Citation: Le Pan, Xiu-Zhuang Li, Di-An Sun, Hui Jin, Hong-Ru Guo, Bo Qin. Design and synthesis of novel coumarin analogs and their nematicidal activity against five phytonematodes[J]. Chinese Chemical Letters, ;2016, 27(03): 375-379. doi: 10.1016/j.cclet.2016.01.029 shu

Design and synthesis of novel coumarin analogs and their nematicidal activity against five phytonematodes

  • Corresponding author: Bo Qin, 
  • Received Date: 26 June 2015
    Available Online: 15 November 2015

  • The presence of hydroxyl groups at the C4 and C7 positions in coumarin backbone has been proposed as a potential modification site for providing excellent bioactivity according to previous studies. A series of novel coumarin derivatives were rationally designed and synthesized by use of a complex catalytic system for a targeted modification at the above sites. These derivatives were assayed for nematicidal activity. As predicted, the derivatization enhanced the activity of the coumarins against five nematodes. Compounds 7b, 9a, 10c and 11c showed significant strong nematicidal broad spectrum activity against all tested nematodes. Compound 10c was the most effective with the lowest LC50 values against Meloidogyne incognita (5.1 μmol/L), Ditylenchus destructor (3.7 μmol/L), Bursaphelenchus mucronatus (6.4 μmol/L), Bursaphelenchus B. xylophilus (2.5 μmol/L) and Aphelenchoides besseyi (3.1 μmol/L), respectively. A brief investigation on the structure-activity relationships (SAR) revealed that the targeted modification by a C7 hydroxyl was optimum compared with that of a C4 hydroxyl and that the coupling chain length was crucial for the nematicidal activity.
  • 加载中
    1. [1]

      [1] N.G. Ntalli, P. Caboni, Botanical nematicides:a review, J. Agric. Food. Chem. 60(2012) 9929-9940.

    2. [2]

      [2] J.T. Pechacek, T.M. Bargar, M.R. Sabol, (Ⅰ)nhibition of nematode induced root damage by derivatives of methylenecyclopropane acetic acid, Bioorg. Med. Chem. Lett. 7(1997) 2665-2668.

    3. [3]

      [3] D.J. Chitwood, Research on plant-parasitic nematode biology conducted by the United States Department of Agriculture-Agricultural Research Service, Pest. Manag. Sci. 59(2003) 748-753.

    4. [4]

      [4] T.C. Thoden, M. Boppré, J. Hallmann, Effects of pyrrolizidine alkaloids on the performance of plant-parasitic and free-living nematodes, Pest. Manag. Sci. 65(2009) 823-830.

    5. [5]

      [5] (Ⅰ).O. Giannakou, (Ⅰ).A. Anastasiadis, S.R. Gowen, et al., Effects of a non-chemical nematicide combined with soil solarization for the control of root-knot nematodes, Crop. Prot. 26(2007) 1644-1654.

    6. [6]

      [6] D.J. Chitwood, S.L.F. Meyer, Phytochemically based nematode control:opportunities and challenges, J. Nematol. 46(2014), 145-145.

    7. [7]

      [7] J. Kearn, E. Ludlow, J. Dillon, et al., Fluensulfone is a nematicide with a mode of action distinct from anticholinesterases and macrocyclic lactones, Pestic. Biochem. Phys. 109(2014) 44-57.

    8. [8]

      [8] S.M. Seo, J. Kim, S.H. Koh, et al., Nematicidal activity of natural ester compounds and their analogues against pine wood nematode, Bursaphelenchus xylophilus, J. Agr. Food. Chem. 62(2014) 9103-9108.

    9. [9]

      [9] D.J. Chitwood, Phytochemical based strategies for nematode control, Annu. Rev. Phytopathol. 40(2002) 221.

    10. [10]

      [10] M.E. Riveiro,N.De Kimpe, A. Moglioni, et al., Coumarins:old compounds with novel promising therapeutic perspectives, Curr. Med. Chem. 17(2010) 1325-1338.

