Gas Chromatography-Mass Spectrometric Analysis of Nematicidal Essential Oil of Valeriana amurensis P Smirn ex Kom (Valerianaceae) Roots and its Activity against Heterodera avenae

文献类型: 外文期刊

第一作者: Li, Yun Chao

作者: Li, Yun Chao;Ji, Hua;Li, Hong Tao

作者机构:

关键词: Valeriana amurensis;Heterodera avenae;Nematicidal activity;Isovaleric acid;3-Methylvaleric acid;Essential oil;Cereal cyst nematodes

期刊名称:TROPICAL JOURNAL OF PHARMACEUTICAL RESEARCH ( 影响因子:0.533; 五年影响因子:0.743 )

ISSN: 1596-5996

年卷期: 2015 年 14 卷 9 期

页码:

收录情况: SCI

摘要: Purpose: To investigate the chemical composition and nematicidal activity of the essential oil of Valeriana amurensis roots against cereal cyst nematodes (Heterodera avenae). Methods: The essential oil of V. amurensis roots was obtained by hydrodistillation and analyzed by gas chromatography (GC) and gas chromaotography-mass spectrometry (GC-MS). The nematicidal activity of the essential oil and its major constituents was determined against second stage juveniles of H. avenae. Results: A total of 33 components of the essential oil were identified. The major constituents were bornyl acetate (12.5 %), patchoulol (11.6 %), caryophyllene (8.2 %), 3-methylvaleric acid (7.3 %) and isovaleric acid (6.5 %). The essential oil exhibited nematicidal activity against H. avenae with a medium lethal concentration (LC50) value of 311.6 mu g/mL. The major constituents, isovaleric acid and 3-methylvaleric acid, exhibited nematicidal activity against H. avenae with LC50 of 218.2 and 683.8 mu g/mL, respectively. Conclusion: The study indicates that the essential oil of V. amurensis roots and its two major constituents, isovaleric acid and 3-methylvaleric acid, have a potential to be developed to natural nematicides for the control of cereal cyst nematodes.

分类号:

  • 相关文献

[1]Isolation of nematicidal constituents from essential oil of Kaempferia galanga L rhizome and their activity against Heterodera avenae Wollenweber. Li, Yun Chao,Ji, Hua,Li, Hong Tao,Li, Yun Chao,Ji, Hua,Li, Hong Tao,Li, Xiu Hua,Zhang, Hai Xin. 2017

[2]GC-MS Analysis of Nematicidal Essential Oil of Mentha canadensis Aerial Parts against Heterodera avenae and Meloidogyne incognita. Ji, Hua,Li, Yun Chao,Wen, Zhi Yu,Li, Hong Tao,Ji, Hua,Li, Yun Chao,Wen, Zhi Yu,Li, Hong Tao,Li, Xiu Hua,Zhang, Hai Xin.

[3]Biocontrol of cereal cyst nematode by Streptomyces anulatus isolate S07. Zhang, J.,Wang, L. M.,Li, Y. H.,Ding, S. L.,Yuan, H. X.,Li, H. L.,Riley, I. T.,Li, H. L.,Li, H. L..

[4]Nematicidal activity of Gymnoascus reesii against Meloidogyne incognita. Liu, Jian-Hua,Qiu, Ji-Yan,Jiang, Li-li,Yan, Ji-Ye,Liu, Ting,Liu, Wei-Cheng,Liu, Jian-Hua,Duan, Yu-Xi,Wang, Li. 2011

[5]Isolation and identification of chemical constituents from the bacterium Bacillus sp and their nematicidal activities. Zeng, Liming,Jin, Hui,Yangl, Xiaoyan,Pan, Le,Cui, Haiyan,He, Xiaofeng,Qiul, Hongdeng,Qin, Bo,Zeng, Liming,Jin, Hui,Yangl, Xiaoyan,Pan, Le,Cui, Haiyan,He, Xiaofeng,Qiul, Hongdeng,Qin, Bo,Zeng, Liming,Pan, Le,Cui, Haiyan,Jin, Hui,Lu, Dengxue.

[6]The recombinant serine protease XAoz1 of Arthrobotrys oligospora exhibits potent nematicidal activity against Caenorhabditis elegans and Haemonchus contortus. Wang Junwei,Meng Qingling,Qiao Jun,Wang Weisheng,Chen Shuangqing,Zhao Chunguang,Chen Chuangfu,Luo Jianxun.

