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独脚金内酯类似物的选择及其在防治根寄生杂草危害中的潜在应用。

Selective mimics of strigolactone actions and their potential use for controlling damage caused by root parasitic weeds.

机构信息

Graduate School of Agricultural and Life Sciences, University of Tokyo, 1-1-1 Yayoi, Bunkyo, Tokyo 113-8657, Japan.

出版信息

Mol Plant. 2013 Jan;6(1):88-99. doi: 10.1093/mp/sss138. Epub 2012 Nov 30.

DOI:10.1093/mp/sss138
PMID:23204501
Abstract

Strigolactones (SLs) are a novel class of plant hormones and rhizosphere communication signals, although the molecular mechanisms underlying their activities have not yet been fully determined. Nor is their application in agriculture well developed. The importance of plant hormone agonists has been demonstrated in both basic and applied research, and chemicals that mimic strigolactone functions should greatly facilitate strigolactone research. Here, we report our discovery of a new phenoxyfuranone compound, 4-Br debranone (4BD), that shows similar activity to that of the major strigolactone (SL) analog GR24 in many aspects of a biological assay on plants. 4BD strongly inhibited tiller bud outgrowth in the SL-deficient rice mutant d10 at the same concentration as GR24, with no adverse effects, even during prolonged cultivation. This result was also observed in the Arabidopsis thaliana SL-deficient mutants max1, max3, and max4. However, the application of 4BD to the Arabidopsis SL-insensitive mutant max2 induced no morphological changes in it. The expression of SL biosynthetic genes was also reduced by 4BD treatment, probably via negative feedback regulation. However, in a seed germination assay on Striga hermonthica, a root parasitic plant, 4BD showed far less activity than GR24. These results suggest that 4BD is the first plant-specific strigolactone mimic.

摘要

独脚金内酯(SLs)是一类新型的植物激素和根际通讯信号,尽管其作用的分子机制尚未完全确定,其在农业中的应用也尚未得到充分发展。植物激素激动剂的重要性在基础研究和应用研究中都得到了证明,模拟独脚金内酯功能的化学物质应该会极大地促进独脚金内酯的研究。在这里,我们报告了一种新的苯氧基呋喃酮化合物 4-Br 去甲二氢燕麦酮(4BD)的发现,该化合物在植物生物学测定的许多方面都表现出与主要独脚金内酯(SL)类似物 GR24 相似的活性。4BD 在与 GR24 相同的浓度下强烈抑制 SL 缺陷型水稻突变体 d10 中分蘖芽的生长,而且没有不良影响,即使在长时间培养过程中也是如此。这一结果在拟南芥 SL 缺陷型突变体 max1、max3 和 max4 中也观察到了。然而,4BD 应用于拟南芥 SL 不敏感突变体 max2 中,没有引起其形态发生变化。SL 生物合成基因的表达也因 4BD 处理而降低,可能是通过负反馈调节。然而,在 Striga hermonthica(一种根寄生植物)的种子发芽试验中,4BD 的活性远低于 GR24。这些结果表明,4BD 是第一个植物特异性的独脚金内酯模拟物。

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