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新型分枝抑制剂及其作为独脚金内酯类似物在水稻中的应用潜力。

New branching inhibitors and their potential as strigolactone mimics in rice.

机构信息

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

出版信息

Bioorg Med Chem Lett. 2011 Aug 15;21(16):4905-8. doi: 10.1016/j.bmcl.2011.06.019. Epub 2011 Jun 22.

Abstract

Strigolactones (SLs) are rhizosphere communication chemicals. Recent studies of highly branched mutants revealed that SL or its metabolites work as a phytohormone to inhibit shoot branching. When SLs are exogenously applied to the rice d10-1 mutant that has a highly branched phenotype caused by a defect in the SL biosynthesis gene (CCD8), they inhibit tiller bud outgrowth (branching in rice) of the mutant. We focused our attention on the SL function as a phytohormone and tried to find new chemicals mimicking the hormonal action of SL by screening chemicals that inhibit branching of rice d10-1 mutant. Fortunately, we found 5-(4-chlorophenoxy)-3-methylfuran-2(5H)-one (3a) as a new chemical possessing SL-like activity against the rice d10-1 mutant. Then, we prepared several derivatives of 3a (3b-3k) to examine their ability to inhibit shoot branching of rice d10-1. These derivatives were synthesized by a one-pot coupling reaction between phenols and halo butenolide to give 5-phenoxy 3-methylfuran-2(5H)-one (3) derivatives, which possess a common substructure with SLs. Some of the derivatives showed SL-like activity more potently than GR24, a typical SL derivative, in a rice assay. As SLs also show activity by inducing seed germination of root parasitic plants, the induction activity of these derivatives was also evaluated. Here we report the structure-activity relationships of these compounds.

摘要

独脚金内酯(SLs)是根际交流化学物质。对高度分枝突变体的研究表明,SL 或其代谢物作为一种植物激素抑制侧芽分枝。当 SL 被外施于具有 SL 生物合成基因(CCD8)缺陷导致高度分枝表型的水稻 d10-1 突变体时,它们抑制突变体分蘖芽的伸长(水稻分枝)。我们专注于 SL 作为植物激素的功能,并通过筛选抑制水稻 d10-1 突变体分枝的化学物质来试图寻找模拟 SL 激素作用的新化学物质。幸运的是,我们发现 5-(4-氯苯氧基)-3-甲基呋喃-2(5H)-酮(3a)是一种具有 SL 样活性的新化学物质,对水稻 d10-1 突变体具有抑制作用。然后,我们制备了 3a 的几种衍生物(3b-3k),以检查它们抑制水稻 d10-1 侧芽分枝的能力。这些衍生物通过酚类和卤代丁烯内酯之间的一锅偶联反应合成,得到具有 SLs 共同结构的 5-苯氧基 3-甲基呋喃-2(5H)-酮(3)衍生物。一些衍生物在水稻测定中比典型的 SL 衍生物 GR24 更有效地表现出 SL 样活性。由于 SLs 还通过诱导根寄生植物的种子萌发来发挥作用,因此还评估了这些衍生物的诱导活性。本文报告了这些化合物的构效关系。

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