nav emailalert searchbtn searchbox tablepage yinyongbenwen piczone journalimg journalInfo journalinfonormal searchdiv searchzone qikanlogo popupnotification paper paperNew
2021, 04, v.35 1-7
我国瓜实蝇研究进展
基金项目(Foundation):
邮箱(Email):
DOI: 10.19662/j.cnki.issn1005-2755.2021.04.001
摘要:

瓜实蝇[Bactrocera cucurbitae (Coquillett)]是我国进境植物检疫性有害生物,为害多种蔬菜和水果。本文综述了瓜实蝇在国内的研究概况,包括其分类与寄主、生物学特性、分布与为害、分子生物学、生理生化及生态、防控策略等方面,并对瓜实蝇的综合防治进行了展望,为今后对瓜实蝇的研究提供参考。

Abstract:

The melon fly,Bactrocera cucurbitae(Coquillett),is a plant quarantine pest of China,which damages many kinds of vegetables and fruits. This paper summarized the research status of melon fly in China,including its classification and host,biological characteristics,distribution and damage,molecular biology,physioligy,biochemistry and ecology,control strategies,etc,and the prospects of the integrated control of melon fly. It provided a reference for the future research on melon fly.

参考文献

[1] Bezzi M. India Tephritids(fruit flies)in the collection of the India Museum,Calcutta. Memoirs of the India Museum,1913,3:153-175.

[2] Dhillon M K,Singh R,Naresh J S,et al. The melon fruit fly,Bactrocera cucurbitae:A review of its biology and management. Journal of Insect Science,2005,5(4):1-16.

[3]汪兴鉴.重要果蔬类有害实蝇概论(双翅目:实蝇科).植物检疫,1995,9(1):20-30.

[4]中华人民共和国北京动植物检疫局.中国植物检疫性害虫图册.北京:中国农业出版社,1999.

[5]徐海根,强胜.中国外来入侵生物.北京:科学出版社,2011.

[6]郑洁红,方加龙,郑龙.瓜实蝇生物学特性及综合防治技术.吉林蔬菜,2007(4):33-34.

[7]邓亚评,邱泉.广西实蝇发生与监测调查.广西园艺,2008,19(1):22-24.

[8]王红梅,贺申魁.桂林地区瓜实蝇大量发生原因与防治对策.长江蔬菜,2008(4):35-36.

[9] Siderhurst M S,Jang E B. Cucumber volatile blend attractive to female melon fly,Bactrocera cucurbitae(Coquillett). Journal of Chemical Ecology,2010,36(7):699-708.

[10]张全胜.瓜实蝇生物学特性及其防治.中国蔬菜,2002(3):37-38.

[11]袁盛勇,孔琼,李正跃,等.瓜实蝇生物学特性研究.西北农业学报,2005,14(3):38-40.

[12]李伟东,肖琼,艾洪木,等.瓜实蝇的有效积温及其在中国的年发生代数预测.华东昆虫学报,2008,17(3):188-193.

[13]肖枢,蒋小龙,张朝良,等.瑞丽桔小实蝇、瓜实蝇生物学特性的观察.植物检疫,2001,15(6):332-336.

[14]蒋小龙,任丽卿,肖枢,等.瓜实蝇在云南生物学习性研究初报.植物检疫,2003,17(2):74-76.

[15]陈群航,陈仁,聂德毅,等.瓜实蝇发生危害及诱捕技术.植物保护,2005,32(6):63-65.

[16]张全胜.瓜实蝇的发生为害习性观察及其防治实践.中国植保导刊,2009,29(1):24-25.

[17]高帅,孙晓辉.瓜实蝇的发生与综合防治.蔬菜,2016(8):65-66.

[18]郭志强,农军,黄立飞,等.广西丝瓜瓜实蝇的发生规律及综合防治.安徽农业科学,2014,42(2):436-438.

[19]李磊,冯子文,牛黎明,等.不同生长期苦瓜对瓜实蝇产卵选择的影响.热带农业科学,2016,36(8):52-55.

[20]何超,孔琼,袁盛勇,等.南瓜实蝇与瓜实蝇成虫在4种寄主上的产卵竞争.江西农业大学学报,2019,41(3):484-490.

