Nain-Perez Amalyn, Barbosa Luiz C A, Picanço Marcelo C, Giberti Samuele, Forlani Giuseppe
Department of Chemistry, Universidade Federal de Minas Gerais, Av. Pres. Antônio Carlos, 6627, Campus Pampulha, CEP 31270-901, Belo Horizonte, MG, Brazil.
Department of Chemistry, Federal University of Viçosa, Av. P. H. Rofls, s/n, Viçosa, MG, 36570-000, Brazil.
Chem Biodivers. 2016 Aug;13(8):1008-17. doi: 10.1002/cbdv.201500340. Epub 2016 Aug 1.
Although quinones present a large array of biological activities, a few studies on the herbicidal potential of 2,5-bis(alkyl/arylamino)-1,4-benzoquinones have been reported to date. In this work, starting from benzoquinone, 13 2,5-bis(alkyl/arylamino)-1,4-benzoquinones were prepared in 46 - 93% yield. The products were fully characterized by spectroscopic analyses and their phytotoxicity against Cucumis sativus and Sorghum bicolor seedlings was investigated. At 100 ppm, compounds caused 10 - 88% growth inhibition of the dicotyledonous species, whereas the monocotyledon was less affected. Most compounds exerted little inhibitory effect on a cyanobacterial model strain. However, at 100 μm, compounds 8 - 10 caused about 50% inhibition of algal growth, and compounds 1 and 2 reduced cell viability in the 1 - 10 μm range. The ability of benzoquinone derivatives to interfere with the light-driven ferricyanide reduction by isolated spinach chloroplasts was evaluated. Some substances showed a moderate effect as uncouplers, but no relationship was found between this property and their biological activity, indicating that the herbicidal effect is not associated with the inhibition of the photosynthetic electron transport chain. Phytotoxic compounds were not toxic to insects, strengthening the possibility that they may serve as lead for the development of eco-friendly herbicides.
尽管醌类具有多种生物活性,但迄今为止,关于2,5-双(烷基/芳基氨基)-1,4-苯醌除草潜力的研究报道较少。在本研究中,以苯醌为起始原料,制备了13种2,5-双(烷基/芳基氨基)-1,4-苯醌,产率为46%-93%。通过光谱分析对产物进行了全面表征,并研究了它们对黄瓜和高粱幼苗的植物毒性。在100 ppm时,化合物对双子叶植物造成10%-88%的生长抑制,而单子叶植物受影响较小。大多数化合物对蓝藻模型菌株几乎没有抑制作用。然而,在100 μM时,化合物8-10对藻类生长造成约50%的抑制,化合物1和2在1-10 μM范围内降低细胞活力。评估了苯醌衍生物干扰菠菜叶绿体光驱动铁氰化物还原的能力。一些物质表现出适度的解偶联剂作用,但未发现该性质与其生物活性之间的关系,这表明除草作用与光合电子传递链的抑制无关。具有植物毒性的化合物对昆虫无毒,这增加了它们可能成为开发环保型除草剂先导物的可能性。