奥罗班切
司他内酯
发芽
杂草
根际
生物
向日葵
开枪
斯特里加
向日葵
寄生植物
化感作用
农学
植物
豚草
寄主(生物学)
细菌
拟南芥
免疫学
豚草
过敏
突变体
基因
生物化学
遗传学
生态学
作者
Alexandre Lumbroso,Emmanuelle Villedieu‐Percheron,Didier Zurwerra,Claudio Screpanti,Mathilde Lachia,Pierre‐Yves Dakas,Laure Castelli,Verity Laura Paul,Hanno Christian Wolf,Danielle Sayer,Andreas Beck,Stefano Rendine,Raymonde Fonné‐Pfister,Alain De Mesmaeker
摘要
Abstract BACKGROUND Strigolactones play an important role in the rhizosphere as signalling molecules stimulating the seed germination of parasitic weed seeds and hyphal branching of arbuscular micorrhiza, and also act as hormones in plant roots and shoots. Strigolactone derivatives, e.g. strigolactams, could be used as suicidal germination inducers in the absence of a host crop for the decontamination of land infested with parasitic weed seeds. RESULTS We report the stereoselective synthesis of novel strigolactams, together with some of their critical physicochemical properties, such as water solubility, hydrolytic stability, as well as their short soil persistence. In addition, we show that such strigolactams are potent germination stimulants of O. cumana parasitic weed seeds and do not affect the seed germination and the root growth of sunflower. CONCLUSIONS The novel strigolactam derivatives described here compare favourably with the corresponding GR ‐28 strigolactones in terms of biological activity and physicochemical properties. However, we believe strigolactone and strigolactam derivatives require further structural optimisation to improve their soil persistence to demonstrate a potential for agronomical applications. © 2016 Society of Chemical Industry
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