a role in the gravitropic bending response in Arabidopsis and mutants serve to uncover this hidden contributor.
植物激素油菜素内酯和生长素之间的相互作用在使用各种植物和植物部分的各种过程中都有记录。在这项研究中,从油菜素内酯生物合成和信号转导拟南芥突变体中分离出的花序用于评估它们对表油菜素内酯(EBR)和吲哚-3-乙酸(IAA)的向重力弯曲反应。供应到分离花序基部的 EBR 刺激所有 BR 生物合成突变体的向重力弯曲,但对 BR 信号突变体或野生型植物没有影响。当 IAA 供应到 BR 突变体花序的基部时,天然和 EBR 诱导的向重力弯曲都被抑制。用生长素抑制剂处理也降低了天然和 EBR 诱导的向重力弯曲。当去除 BR 突变体花序的顶端时,没有观察到向重力弯曲。将生长素抑制剂处理到去顶 BR 突变体花序的顶端恢复了向重力弯曲,其值与具有顶端的花序中观察到的值相同,但是,EBR 施加到顶端时没有效果。当将 BR 突变体的去顶花序用 IAA 处理基部,并用凝胶、EBR 或 IAA 处理顶端时;没有向重力弯曲。这些结果表明,油菜素内酯在拟南芥的向重力弯曲反应中起作用,而突变体则用于揭示这种隐藏的贡献者。