[21]何超,孔琼,袁盛勇,等. 6种寄主果实对南瓜实蝇和瓜实蝇产卵选择及其子代发育的影响.环境昆虫学报,2019,41(2):316-322.

[22]彭帅,郑丽霞,吴伟坚.瓜实蝇对寄主植物的产卵选择性.环境昆虫学报,2013,35(2):273-276.

[23] Jackson C G,Klungness L M. Death of four species fly(Diptera Tephritidae)in sand with and without moisture. Econ Entomol,1998,91(1):138-142.

[24]李向群,朱旭东,唐仲军,等. 2015年邵东县瓜实蝇大发生原因及防治对策.湖南农业科学,2016(7):69-72.

[25]孙红禹,秦誉嘉,方焱,等.基于@RISK的瓜实蝇对我国苦瓜产业的潜在经济损失评估.植物检疫,2018,32(6):64-69.

[26]潘飞,肖彤斌,秦双,等.瓜实蝇为害对苦瓜产量的影响及其防治指标研究.中国植保导刊,2014,34(10):12-15.

[27]王在凌,徐婧,张润志.中国重要检疫性实蝇的全球分布和入侵情况.生物安全学报,2020,29(3):164-169.

[28]孔令斌,林伟,李志红,等.基于CLIMEX和DIVA-GIS的瓜实蝇潜在地理分布预测.植物保护学报,2008,35(2):148-154.

[29] Clyne P J,Warr C G,Freeman M R,et al. A novel family of divergent seven-transmembrane proteins:candiate odorant receptors in Drosophila. Neuron,1999,22:327-338.

[30]申建梅,胡黎明,宾淑英,等.瓜实蝇嗅觉受体基因的克隆及表达谱分析.昆虫学报,2011,54(3):265-271.

[31]王桂荣,吴孔明,苏宏华,等.棉铃虫嗅觉受体基因的克隆及组织特异性表达.昆虫学报,2005,48(6):823-828.

[32] Siciliano P,He X L,Woodcock. C,et al. Identification of pheromone components and their binding affinity to the odorant binding protein CcapOBP83a-2 of the Mediterranean fruit fly,Ceratitis capitata. Insect Biochemistry and Molecular Biology,2014,48:51-62.

[33]张亚楠,龚治,牛黎明,等.瓜实蝇气味结合蛋白基因的克隆及表达谱分析.热带作物学报,2018,39(4):733-738.

[34] Parsell D,Lindquist D. The function of heat-shock proteins in stress tolerance:degradation and reactivation of damaged proteins. Annual Review of Genetics,1993,27:437-496.

[35] Morimoto R I,Kline M P,Bimston D N,et al. The heat-shock reponse:regulation and function of teat-shock proteins and molecular chaperones. Essays in Biochemistry,1997,32:17-29.

[36]Bernabo P,Rebecchi L,Jousson O,et al. Thermotolerance and hsp70 heat shock reponse in the cold-stenothermal chironomid Pseudodiamesa branikii(NE Italy). Cell Stress and Chaperones,2011,16(4):403-410.

[37]马文静,马纪.小胸鳖甲热激蛋白(Mphsp70)的克隆、序列分析及温度对其表达的影响.应用昆虫学报,2012,49(2):439-447.

[38]Gething M J. Role and regulation of the ER chaperone Bip.Seminars in Cell&Developmental biology,1999,10(5):465-472.

[39] Agashe V R,Hartl F U. Roles of molecular chaperones in cytoplasmic protein folding. Seminars in Cell&Developmental Biology,2000,11(1):15-25.

[40] Sorensen J G,Kristensen T N,Loeschcke V. The evolutionary and ecological role of heat shock proteins. Ecology Letters,2003,6(11):1025-1037.

[41]王秋香,李宗芸,谢艳,等.果蝇热激蛋白的研究进展.昆虫知识,2008(5):698-702.

[42] Lindquist S. The heat-shock response. Annual Review of Biochemistry,1986,55:1151-1191.

[43]姜建军,王凤英,黄立飞,等.瓜实蝇热激蛋白基因Hsp70的克隆及序列分析.南方农业学报,2015,46(5):800-805.