    11. [11]

      [11] B.R. Vijay Avin, P. Thirusangu, V. Lakshmi Ranganatha, et al., Synthesis and tumor inhibitory activity of novel coumarin analogs targeting angiogenesis and apoptosis, Eur. J. Med. Chem. 75(2014) 211-221.

    12. [12]

      [12] M.E. Riveiro, D. Maes, R. Vázquez, et al., Coumarins:old compounds with novel promising therapeutic perspectives, Bioorg. Med. Chem. 17(2009) 6547-6559.

    13. [13]

      [13] H. Cui, H. Jin, Q. Liu, et al., Nematicidal metabolites from roots of Stellera chamaejasme against Bursaphelenchus xylophilus and Bursaphelenchus mucronatus, Pest. Manag. Sci. 70(2014) 827-835.

    14. [14]

      [14] Z. Yang, Z. Yu, L. Lei, et al., Nematicidal effect of volatiles produced by Trichoderma sp, J. Asia-Pac. Entomol. 15(2012) 647-650.

    15. [15]

      [15] K. Takaishi, M. (Ⅰ)zumi, N. Baba, et al., Synthesis and biological evaluation of alkoxycoumarins as novel nematicidal constituents, Bioorg. Med. Chem. Lett. 18(2008) 5614-5617.

    16. [16]

      [16] S. Lee, K. Sivakumar, W.S. Shin, et al., Synthesis and anti-angiogenesis activity of coumarin derivatives, Bioorg. Med. Chem. Lett. 16(2006) 4596-4599.

    17. [17]

      [17] M. Kawase, H. Sakagami, K. Hashimoto, et al., Structure-cytotoxic activity relationships of simple hydroxylated coumarins, Anticancer. Res. 23(2003) 3243-3246.

    18. [18]

      [18] M. Adfa, Y. Hattori, T. Yoshimura, et al., Antitermite activity of 7-alkoxycoumarins and related analogs against Coptotermes formosanus Shiraki, (Ⅰ)nt. Biodeterior. Biodegrad. 74(2012) 129-135.

    19. [19]

      [19] Y. Chen, S.L. Wang, X.Q. Xu, et al., Synthesis and biological investigation of coumarin piperazine (piperidine) derivatives as potential multireceptor atypical antipsychotics, J. Med. Chem. 56(2013) 4671-4690.

    20. [20]

      [20] N. Priya, A. Gupta, K. Chand, et al., Characterization of 4-methyl-2-oxo-1, 2-dihydroquinolin-6-yl acetate as an effective antiplatelet agent, Bioorg. Med. Chem. Lett. 18(2010) 4085-4094.

    21. [21]

      [21] Q.L. Dang, W.K. Kim, C.M. Nguyen, et al., Nematicidal and antifungal activities of annonaceous acetogenins from Annona squamosa against various plant pathogens, J. Agr. Food. Chem. 59(2011) 11160-11167.

    22. [22]

      [22] P. Caboni, L. Tronci, B. Liori, et al., Tulipaline A:structure-activity aspects as a nematicide and V-ATPase inhibitor, Pestic. Biochem. Phys. 112(2014) 33-39.

    23. [23]

      [23] J.O. Kong, S.M. Lee, Y.S. Moon, et al., Nematicidal activity of plant essential oils against Bursaphelenchus xylophilus (Nematoda:Aphelenchoididae), J. Asia-Pac. Entomol. 9(2006) 173-178.

