Araniti Fabrizio, Mancuso Raffaella, Lupini Antonio, Giofrè Salvatore V, Sunseri Francesco, Gabriele Bartolo, Abenavoli Maria Rosa
Dipartimento AGRARIA, Università Mediterranea di Reggio Calabria, Reggio Calabria 89124, Italy.
Laboratory of Industrial and Synthetic Organic Chemistry (LISOC), Dipartimento di Chimica e Tecnologie Chimiche, Università della Calabria, Via P. Bucci 12/C, Arcavacata di Rende (Cosenza) 87036, Italy.
Molecules. 2015 Sep 29;20(10):17883-902. doi: 10.3390/molecules201017883.
Coumarin is a natural compound well known for its phytotoxic potential. In the search for new herbicidal compounds to manage weeds, three synthetic derivatives bearing the coumarin scaffold (1-3), synthesized by a carbonylative organometallic approach, were in vitro assayed on germination and root growth of two noxious weeds, Amaranthus retroflexus and Echinochloa crus-galli. Moreover, the synthetic coumarins 1-3 were also in vitro assayed on seedlings growth of the model species Arabidopsis thaliana to identify the possible physiological targets. All molecules strongly affected seed germination and root growth of both weeds. Interestingly, the effects of synthetic coumarins on weed germination were higher than template natural coumarin, pointing out ED50 values ranging from 50-115 µM. Moreover, all synthetic coumarins showed a strong phytotoxic potential on both Arabidopsis shoot and root growth, causing a strong reduction in shoot fresh weight (ED50 values ≤ 60 µM), accompanied by leaf development and a decrease in pigment content. Furthermore, they caused a strong alteration in root growth (ED50 values ≤ 170 µM) and morphology with evident alterations in root tip anatomy. Taken together, our results highlight the promising potential herbicidal activity of these compounds.
香豆素是一种因其具有植物毒性潜力而闻名的天然化合物。在寻找用于治理杂草的新型除草化合物的过程中,通过羰基化有机金属方法合成的三种带有香豆素骨架的合成衍生物(1 - 3),在两种有害杂草反枝苋和稗草的发芽和根系生长方面进行了体外测定。此外,还对合成香豆素1 - 3在模式植物拟南芥的幼苗生长方面进行了体外测定,以确定可能的生理靶点。所有分子都强烈影响了两种杂草的种子萌发和根系生长。有趣的是,合成香豆素对杂草萌发的影响高于模板天然香豆素,其半数有效浓度(ED50)值范围为50 - 115微摩尔。此外,所有合成香豆素对拟南芥的地上部分和根系生长均表现出很强的植物毒性潜力,导致地上部分鲜重显著降低(ED50值≤60微摩尔),同时伴随着叶片发育和色素含量的减少。此外,它们还导致根系生长(ED50值≤170微摩尔)和形态发生强烈改变,根尖解剖结构出现明显变化。综上所述,我们的结果突出了这些化合物具有潜在的除草活性。