杀螨剂研究进展
详细信息    查看全文 | 推荐本文 |
  • 英文篇名:Research advances on acaricides
  • 作者:刘晓艳 ; 闵勇 ; 饶犇 ; 陈伟 ; 周荣华 ; 王开梅 ; 张光阳 ; 杨自文
  • 英文作者:LIU Xiaoyan;MIN Yong;RAO Ben;CHEN Wei;ZHOU Ronghua;WANG Kaimei;ZHANG Guangyang;YANG Ziwen;Biopesticide Branch,Hubei Innovation Centre of Agricultural Science and Technology,Hubei Biopesticide Engineering Research Centre,Hubei Academy of Agricultural Sciences;
  • 关键词:植食性害螨 ; 杀螨剂 ; 杀螨剂药证登记 ; 杀螨机制
  • 英文关键词:phytophagous mite;;acaricide;;registration of acaricide;;acaricidal mechanism
  • 中文刊名:AJSH
  • 英文刊名:Biotic Resources
  • 机构:湖北省农业科学院湖北省生物农药工程研究中心/湖北省农业科技创新中心生物农药分中心;
  • 出版日期:2019-07-30 09:15
  • 出版单位:生物资源
  • 年:2019
  • 期:v.41;No.168
  • 基金:国家重点研发计划(2017YFD0201205);; 武汉市科技计划项目(2018020401011305);; 湖北省农科院重大研发成果培育专项(2017CGPY01);; 湖北省农业科技创新中心创新团队项目(2016-620-000-001-038)
  • 语种:中文;
  • 页:AJSH201904004
  • 页数:9
  • CN:04
  • ISSN:42-1886/Q
  • 分类号:28-36
摘要
农业害螨具有体积小、在生长季节繁殖快、代数多、适应性强及易产生抗药性等特点,是公认的最难防治的有害生物群落之一。用于防治植食性害螨的农用杀螨剂销售额近年来呈现猛增趋势。本文就目前国内外杀螨剂的种类、杀螨剂市场需求、我国杀螨剂药证登记情况、杀螨机制及杀螨剂开发过程中存在的主要问题加以分析,以期为杀螨剂的研究与创制提供理论基础。
        Agricultural mites are recognized as one of the most difficult biocenosis communities to control due to their small sizes,fast reproduction in the growing season,multiple generations,strong adaptability and susceptibility to drug resistance. Sales of agricultural acaricides for controlling phytophagous mites have shown a sharp increase in recent years. This paper analyzes the types of acaricides,the market demand for acaricides,the registration of acaricides in China,the acaricidal mechanism of acaricides and the main problems existing in the development of acaricides,in order to provide theoretical basis for the research and creation of acaricides.
引文
[1]Cai R L,Guo J J,Jin D C.Review on occurrence char-acteristics and biocontrol of vegetable pest mites[J].Guizhou Agric Sci,2014,42(1):81-86.蔡仁莲,郭建军,金道超.蔬菜叶螨发生特点及其生物防治的研究进展[J].贵州农业科学,2014,1:81-86.
    [2]Cheng L S.Evolution of phytophagous mites[J].Trop Agr Sci,1994,14(1):70-74.程立生.植食性螨类的进化[J].热带农业科学,1994,14(1):70-74.
    [3]Thurling D J.Metabolic rate and life stage of the mites Tetranychus cinnabarinus Boisd.(Prostigmata)and Phytoseiulus persimilis A-H.(Mesostigmata)[J].Oecolo-gia,1980,46(3):391-396.
    [4]Xia J.Occurrence and control of Tetranychus cinnabar[J].Agr Tech Ser,2009,26(8):77-79.夏静.朱砂叶螨的发生规律与防治措施比较[J].农技服务,2009,26(8):77-79.
    [5]Xu H,He Y M.Identification and integrated control of Tetranychus cinnabar[J].Rur Prac Tech,2017(7):46-47.徐洪,何永梅.朱砂叶螨的识别与综合防治[J].农村实用技术,2017(7):46-47.
    [6]He Y M.Green control technology of red spider[J].Pestic Mark New,2016(10):56.何永梅.叶螨(红蜘蛛)绿色防控技术[J].农药市场信息,2016(10):56.
    [7]Liu S W,Song Y Q,Zhang J L,et al.Control effects of SYP-9625 30%SC against different mite targets in field[J].Mod Agrochem,2018,17(3):18-21.刘少武,宋玉泉,张俊龙,等.30%乙唑螨腈悬浮剂防治不同害螨田间药效试验[J].现代农药,2018,17(3):18-21.