  • 加载中
    1. [1]

      Yulong ShiFenbei ChenMengyuan WuXin ZhangRunze MengKun WangYan WangYuheng MeiQionglu DuanYinghong LiRongmei GaoYuhuan LiHongbin DengJiandong JiangYanxiang WangDanqing Song . Chemical construction and anti-HCoV-OC43 evaluation of novel 10,12-disubstituted aloperine derivatives as dual cofactor inhibitors of TMPRSS2 and SR-B1. Chinese Chemical Letters, 2024, 35(5): 108792-. doi: 10.1016/j.cclet.2023.108792

    2. [2]

      Anqiu LIULong LINDezhi ZHANGJunyu LEIKefeng WANGWei ZHANGJunpeng ZHUANGHaijun HAO . Synthesis, structures, and catalytic activity of aluminum and zinc complexes chelated by 2-((2,6-dimethylphenyl)amino)ethanolate. Chinese Journal of Inorganic Chemistry, 2024, 40(4): 791-798. doi: 10.11862/CJIC.20230424

    3. [3]

      Maitri BhattacharjeeRekha Boruah SmritiR. N. Dutta PurkayasthaWaldemar ManiukiewiczShubhamoy ChowdhuryDebasish MaitiTamanna Akhtar . Synthesis, structural characterization, bio-activity, and density functional theory calculation on Cu(Ⅱ) complexes with hydrazone-based Schiff base ligands. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1409-1422. doi: 10.11862/CJIC.20240007

    4. [4]

      Wenyi MeiLijuan XieXiaodong ZhangCunjian ShiFengzhi WangQiqi FuZhenjiang ZhaoHonglin LiYufang XuZhuo Chen . Design, synthesis and biological evaluation of fluorescent derivatives of ursolic acid in living cells. Chinese Chemical Letters, 2024, 35(5): 108825-. doi: 10.1016/j.cclet.2023.108825

    5. [5]

      Guangyao WangZhitong XuYe QiYueguang FangGuiling NingJunwei Ye . Electrospun nanofibrous membranes with antimicrobial activity for air filtration. Chinese Chemical Letters, 2024, 35(10): 109503-. doi: 10.1016/j.cclet.2024.109503

    6. [6]

      Ruikui YANXiaoli CHENMiao CAIJing RENHuali CUIHua YANGJijiang WANG . Design, synthesis, and fluorescence sensing performance of highly sensitive and multi-response lanthanide metal-organic frameworks. Chinese Journal of Inorganic Chemistry, 2024, 40(4): 834-848. doi: 10.11862/CJIC.20230301

    7. [7]

      Jingqi Ma Huangjie Lu Junpu Yang Liangwei Yang Jian-Qiang Wang Xianlong Du Jian Lin . Rational design and synthesis of a uranyl-organic hybrid for X-ray scintillation. Chinese Journal of Structural Chemistry, 2024, 43(5): 100275-100275. doi: 10.1016/j.cjsc.2024.100275

    8. [8]

      Ting WangXin YuYaqiang Xie . Unlocking stability: Preserving activity of biomimetic catalysts with covalent organic framework cladding. Chinese Chemical Letters, 2024, 35(6): 109320-. doi: 10.1016/j.cclet.2023.109320

    9. [9]

      Bairu MengZongji ZhuoHan YuSining TaoZixuan ChenErik De ClercqChristophe PannecouqueDongwei KangPeng ZhanXinyong Liu . Design, synthesis, and biological evaluation of benzo[4,5]thieno[2,3-d]pyrimidine derivatives as novel HIV-1 NNRTIs. Chinese Chemical Letters, 2024, 35(6): 108827-. doi: 10.1016/j.cclet.2023.108827

    10. [10]

      Zhengzheng LIUPengyun ZHANGChengri WANGShengli HUANGGuoyu YANG . Synthesis, structure, and electrochemical properties of a sandwich-type {Co6}-cluster-added germanotungstate. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1173-1179. doi: 10.11862/CJIC.20240039

    11. [11]

      Xiaoxia WANGYa'nan GUOFeng SUChun HANLong SUN . Synthesis, structure, and electrocatalytic oxygen reduction reaction properties of metal antimony-based chalcogenide clusters. Chinese Journal of Inorganic Chemistry, 2024, 40(6): 1201-1208. doi: 10.11862/CJIC.20230478

    12. [12]