[44]姜建军,黄立飞,黎柳锋,等.瓜实蝇热激蛋白Hsp90基因克隆及表达分析.应用昆虫学报,2019,56(3):444-453.

[45]曾秀丹,龚治,彭正强,等.瓜实蝇性别决定基因tra-2的克隆及表达分析.热带作物学报,2018,39(4):739-743.

[46]张亚楠,龚治,牛黎明,等.基于COI基因片段的瓜实蝇遗传多样性分析.热带作物学报,2017,38(5):926-931.

[47]张亚楠,牛黎明,周世豪,等.基于微卫星分子标记的中国瓜实蝇不同地理种群遗传分化分析.昆虫学报,2018,61(5):613-619.

[48]周世豪,李磊,符悦冠.高温胁迫下瓜实蝇的内参基因筛选.热带作物学报,2016,37(1):131-135.

[49]黄娜娜,代鹏,符悦冠,等.瓜实蝇耐低温相关生理指标的测定.应用昆虫学报,2015,52(3):694-701.

[50]韦淑丹,黄树生,王玉群,等.温度对瓜实蝇实验种群生长发育及繁殖的影响研究.南方农业学报,2011,42(7):744-747.

[51]顾祥鹏,黄禹禹,张金永,等.短时高温胁迫对瓜实蝇生长发育及繁殖的影响.环境昆虫学报,2020,42(2):391-399.

[52]崔志富,曹凤勤,程立生,等.温度、光照强度对瓜实蝇成虫飞行行为的影响.生物安全学报,2016,25(1):31-34.

[53]韦兵,张传飞,曹志玲,等.广东口岸进境旅客携带物截获植物检疫性有害生物疫情分析.植物检疫,2017,31(5):60-63.

[54]李磊,陈泰运,牛黎明,等.苦瓜套袋防治瓜实蝇和南瓜实蝇的效果评价.植物保护,2015,41(6):225-229.

[55] Srinivasan K. Recent trends in insect pest management in vegetable crops. New Delhi:Commonwealth Publishers,1994:345-372.

[56] Jackson C G,Vargas R I,Suda D Y. Populations of Bactrocera cucurbitae(Diptera:Tephritidae)and its parasitoid,Psyttalia fletcheri(Hymenoptera:Braconidae)in Coccinia grandis(Cucurbitaceae)or ivy gourd on the island of Hawaii. Proceedings of the Hawaiian Entomology Society,2003,36:39-46.

[57] Bautista R C,Harris E J,Vargas R I,et al. Parasitization of melon fly(Diptera:Tephritidae)by Fopius arisanus and Psyttalia fletcheri(Hymenoptera:Braconidae)and the effect of fruit substrates on host preference by parasitoids. Biological Control,2004,30(2):156-164.

[58]林玉英,金涛,金启安,等.瓜实蝇密度和蜂蜜度对印啮小蜂寄生效能的影响.植物保护,2014,40(4):89-91.

[59]李羕然,吴伟坚.温度对蝇蛹俑小蜂寄生瓜实蝇蛹功能反应的影响.生物安全学报,2017,26(4):289-292.

[60] Lindegren J E. Field suppression of three fruit fly species(Diptera:Tephritidae)with steinernema carpocapsae//Department of Entomology,University of Adelaide. Proceedings of the Vth International Colloquiumon Invertebrate Pathology and Microbial Control. Glen Osmond:Department of Entomology,University of Adelaide,1990:223.

[61]Sookar P,Bhagwant S,Ouna E A. Isolation of entomopathogenic fungi from the soil and their pathogenicity to two fruit fly species(Diptera:Tephritidae). Journal of Applied Entomology,2008,132(9/10):778-788.

[62]杨叶,王萌,马晓燕,等.感染瓜实蝇的曲霉菌及其生物学特性.菌物学报,2016,35(1):20-28.

[63]马晓燕,路斌冰,王萌,等.海南瓜实蝇致病细菌的分离鉴定及杀虫活性测定.中国生物防治学报,2015,31(3):428-432.

[64]袁盛勇,孔琼,田学军,等.球孢白僵菌对瓜实蝇的毒力研究.北方园艺,2013(7):137-140.

