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苯氧基呋喃酮型独脚金内酯类似物的定制设计。

A Taylor-Made Design of Phenoxyfuranone-Type Strigolactone Mimic.

作者信息

Fukui Kosuke, Yamagami Daichi, Ito Shinsaku, Asami Tadao

机构信息

Department of Applied Biological Chemistry, Graduate School of Agricultural and Life Sciences, The University of TokyoTokyo, Japan.

Bioactive Natural Products Research Group, King Abdulaziz UniversityJeddah, Saudi Arabia.

出版信息

Front Plant Sci. 2017 Jun 20;8:936. doi: 10.3389/fpls.2017.00936. eCollection 2017.

Abstract

Strigolactones are a class of plant hormones that inhibit axillary bud outgrowth and are released from plant roots to act as a rhizosphere communication signal. The Orobanchaceae parasitic plant perceives strigolactone as its germination signal, indicating host presence. After germination, the plant parasitises the host plant and suppresses host growth by draining photosynthetic products, water and other essential nutrients. Because of this way of life, this parasite threatens crop production in sub-Saharan Africa with infestation in crop fields and crop devastation. Crop protection in such areas is among the most concerning problems to be dealt with as immediately as possible. With respect to crop protection from , many strigolactone agonists have been developed and used in research to reveal biology, and have contributed to development of crop protection methods. However, an effective method has yet to be found. In a previous study, we reported debranones as a group of strigolactone mimics that inhibit axillary buds outgrowth with moderate stimulation activity for germination. Debranones would be accessible because they are simply synthesized from commercially available phenols and bromo butenolide. Taking this advantage of debranones for research, we tried to find the debranones stimulating seed germination. To modulate functional selectivity and to enhance germination inducing activity of debranones, we studied structure-activity relationships. We investigated effects of substituent position and functional group on debranone activity and selectivity as a strigolactone mimic. As a result, we improved stimulation activity of debranones for seed germination by chemical modification, and demonstrated the pharmacophore of debranones for selective modulation of distinct strigolactone responses.

摘要

独脚金内酯是一类抑制腋芽生长的植物激素,从植物根部释放出来后作为一种根际通讯信号发挥作用。列当科寄生植物将独脚金内酯视为其萌发信号,表明宿主的存在。萌发后,该植物寄生于宿主植物,并通过消耗光合产物、水分和其他必需养分来抑制宿主生长。由于这种生活方式,这种寄生虫通过侵染农田和破坏作物,威胁着撒哈拉以南非洲地区的作物生产。在这些地区进行作物保护是亟待尽快解决的最令人担忧的问题之一。关于针对这种寄生虫的作物保护,已经开发了许多独脚金内酯激动剂并用于研究以揭示其生物学特性,并且为作物保护方法的发展做出了贡献。然而,尚未找到有效的方法。在之前的一项研究中,我们报道了脱支酮作为一组独脚金内酯类似物,它们抑制腋芽生长,同时对该寄生虫的萌发具有适度的刺激活性。脱支酮很容易获得,因为它们可以简单地由市售的酚类化合物和溴代丁烯内酯合成。利用脱支酮的这一优势用于该寄生虫的研究,我们试图找到能够刺激其种子萌发的脱支酮。为了调节功能选择性并增强脱支酮的萌发诱导活性,我们研究了构效关系。我们研究了取代基位置和官能团对脱支酮作为独脚金内酯类似物的活性和选择性的影响。结果,我们通过化学修饰提高了脱支酮对该寄生虫种子萌发的刺激活性,并证明了脱支酮对不同独脚金内酯反应进行选择性调节的药效基团。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6923/5477565/306e490ed333/fpls-08-00936-g001.jpg

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