[7]Mutagenic effects of low-energy N+ ion implantation on the propamocarb-tolerance of nematophagous fungus Lecanicillium attenuatum. Xie, Ming,Zhang, Xiao-Lin,Hu, Xin-Ping,Zhang, Yan-Jun,Peng, De-Liang,Li, Qian,Li, Ming. 2018

[8]A new nematicidal compound produced by Streptomyces albogriseolus HA10002. Zeng, Qingfei,Huang, Huiqin,Zhu, Jun,Fang, Zhe,Sun, Qianguang,Bao, Shixiang.

[9]Complete genome sequence of Bacillus thuringiensis YC-10, a novel active strain against plant-parasitic nematodes. Song, Zhiqiang,Cheng, Ju'e,Zhang, Deyong,Liu, Yong,Cheng, Feixue,Song, Zhiqiang,Cheng, Ju'e,Zhang, Deyong,Liu, Yong,Wang, Jian.

[10]Mycology, cultivation, traditional uses, phytochemistry and pharmacology of Wolfiporia cocos (Schwein.) Ryvarden et Gilb.: A review. Wang, Yuan-Zhong,Zhang, Ji,Zhao, Yan-Li,Li, Wan-Yi,Li, Tao,Shen, Tao,Li, Jie-Qing,Liu, Hong-Gao.

[11]Comparative analysis of pre- and post-parasitic transcriptomes and mining pioneer effectors of Heterodera avenae. Yang, Dan,Chen, Changlong,Liu, Qian,Jian, Heng,Chen, Changlong. 2017

[12]Large-Scale Identification and Characterization of Heterodera avenae Putative Effectors Suppressing or Inducing Cell Death in Nicotiana benthamiana. Chen, Changlong,Chen, Yongpan,Jian, Heng,Yang, Dan,Dai, Yiran,Pan, Lingling,Shi, Fengwei,Yang, Shanshan,Liu, Qian,Chen, Changlong,Pan, Lingling,Shi, Fengwei. 2018

[13]Testing and modelling the potential of three diploid plants in Poaceae as a new pathosystem to investigate the interactions between cereal hosts and cereal cyst nematode (Heterodera avenae). Wu, D. Q.,Cui, J. K.,Huang, W. K.,Peng, H.,Peng, D. L..

[14]Golden Promise barley (Hordeum vulgare) is a suitable candidate model host for investigation interaction with Heterodera avenae. Kong Ling-an,Peng Huan,Huang Wen-kun,Cui Jiang-kuan,Liu Jing,Qiao Fen,Peng De-liang,Luo Shu-jie,Jian Heng. 2017

[15]Host status of Brachypodium distachyon to the cereal cyst nematode. Chen Chang-long,Liu Shu-sen,Liu Qian,Liu Pei,Zhao Jian-long,Jian Heng,Chen Chang-long,Li Hong-jie,Liu Shu-sen,Niu Jun-hai,Liu Zhi-yong,Liu Zhi-yong. 2018

[16]A new pathotype characterization of Daxing and Huangyuan populations of cereal cyst nematode (Heterodera avenae) in China. Huang Wen-kun,Peng Huan,Liu Shi-ming,Wang Gao-feng,Kong Lin-an,Peng De-liang. 2015

[17]Large-scale identification of wheat genes resistant to cereal cyst nematode Heterodera avenae using comparative transcriptomic analysis. Wu, Du-Qing,Huang, Wen-Kun,Peng, Huan,Wang, Gao-Feng,Cui, Jiang-Kuan,Liu, Shi-Ming,Peng, De-Liang,Li, Zhi-Gang,Yang, Jun,Li, Zhi-Gang,Yang, Jun. 2015

[18]Molecular Characterization and Functional Analysis of a New Acid Phosphatase Gene (Ha-acp1) from Heterodera avenae. Huang Wen-kun,Long Hai-bo,Peng Huan,He Wen-ting,Peng De-liang. 2014

[19]The impact of resistant and susceptible wheat cultivars on the multiplication of Heterodera filipjevi and H-avenae in parasite-infested soil. Cui, L.,Sun, L.,Gao, X.,Song, W.,Wang, X. M.,Li, H. J.,Cui, L.,Liu, Z. Y.,Cui, L.,Li, H. L.,Tang, W. H..

[20]Molecular characterization and functional analysis of two new-1,4-endoglucanase genes (Ha-eng-2, Ha-eng-3) from the cereal cyst nematode Heterodera avenae. Peng, D.,Huang, W.,Peng, H.,Wang, G.,Long, H.. 2013

作者其他论文 更多>>