Message Board

Dear readers, authors and reviewers,you can add a message on this page. We will reply to you as soon as possible!

2024 Volume 3 Issue 2
Article Contents

XIA Menghao, PAN Deng, LI Chuanzhen, et al. Combined Toxicity of Lufenuron and Other Insecticides to Panonychus citri (McGregor)[J]. PLANT HEALTH AND MEDICINE, 2024, (2): 30-37. doi: 10.13718/j.cnki.zwyx.2024.02.004
Citation: XIA Menghao, PAN Deng, LI Chuanzhen, et al. Combined Toxicity of Lufenuron and Other Insecticides to Panonychus citri (McGregor)[J]. PLANT HEALTH AND MEDICINE, 2024, (2): 30-37. doi: 10.13718/j.cnki.zwyx.2024.02.004

Combined Toxicity of Lufenuron and Other Insecticides to Panonychus citri (McGregor)

More Information
  • Received Date: 29/02/2024
  • MSC: S433.7

  • In order to screen the compound pesticides that have synergistic effect with lufenuron on Panonychus citri (McGregor), the combined virulent properties of lufenuron with pyridaben, avermectins, bifenazate, cyflumetofen, propargite and chlorfenapyr were determined by spray method. The combined virulence of each combination was evaluated by measuring co-toxicity factor and co-toxicity coefficient. The results showed that there were 8 groups of combination with co-toxicity factor greater than 20, and the highest co-toxicity factor was 79.78 with the mass ratio of lufenuron to cyflumetofen of 1 000∶287. There were 10 groups of combination with co-toxicity coefficient greater than 120. The better co-toxicity coefficient and the better significant synergism of lufenuron combined with avermectins, cyflumetofen and pyridaben was the mass ratios of 1 000∶22, 1 000∶240 and 1 000∶1 173, with the co-toxicity coefficient of 156.65, 140.43 and 159.03, and the LC50 of 42.463 mg/L, 25.740 mg/L and 39.619 mg/L, respectively. Therefore, lufenuron and pyridaben have the best control effect on Panonychus citri when combined at a mass ratio of 1 000∶1 173, The results provided a theoretical basis for the control of pest mites in the field and the scientific and rational use of lufenuron.
  • 加载中
  • [1] LI L, WANG R, WATERHOUSE D F. The Distribution and Importance of Arthropod Pests and Weeds of Agriculture and Forestry Plantations in Southern China[M]. Australian Centre for International Agricultural Research (ACIAR), 1997.

    Google Scholar

    [2] KANT M R, AMENT K, SABELIS M W, et al. Differential Timing of Spider Mite-Induced Direct and Indirect Defenses in Tomato Plants[J]. Plant Physiology, 2004, 135(1):483-495.

    Google Scholar

    [3] 张振, 封海东, 秦光明, 等. 柑橘全爪螨药剂防治研究进展[J]. 农业与技术, 2017, 37(12):64-65.

    Google Scholar

    [4] YAMAMOTO A, YONEDA H, HATANO R, et al. Genetic Analysis of Hexythiazox Resistance in the Citrus Red Mite, Panonychus citri (McGregor) [J]. Journal of Pesticide Science, 1995, 20(4):513–519.

    Google Scholar

    [5] PAND, DOUW, YUANG R, et al. Monitoring the Resistance of the Citrus Red Mite (Acari:Tetranychidae) to Four Acaricides in Different Citrus Orchards in China[J]. Journal of Economic Entomology, 2020, 113(2):918-923.

    Google Scholar

    [6] 何恒果. 桔全爪螨对甲氰菊酯和阿维菌素的抗性及其酯酶基因的克隆与表达研究[D]. 重庆:西南大学, 2010.

    Google Scholar

    [7] 刘永华, 蒋红波, 袁明龙, 等. 柑橘全爪螨对4种杀螨剂的抗性监测及增效作用[J]. 果树学报, 2010, 27(4):570-574.

    Google Scholar

    [8] 黄振东, 方培林, 陈道茂, 等. 浙江柑橘全爪螨对炔螨特的敏感性变化[J]. 植物保护, 2006, 32(4):94-96.

    Google Scholar

    [9] 刘国强, 白冰, 毕于慧, 等. 辣椒碱与3种药剂对温室白粉虱的联合毒力[J]. 植物保护, 2021, 47(4):305-309.

    Google Scholar

    [10] 饶美香, 申昌德, 刘红波, 等. 啶虫脒与杀螟硫磷混配对烟蚜的联合毒力[J]. 赣南师范大学学报, 2019, 40(3):57-60.

    Google Scholar

    [11] 苏栩, 汪耿, 宋诚, 等. 苦参碱与多杀菌素复配对麦二叉蚜的联合毒力[J]. 河南科技学院学报(自然科学版), 2020, 48(2):28-31.