    [8]Wang S Y,Guo Q.Research status and development prospects of biogenic acaricides[J].Plant Doc,2013,26(2):6-7.汪仕勇,郭强.生物源杀螨剂研究现状和发展前景[J].植物医生,2013,26(2):6-7.
    [9]Geng Y Q,Wang YJ,Sun Q T.Occurrence and inte-grated control of Tetranychus cinnabar[J].North Hor-tic,2006(6):173.耿艳秋,王一杰,孙庆田.朱砂叶螨发生及综合防治[J].北方园艺,2006(6):173.
    [10]Wang Y L.Control technology of Tetranychus sophorae in Taiyuan area[J].For Shanxi,2016(1):42-43.王雅莉.太原地区国槐朱砂叶螨防治技术[J].山西林业,2016(1):42-43.
    [11]Wang N,Xue Z X.Progress and prospect of the acari-cides[J].Mod Agrochem,2005,4(2):1-8.王宁,薛振祥.杀螨剂的进展与展望[J].现代农药,2005,4(2):1-8.
    [12]Roussel UCLAF.Rarasiticidal cyclopropanecarboxylic acid derivatives:FR 2486073[P].1982-01-08.
    [13]Mitsui higashi chemical co.Insecticidal and acaricidal 2-arylpropylethers or thioethers:FR2481695[P].1981-11-06.
    [14]FMC Technologies.Biphenylmethyl[(perhaloalkyl)vi-nyl]cyclopropanecarboxylates for control of acaricides:US4341796[P].1982-04-21.
    [15]Liu C L.World pesticide information manual[M].Bei-jing:Chemical Industry Press,2000:12-20,31-41.刘长令.世界农药信息手册[M].北京:化学工业出版社,2000:12-20,31-41.
    [16]Chen Z,Song Y,Wen Y,et al.Advances and pros-pects in biosynthesis of avermectin[J].Prog Nat Sci,2007,17(3):290-296.陈芝,宋渊,文莹,等.阿维菌素的生物合成研究进展与展望[J].自然科学进展,2007,17(3):290-296.
    [17]Liang J G,Huang P,Xu Z J.New research progress of avermectin biosynthesis pathway and the metabolic engi-neering[J].Changshu Institute of Technology(Natural Sciences),2007,21(4):65-70.梁剑光,黄鹏,徐正军.阿维菌素生物合成及其代谢途径研究进展[J].常熟理工学院学报(自然科学版),2007,21(4):65-70.
    [18]Zhang Y Q,Ding W,Zhao Z M,et al.On insecticidal and acaricidal activities of a Chinese traditional medici-nal plant clove(Syringa vulgaris)[J].J Southwest Ag-ric Univ Nat Sci,2004,26(4):429-432.张永强,丁伟,赵志模,等.中药植物丁香杀虫杀螨活性研究[J].西南农业大学学报:自然科学版,2004,26(4):429-432.
    [19]Chen X H,Deng Y C,Zhu Y H.Acaricidic activity of46 plant extracts against Panonychus citri McGregor[J].J Guangxi Norm Univ Nat Sci Ed,2006,24(1):94-97.陈新华,邓业成,朱燕红.46种植物提取物对柑橘红蜘蛛的杀螨活性[J].广西师范大学学报,2006,24(1):94-97.
    [20]Jiang S L,Zhao G L,Xue L G.Insecticidal activity of total alkaloids from Sophora alopecuroides[J].Gansu Normal Colleges(Natural Science),1998,3(3):52-54.姜双林,赵国林,薛林贵.苦豆子总生物碱的杀虫活性研究[J].甘肃高师学报:自然科学版,1998,3(3):52-54.
    [21]Shi D Y.Preliminary report on field efficacy of 18%avermectin and acetazole suspension against citrus red spider[J].Anhui Agric Sci Bull,2018,24(9):77-78.石丹艳.18%阿维菌素·乙螨唑悬浮剂防治柑橘红蜘蛛田间药效试验初报[J].安徽农学通报,2018,24(9):77-78.
    [22]Liu X M,Si S Y,Luo H B,et al.Efficacy test of aver-mectin·etoxazole SC on citrus red spider[J].China Fruit Veg,2018,38(3):37-38,46.刘小明,司升云,骆海波,等.阿维菌素·乙螨唑悬浮剂防治柑橘红蜘蛛效果试验[J].中国果菜,2018,38(3):37-38,46.
