Why is it so clean under the apple trees: discovery of novel phloretin derivatives as potential herbicidal agents
文献类型: 外文期刊
第一作者: Duan, Chun-Bao
作者: Duan, Chun-Bao;Zhao, Xin-Ying;Xu, Hui-Lin;Jiang, En-Yu;Wang, Nian-Nian;Chen, Zhaoxia;Zhang, Ming-Zhi;Zhang, Wei-Hua;Hou, Jiayin;Chen, Liezhong;Gao, Jie;Bian, Qiang;Hao, Ge-Fei
作者机构:
关键词: phloretin derivative; lead modification; herbicidal activity; target exploring
期刊名称:PEST MANAGEMENT SCIENCE ( 影响因子:3.8; 五年影响因子:4.3 )
ISSN: 1526-498X
年卷期: 2025 年 81 卷 7 期
页码:
收录情况: SCI
摘要: BACKGROUND: Weeds are a serious problem in worldwide agricultural production. Natural products are a notable source for discovering new lead compounds. Phloretin is a dihydrochalcone compound which was discovered in 1835 and named after its concentrated content in roots, stems or bark of fruits. Within apple orchards, there are typically fewer weeds on the areas covered with fallen leaves compared to areas without fallen leaves. This interesting phenomenon suggested that phloretin may have potential herbicidal activity. Through the principle of bioisosterism and combination of active structural moieties, structures of amide, chalcone and flavanone were integrated with phloretin, with the objective to obtain novel phloretin derivatives to test as herbicides. RESULTS: Fifty-seven novel phloretin derivatives were designed and assayed for their herbicidal activity. Some compounds showed safety to rape and excellent inhibitory activity against purslane. Modeling of ligand docking suggested that phytoene desaturase and protoporphyrinogen oxidase may be potential herbicidal targets of phloretin derivatives. CONCLUSION: Most compounds that combined phloretin and amide together showed significant inhibition of purslane growth while retaining safety on rape. Some of these compounds warrant further structural modification with potential for becoming lead compounds. Virtual screening also explored two possible targets of phloretin derivatives and they deserve further biological verification. (c) 2025 Society of Chemical Industry.
分类号:
- 相关文献
作者其他论文 更多>>
-
Deciphering Trachinotus ovatus resistance to Streptococcus agalactiae:GWAS :GWAS identification of key SNPs and candidate genes
作者:Sun, Yi-Yao;Gao, Jie;Liu, Bao-Suo;Zhang, Nan;Guo, Hua-Yang;Zhu, Ke-Cheng;Xian, Lin;Zhang, Dian-Chang;Sun, Yi-Yao;Liu, Bao-Suo;Zhang, Nan;Guo, Hua-Yang;Zhu, Ke-Cheng;Xian, Lin;Zhang, Dian-Chang;Liu, Bao-Suo;Zhang, Nan;Zhu, Ke-Cheng;Zhang, Dian-Chang;Gao, Jie
关键词:GWAS; Trachinotus ovatus; Streptococcus agalactiae; SNP
-
Water-soluble stimuli-responsive supramolecular nanoagrochemicals based on macrocycle compounds
作者:Song, Ya-Hui;Bian, Qiang;Yang, Yi-Hang;Zhang, Ying-Ming;Liu, Yu;Wang, Fang;Liu, Jinpeng
关键词:Supramolecular assemblies; Host-guest complexation; Macrocycles; Stimuli-responsiveness; Nanoagrochemicals
-
Functional Characterization of Galectin-8 from Golden Pompano Trachinotus ovatus Reveals Its Broad-Spectrum Antimicrobial Activity
作者:Pan, Jin-Min;Gao, Jie;Liu, Ming Jian;Zhu, Ke-Cheng;Guo, Hua-Yang;Liu, Bao-Suo;Zhang, Nan;Zhang, Dian-Chang;Zhu, Ke-Cheng;Liu, Bao-Suo;Zhang, Nan;Zhang, Dian-Chang;Zhu, Ke-Cheng;Guo, Hua-Yang;Liu, Bao-Suo;Zhang, Nan;Zhang, Dian-Chang;Pan, Jin-Min;Gao, Jie
关键词:
Galectin-8 ; Antibacterial activity;Trachinotus ovatus ;Streptococcus agalactiae -
Colonization of Serendipita indica enhances resistance against Phoma arachidicola in Arachis hypogaea L (vol 41, 28, 2025)
作者:Wang, Chen;Ding, Ao;Han, Di;Gao, Jie;Du, Si-Tong;Wei, Yi;Huang, Yu-Qian;Zhang, Shi-Hong;Ahsan, Taswar;Liang, Chun-Hao
关键词:
-
Estimation of Processing Tomato Nutrient Uptake Based on the QUEFTS Model in Xinjiang
作者:Yibati, Halihashi;Gao, Jie;Yibati, Halihashi;Zhang, Yan;Li, Qingjun;Xu, Xinpeng;He, Ping;Yin, Xinhua
关键词:processing tomato; fruit yield; QUEFTS model; nutrient; internal efficiency (IE)
-
Peanut-Colonized Piriformospora indica Enhanced Drought Tolerance by Modulating the Enzymes and Expression of Drought-Related Genes
作者:Gao, Jie;Wang, Chen;Tian, Pei-Cong;Liu, Chuang;Wei, Yi;Huang, Yu-Qian;Zhang, Shi-Hong;Ahsan, Taswar
关键词:antioxidant enzymes; drought-related genes; PEG6000 drought stress; Piriformospora indica
-
Colonization of Serendipita indica enhances resistance against Phoma arachidicola in Arachis hypogaea L
作者:Wang, Chen;Ding, Ao;Han, Di;Gao, Jie;Du, Si-Tong;Wei, Yi;Huang, Yu-Qian;Zhang, Shi-Hong;Ahsan, Taswar;Liang, Chun-Hao
关键词:Peanut web blotch; Disease resistance; Salicylic acid; Flavonoid biosynthesis