    Google Scholar

    [12] 王雪, 梁晓, 卢芙萍, 等. 联苯肼酯与炔螨特混配对朱砂叶螨的联合毒力作用[J]. 热带作物学报, 2017, 38(5):932-938.

    Google Scholar

    [13] 孙凌莉, 李岚, 江才鑫, 等. 虱螨脲的合成进展[J]. 浙江化工, 2011, 42(3):5-7.

    Google Scholar

    [14] 姚永生, 李春芳, 叶花香, 等. 虱螨脲对棉铃虫实验种群的生物活性研究[J]. 华北农学报, 2008, 23(S1):243-247.

    Google Scholar

    [15] 贾变桃, 卢晶晶, 袁嘉伟, 等. 虱螨脲对小菜蛾成虫繁殖力及子代种群发展的影响[J]. 植物保护学报, 2019, 46(3):582-588.

    Google Scholar

    [16] 朱卫锋, 任太军, 曾鑫年. 虱螨脲与虫酰肼的增效作用及防治斜纹夜蛾的药效[J]. 广东农业科学, 2011, 38(11):104-106.

    Google Scholar

    [17] 孙红军, 南艳, 周颖. 一种含虱螨脲和噻虫嗪的增效杀虫组合剂:CN114680124A[P]. 2022-07-01.

    Google Scholar

    [18] 赵鹏勃, 戴荣华, 韦能春, 等. 一种唑螨酯和虱螨脲的农药组合物:CN106982852A[P]. 2017-07-28.

    Google Scholar

    [19] 杨寿海, 齐武, 杨瑞成, 等. 一种含虱螨脲的增效杀虫组合物:CN1911024A[P]. 2007-02-14.

    Google Scholar

    [20] MANSOUR N A, ELDEFRAWI M E, TOPPOZADA A, et al. Toxicological Studies on the Egyptian Cotton Leaf Worm, Prodenia Litura. VI. Potentiation and Antagonism of Organophosphorus and Carbamate Insecticides[J]. Journal of Economic Entomology, 1966, 59(2):307-311.

    Google Scholar

    [21] SUNYunpei, JOHNSON E R. Analysis of Joint Action of Insecticides Against House Flies[J]. Journal of Economic Entomology, 1960, 53(5):887-892.

    Google Scholar

    [22] 陈吉祥, 任相亮, 胡红岩, 等. 甲氧虫酰肼与虱螨脲复配对甜菜夜蛾的亚致死效应[C]//绿色植保与乡村振兴——中国植物保护学会2018年学术年会论文集. 西安, 2018:268-269.

    Google Scholar

    [23] 贾变桃, 焦鹏, 杨素梅. 虱螨脲亚致死浓度对小菜蛾保护酶系和解毒酶系活力的影响[J]. 植物保护学报, 2016, 43(2):293-299.

    Google Scholar

    [24] 陈吉祥, 任相亮, 姜伟丽, 等. 甲氧虫酰肼与3种药剂对甜菜夜蛾的联合毒力及亚致死效应[J]. 中国棉花, 2019, 46(2):4-8.

    Google Scholar

    [25] 刘秀梅, 张玉, 史晓利. 12%虱螨脲·虫螨腈SC对甘蓝甜菜夜蛾的田间防治效果[J]. 种子科技, 2021, 39(19):19-20.

    Google Scholar

  • 加载中
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

Article Metrics

Article views(1596) PDF downloads(1603) Cited by(0)

Access History

Combined Toxicity of Lufenuron and Other Insecticides to Panonychus citri (McGregor)

Abstract: In order to screen the compound pesticides that have synergistic effect with lufenuron on Panonychus citri (McGregor), the combined virulent properties of lufenuron with pyridaben, avermectins, bifenazate, cyflumetofen, propargite and chlorfenapyr were determined by spray method. The combined virulence of each combination was evaluated by measuring co-toxicity factor and co-toxicity coefficient. The results showed that there were 8 groups of combination with co-toxicity factor greater than 20, and the highest co-toxicity factor was 79.78 with the mass ratio of lufenuron to cyflumetofen of 1 000∶287. There were 10 groups of combination with co-toxicity coefficient greater than 120. The better co-toxicity coefficient and the better significant synergism of lufenuron combined with avermectins, cyflumetofen and pyridaben was the mass ratios of 1 000∶22, 1 000∶240 and 1 000∶1 173, with the co-toxicity coefficient of 156.65, 140.43 and 159.03, and the LC50 of 42.463 mg/L, 25.740 mg/L and 39.619 mg/L, respectively. Therefore, lufenuron and pyridaben have the best control effect on Panonychus citri when combined at a mass ratio of 1 000∶1 173, The results provided a theoretical basis for the control of pest mites in the field and the scientific and rational use of lufenuron.

Reference (25)

Catalog

    /

    DownLoad:  Full-Size Img  PowerPoint
    Return
    Return