      Chen LianSi-Han ZhaoHai-Lou LiXinhua Cao . A giant Ce-containing poly(tungstobismuthate): Synthesis, structure and catalytic performance for the decontamination of a sulfur mustard simulant. Chinese Chemical Letters, 2024, 35(10): 109343-. doi: 10.1016/j.cclet.2023.109343

    13. [13]

      Xiangyuan Zhao Jinjin Wang Jinzhao Kang Xiaomei Wang Hong Yu Cheng-Feng Du . Ni nanoparticles anchoring on vacuum treated Mo2TiC2Tx MXene for enhanced hydrogen evolution activity. Chinese Journal of Structural Chemistry, 2023, 42(10): 100159-100159. doi: 10.1016/j.cjsc.2023.100159

    14. [14]

      Xinyi Hu Riguang Zhang Zhao Jiang . Depositing the PtNi nanoparticles on niobium oxide to enhance the activity and CO-tolerance for alkaline methanol electrooxidation. Chinese Journal of Structural Chemistry, 2023, 42(11): 100157-100157. doi: 10.1016/j.cjsc.2023.100157

    15. [15]

      Bin DongNing YuQiu-Yue WangJing-Ke RenXin-Yu ZhangZhi-Jie ZhangRuo-Yao FanDa-Peng LiuYong-Ming Chai . Double active sites promoting hydrogen evolution activity and stability of CoRuOH/Co2P by rapid hydrolysis. Chinese Chemical Letters, 2024, 35(7): 109221-. doi: 10.1016/j.cclet.2023.109221

    16. [16]

      Tao YuVadim A. SoloshonokZhekai XiaoHong LiuJiang Wang . Probing the dynamic thermodynamic resolution and biological activity of Cu(Ⅱ) and Pd(Ⅱ) complexes with Schiff base ligand derived from proline. Chinese Chemical Letters, 2024, 35(4): 108901-. doi: 10.1016/j.cclet.2023.108901

    17. [17]

      Jia ChenYun LiuZerong LongYan LiHongdeng Qiu . Colorimetric detection of α-glucosidase activity using Ni-CeO2 nanorods and its application to potential natural inhibitor screening. Chinese Chemical Letters, 2024, 35(9): 109463-. doi: 10.1016/j.cclet.2023.109463

    18. [18]

      Kaimin WANGXiong GUNa DENGHongmei YUYanqin YEYulu MA . Synthesis, structure, fluorescence properties, and Hirshfeld surface analysis of three Zn(Ⅱ)/Cu(Ⅱ) complexes based on 5-(dimethylamino) isophthalic acid. Chinese Journal of Inorganic Chemistry, 2024, 40(7): 1397-1408. doi: 10.11862/CJIC.20240009

    19. [19]

      Guo-Ping YinYa-Juan LiLi ZhangLing-Gao ZengXue-Mei LiuChang-Hua Hu . Citrinsorbicillin A, a novel homotrimeric sorbicillinoid isolated by LC-MS-guided with cytotoxic activity from the fungus Trichoderma citrinoviride HT-9. Chinese Chemical Letters, 2024, 35(8): 109035-. doi: 10.1016/j.cclet.2023.109035

    20. [20]

      Simin WeiYaqing YangJunjie LiJialin WangJinlu TangNingning WangZhaohui Li . The Mn/Yb/Er triple-doped CeO2 nanozyme with enhanced oxidase-like activity for highly sensitive ratiometric detection of nitrite. Chinese Chemical Letters, 2024, 35(6): 109114-. doi: 10.1016/j.cclet.2023.109114

Metrics
  • PDF Downloads(0)
  • Abstract views(563)
  • HTML views(24)

通讯作者: 陈斌, bchen63@163.com
  • 1. 

    沈阳化工大学材料科学与工程学院 沈阳 110142

  1. 本站搜索
  2. 百度学术搜索
  3. 万方数据库搜索
  4. CNKI搜索
Address:Zhongguancun North First Street 2,100190 Beijing, PR China Tel: +86-010-82449177-888
Powered By info@rhhz.net

/

DownLoad:  Full-Size Img  PowerPoint
Return