    [23]Yang B,Zhang S Y,Chen Z,et al.Insecticidal and acaricidal activity of novel compound tenvermectin[J].Chin J Pestic Sci,2016,18(1):124-129.杨波,张绍勇,陈振,等.新化合物天维菌素的杀虫杀螨活性[J].农药学学报,2016,18(1):124-129.
    [24]Shen G L.Laboratory toxicity test and field control ef-fect of liuyangmycin to two kinds of Acari[J].Hunan Agric Sci,2011(15):101-104.申圭良.浏阳霉素对两种螨的室内毒力测定与田间防效[J].湖南农业科学,2011(15):101-104.
    [25]Dunstand-Guzmán E,Pe?a-Chora G,Hallal-Calleros C,et al.Acaricidal effect and histological damage in-duced by Bacillus thuringiensis protein extracts on the mite Psoroptes cuniculi[J].Parasites Vectors,2015,8:285.
    [26]Kim M S,Cho W J,Song M C,et al.Engineered bio-synthesis of milbemycins in the avermectin high-produc-ing strain Streptomyces avermitilis[J].Microb Cell Fact,2017,16(1):9.
    [27]Wang J,Hu J H,Long Y L,et al.Biological character-istics and acaricidal activity of acremonium implicatum to Panonychus citri(McGregor)[J].Plant Prot,2017,43(2):95-101.王娟,胡军华,龙艳玲,等.交枝顶孢霉杀柑橘全爪螨活性及其生物学特性研究[J].植物保护,2017,43(2):95-101.
    [28]Li X Y,Wang Y H,Yang J,et al.Acaricidal Activity of Cyclodipeptides from Bacillus amyloliquefaciens W1against Tetranychus urticae[J].J Agric Food Chem,2018,66(39):10163-10168.
    [29]Ikeda H,Nonomiya T,Usami M,et al.Organization of the biosynthetic gene cluster for the polyketide anthel-mintic macrolide avermectin in Streptomyces avermitilis[J].Proc Natl Acad Sci U S A,1999,96(17):9509-14.
    [30]Zhang L P,Chen C.Biosynthesis of the avermetins[J].J Hebei Univ Nat Sci Ed,2002,22(2):189-194,201.张利平,陈川.阿维菌素生物合成.河北大学学报(自然科学版),2002,22(2):189-194,201.
    [31]Bormann C,Mattern S,Schrempf H,et al.Streptomyces tendae mutants with an altered nikkomycin spectrum[J].J Antibiot,1989,42(6):913-918.
    [32]Wang L,Du D R,Li J E,et al.Engineering and heter-ologous expression of a nikkomycin biosynthetic gene cluster[J].Acta Microbiol Sin,2015,55(6):707-718.王璐,杜德尧,李金娥,等.尼可霉素生物合成基因簇的改造及其异源表达[J].微生物学报,2015,55(6):707-718.
    [33]Liu X Y,Ruan L F,Hu Z F,et al.Genome-wide screening reveals the genetic determinants of an antibiot-ic insecticide in Bacillus thuringiensis[J].J Biol Chem,2010,285(50):39191-39200.
    [34]Liu X Y,Ruan L F,Peng D H,et al.Thuringiensin:A thermostable secondary metabolite from Bacillus thuringiensis with insecticidal activity against wide range of insects[J].Toxins,2014,6(8):2229-2238.
    [35]Zhao P.Market analysis of acetazole acarin and key spe-cies of acaricides in the world[J/OL].(2017-03-02)[2019-04-12].http://www.agroinfo.com.cn/other_de-tail_3801.html.赵平.创制产品乙唑螨腈上市及全球杀螨剂重点品种和市场分析[J/OL].(2017-03-02)[2019-04-12].http://www.agroinfo.com.cn/other_detail_3801.html.
    [36]China pesticide industry association.Operation of China pesticide industry in 2017[J/OL].(2018-07-26)[2019-04-12].http://nongyao.jinnong.cn/n/2018/07/26/2336377244.shtml.中国农药工业协会.中国农药行业2017年运行情况[J/OL].(2018-07-26)[2019-04-12].http://nongyao.jinnong.cn/n/2018/07/26/2336377244.shtml.
