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薯蓣皂苷元相关分子对豌豆分枝抑制的结构-活性关系研究:分枝的分子设计。

Structure-activity relationship studies of strigolactone-related molecules for branching inhibition in garden pea: molecule design for shoot branching.

机构信息

Centre de Recherche de Gif, Institut de Chimie des Substances Naturelles, Unité Propre de Recherche 2301 Centre National de la Recherche Scientifique, F-91198 Gif-sur-Yvette cedex, France.

出版信息

Plant Physiol. 2012 Aug;159(4):1524-44. doi: 10.1104/pp.112.195826. Epub 2012 Jun 21.

Abstract

Initially known for their role in the rhizosphere in stimulating the seed germination of parasitic weeds such as the Striga and Orobanche species, and later as host recognition signals for arbuscular mycorrhizal fungi, strigolactones (SLs) were recently rediscovered as a new class of plant hormones involved in the control of shoot branching in plants. Herein, we report the synthesis of new SL analogs and, to our knowledge, the first study of SL structure-activity relationships for their hormonal activity in garden pea (Pisum sativum). Comparisons with their action for the germination of broomrape (Phelipanche ramosa) are also presented. The pea rms1 SL-deficient mutant was used in a SL bioassay based on axillary bud length after direct SL application on the bud. This assay was compared with an assay where SLs were fed via the roots using hydroponics and with a molecular assay in which transcript levels of BRANCHED1, the pea homolog of the maize TEOSINTE BRANCHED1 gene were quantified in axillary buds only 6 h after application of SLs. We have demonstrated that the presence of a Michael acceptor and a methylbutenolide or dimethylbutenolide motif in the same molecule is essential. It was established that the more active analog 23 with a dimethylbutenolide as the D-ring could be used to control the plant architecture without strongly favoring the germination of P. ramosa seeds. Bold numerals refer to numbers of compounds.

摘要

最初,独脚金内酯因在根际刺激列当属和列当属等寄生杂草种子萌发方面的作用而闻名,后来又因其是丛枝菌根真菌的宿主识别信号而广为人知,最近又发现它是一类新的植物激素,参与植物侧芽分枝的调控。在此,我们报告了新的独脚金内酯类似物的合成,据我们所知,这是首次研究其结构活性关系,以评估其在豌豆(Pisum sativum)中的激素活性。还对其在金雀花(Phelipanche ramosa)萌发方面的作用进行了比较。使用豌豆 rms1 独脚金内酯缺陷突变体进行 SL 生物测定,方法是将 SL 直接施用于芽上,然后比较侧芽长度。该测定法与通过根系进行 SL 喂养的水培测定法以及通过在 SL 施用后仅 6 小时定量分析侧芽中 BRANCHED1(玉米 TEOSINTE BRANCHED1 基因的豌豆同源物)的转录水平的分子测定法进行了比较。我们已经证明,同一分子中存在迈克尔受体和甲基丁烯内酯或二甲基丁烯内酯基序是必需的。结果表明,具有二甲基丁烯内酯作为 D-环的更活性类似物 23 可用于控制植物结构,而不会强烈促进 P. ramosa 种子的萌发。粗体数字指的是化合物的编号。

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本文引用的文献

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Exploring the molecular mechanism of karrikins and strigolactones.探索卡利金和独脚金内酯的分子机制。
Bioorg Med Chem Lett. 2012 Jun 1;22(11):3743-6. doi: 10.1016/j.bmcl.2012.04.016. Epub 2012 Apr 10.
9
Strigolactones as small molecule communicators.独脚金内酯作为小分子信号物质。
Mol Biosyst. 2012 Feb;8(2):464-9. doi: 10.1039/c1mb05195d. Epub 2011 Oct 25.
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Strigolactones promote nodulation in pea.独脚金内酯促进豌豆结瘤。
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