[65]李磊,牛黎明,韩冬银,等.瓜实蝇对不同果香香精的趋向行为研究.热带作物学报,2019,40(2):328-333.

[66]张钧.引诱剂对实蝇类害虫的诱捕效果.植物检疫,1991,5(6):401-404.

[67]吴华,黄鸿,欧剑峰,等.诱蝇酮改良剂对瓜实蝇的诱集效果试验初报.广东农业科学,2006(12):56-57.

[68]陈霞,封传红,沈幼莲,等.诱蝇酮的合成及其对瓜实蝇的引诱活性.中国植保导刊,2011,31(9):9-13.

[69]李国平,柳凤,常金梅,等.不同食物诱剂对苦瓜园瓜实蝇的诱杀效果.中国蔬菜,2012(2):79-82.

[70]Hendrichs J,Robinson A S,Cayol J P,et al. Medfly areawide sterile insect technique programmes for prevention,suppression or eradication:The importance of mating behavior studies. Florida Entomologist,2002,85(1):1-13.

[71] Kakinohana H. The melon fly eradication program in Japan//Calkins C O,Klassen W,Liedo P. Fruit flies and the sterile insect technique(1st Edition). Boca Raton:CRC press,1994:223-226.

[72]Juro K,Kakinohana H,Miyatake T. Eradication of the melon fly,Bactrocera cucurbitae,in Japan:importance of behavior,ecology,genetics,and evolution. Annual Review of Entomology,2004,49(1):331-349.

[73]吴玉华.瓜实蝇遗传区性品系的基础研究[D].福州:福建农林大学,2015.

[74]林明光,汪兴鉴,张艳,等.橘小实蝇、瓜实蝇和南亚果实蝇人工饲料的优化.应用昆虫学报,2013,50(4):1115-1125.

[75]张瑞萍,马锞,李国平.瓜实蝇饲养技术研究初报.中国植保导刊,2015,35(2):72-74.

[76]张献强.瓜实蝇的防治药剂筛选及应用技术研究[D].南宁:广西大学,2011.

[77]赖敏,刘晓亮,曾东强. 9种拟除虫菊酯类杀虫剂对瓜实蝇的产卵趋避作用测定.现代农药,2016,15(3):51-54.

[78] Hsu J C,Feng H T. Susceptibility of melon fly(Bactrocera cucurbitae)and oriental fruit fly(B.dorsalis)to insecticides in Taiwan. Plant Pro Bull,2002,44(4):303-314.

[79]谷世伟,曾玲,梁广文.华南地区瓜实蝇田间种群的抗药性监测.华南农业大学学报,2015,36(4):76-80.

[80]李国平,罗诗,詹儒林,等.以诱杀为主的瓜实蝇综合防控技术研究与应用[EB/OL].(2012-05-23)[2021-03-04].https://kns.cnki.net/kcms/detail/detail.aspx?dbcode=SNAD&dbname=SNAD&filename=SNAD000001509729&v=TjRX%25mmd2F0fSS4t%25mmd2BZnNZsQOYjZLb%25mmd2FeV7oMrs5CTlyj0mC7vu P9HY8qlLFcC7pKDnosr7MaTJapsbZQE%3d.

[81] Linares F,Valenzuela R. Medfly Program in Guatemala and Mexico:Current Situation//Aluja M,Liedo P. Fruit Flies. New York:Springer,NY,1993:425-438.

[82]王华嵩,赵才道,黎怀燮,等.辐射不育技术防治柑橘大实蝇的效果.核农学报,1990,4(3):135-138.

[83]王华嵩,胡建国,路大光,等.利用辐射不育技术防治柑橘大实蝇的示范试验.中国生物防治,1995,11(4):156-159.

基本信息:

DOI:10.19662/j.cnki.issn1005-2755.2021.04.001

中图分类号:S41-30

引用信息:

[1]邓金奇,朱小明,韩鹏,等.我国瓜实蝇研究进展[J].植物检疫,2021,35(04):1-7.DOI:10.19662/j.cnki.issn1005-2755.2021.04.001.

检 索 高级检索

引用

GB/T 7714-2015 格式引文
MLA格式引文
APA格式引文