    [37]Hatano R,Scott J G,Dennehy T J.Enhanced activa-tion is the mechanism of negative cross-resistance to chlorpyrifos in the Dicofol-IR strain of Tetranychus urticae(Acari:Tetranychidae)[J].J Econ Entomol,1992,85(4):1088-1091.
    [38]Stumpf N,Nauen R.Cross-resistance,inheritance,and biochemistry of mitochondrial electron transport in-hibitor-acaricide resistance in Tetranychus urticae(Aca-ri:Tetranychidae)[J].J Econ Entomol,2001,94(6):1577-1583.
    [39]Eiden A L,Kaufman P E,Oi F M,et al.Determina-tion of metabolic resistance mechanisms in pyrethroid-re-sistant and fipronil-tolerant brown dog ticks[J].Med Vet Entomol,2017,31(3):243-251.
    [40]Kadir H A,Knowles C O.Inhibition of ATP dephos-phorylation by acaricides with emphasis on the anti-ATPase activity of the carbodiimide metabolite of di-afenthiuron[J].J Econ Entomol,1991,84(3):801-805.
    [41]Kim Y J,Park HM,Cho J R,et al.Multiple resistance and biochemical mechanisms of pyridaben resistance in Tetranychus urticae(Acari:Tetranychidae)[J].J Econ Entomol,2006,99(3):954-958.
    [42]Kita T,Hayashi T,Ohtani T,et al.Amitraz and its metabolite differentially activateα-andβ-adrenergic-like octopamine receptors[J].Pest Manag Sci,2017,73(5):984-990.
    [43]Zhang C,Zhang S,Diao H W,et al.Purification and characterization of a temperature-and pH-stable laccase from the spores of Bacillus vallismortis fmb-103 and its application in the degradation of malachite green[J].JAgric Food Chem,2013,61(23):5468-5473.
    [44]Feng K Y,Wen X,He X L,et al.Resistant inheri-tance and cross-resistance of cyflumetofen in Tetranychus cinnabarinus(Boisduval)[J].Pestic Biochem Physi-ol,2018,148:28-33.
    [45]Tsagkarakou A,Pasteur N,Cuany A,et al.Mecha-nisms of resistance to organophosphates in Tetranychus urticae(Acari:Tetranychidae)from Greece[J].Insect Biochem Mol Biol,2002,32(4):417-424.
    [46]Radwan W A,Helmy N,Guneidy N A,et al.Ultra-structure of normal and JHA-treated eggs of the soft tick Argas persicus(Oken)[J].J Egypt Soc Parasitol,2008,38(3):823-832.
    [47]Jalil M,Morrison PE.Chemosterilization of the two-spotted spider mite.II.histopathological effect of apho-late and 5-fluorouracil on the reproductive organs[J].J Econ Entomol,1969,62(2):400-403.
    [48]Wan R,Zhang J Q,Han F,et al.Synthesis and insecti-cidal activities of novel 1,3,4-thiadiazole 5-fluorouracil acetamides derivatives:an RNA interference insecticide[J].Nucleosides Nucleotides Nucleic Acids,2011,30(4):280-292.
    [49]Hahn Y K,Jin Z,Kang J H,et al.Magnetophoretic im-munoassay of allergen-specific IgE in an enhanced mag-netic field gradient[J].Anal Chem,2007,79(6):2214-2220.
    [50]de Castro T R,Ausique J J S,Nunes D H,et al.Risk assessment of cry toxins of Bacillus thuringiensis on the predatory mites Euseius concordis and Neoseiulus californicus(Acari:Phytoseiidae)[J].Exp Appl Acarol,2013,59(4):421-433.
    [51]Clark J M,Scott J G,Campos F,et al.Resistance to avermectins:extent,mechanisms,and management im-plications[J].Annu Rev Entomol,1995,40(1):1-30.
    [52]Feng K Y,Wen X,He X L,et al.Resistant inheri-tance and cross-resistance of cyflumetofen in Tetranychus cinnabarinus(Boisduval)[J].Pestic Biochem Physiol,2018,148:28-33.
    [53]Vargas R,Chapman B,Penman D R.Factors influenc-ing the responses of Tetranychus urticae Koch(Acarina:Tetranychidae)to thuringiensin[J].Agric Téc,2002,62(1):3-14.

© 2004-2018 中国地质图书馆版权所有 京ICP备05064691号 京公网安备11010802017129号

地址:北京市海淀区学院路29号 邮编:100083

电话:办公室:(+86 10)66554848;文献借阅、咨询服务、科技查新:66554700