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p-Aromatic Isothiocyanates: Synthesis and Anti Plant Pathogen Activity

机译:P-芳族异硫氰酸酯:合成和抗植物病原体活性

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In this study, a series of p-aromatic isothiocyanates are prepared by reacting p-aromatic amines with carbon disulphide and further treating with molecular iodine to yield corresponding isothiocyanate derivatives. The structures of newly synthesized compounds are confirmed by IR, NMR, and MS data. Activity of the products against plant pathogenic fungi and bacteria is tested and the structure-activity relationship is approached. p-Nitrophenyl isothiocyanate most efficiently inhibits Rhizoctonia solani and Erwinia carotovora. The order of seven aromatic isothiocyanates antifungicidal activity is following: p-nitrophenyl p-methoxyphenyl p-chlorophenyl p-methylphenyl p-ethylphenyl phenyl p-fluorophenyl. For antibacterial activity, the order was p-nitrophenyl p-chlorophenyl p-methylphenyl p-ethylphenyl p-fluorophenyl phenyl p-methoxyphenyl. The present study indicates that some of the compounds exhibit promising antimicrobial activity and can be used as an alternative to the traditional synthetic fungicides for controlling R. solani and E. carotovora.
机译:在该研究中,通过使P-芳族胺与碳二硫化物反应并进一步用分子碘进行,得到相应的异硫氰酸酯衍生物来制备一系列p-芳族异硫氰酸酯。新合成化合物的结构由IR,NMR和MS数据确认。测试了对植物致病性真菌和细菌的产品的活性,接近结构 - 活性关系。对硝基苯基异硫氰酸酯最有效地抑制Rhizoctonia Solani和Erwinia Carotovora。七种芳族异硫氰酸酯的顺序抗纤维运动是下列:P-硝基苯基>对甲氧基苯基&氯苯基> p-甲基苯基&乙基苯基&苯基&对氟苯基。对于抗菌活性,顺序是p-硝基苯基。氯苯基> p-甲基苯基&乙基苯基& p-氟苯基&苯基&对甲氧基苯基。本研究表明,一些化合物表现出有前途的抗微生物活性,可用作传统的合成杀菌剂的替代方法,用于控制R.Solani和E.Carotovora。

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