Review

Advances in research and application of cockroach-killing baits

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  • Department of Disinfection and Vector Control, Chongqing Center for Disease Control and Prevention, Chongqing 400042, China

Received date: 2021-04-06

  Online published: 2021-10-20

Supported by

Supported by the Joint Medical Research Project of Chongqing Municipal Health Commission and Chongqing Science and Technology Commission (No. 2018ZDXM036)

Abstract

Cockroaches are of common hygiene pest worldwide that seriously threatens human health. Because they like to hide in the dark environment, placing baits has become an important way to kill cockroaches indoors. However, the long-term use of conventional chemical insecticides is harmful to the human body and the indoor environment, and also leads to the development of insecticide resistance in cockroaches. Therefore, it is particularly important to develop safe and effective cockroach-killing baits. This article summarized the current advances in the research and application of cockroach-killing baits, in order to facilitate the exploration of new methods to prevent and control cockroaches in the future.

Key words: Cockroach; Control; Bait

Cite this article

XIAO Han-sen, HE Ya-ming, JI Heng-qing . Advances in research and application of cockroach-killing baits[J]. Chinese Journal of Vector Biology and Control, 2021 , 32(5) : 642 -646 . DOI: 10.11853/j.issn.1003.8280.2021.05.027

References

[1] 傅桂明,王伟,杨天赐,等. 德国小蠊抗药性及防制措施[J]. 中华卫生杀虫药械,2006,12(5):391-393. DOI:10.3969/j.issn. 1671-2781.2006.05.019.Fu GM,Wang W,Yang TC,et al. Resistance of Blattella germanica and its control[J]. Chin J Hyg Insect Equip,2006,12(5):391-393. DOI:10.3969/j.issn.1671-2781.2006.05.019.
[2] 何亚明,涂涛田,冯绍全,等. 重庆市2013-2014年蟑螂密度监测分析[J]. 中华卫生杀虫药械,2016,22(3):268-270. DOI:10.19821/j.1671-2781.2016.03.019.He YM,Tu TT,Feng SQ,et al. Analysis of cockroach density monitoring in Chongqing from 2013 to 2014[J]. Chin J Hyg Insect Equip,2016,22(3):268-270. DOI:10.19821/j.1671-2781.2016.03.019.
[3] 刘丽娟,王海防,赵玉强,等. 蜚蠊综合防治研究概况[J]. 中国媒介生物学及控制杂志,2010,21(1):83-86.Liu LJ,Wang HF,Zhao YQ,et al. Review on integrated control of cockroaches[J]. Chin J Vector Biol Control,2010,21(1):83-86.
[4] Devries ZC,Santangelo RG,Crissman J,et al. Exposure risks and ineffectiveness of total release foggers (TRFs) used for cockroach control in residential settings[J]. BMC Public Health,2019,19(1):96. DOI:10.1186/s12889-018-6371-z.
[5] DeVries ZC,Santangelo RG,Crissman J,et al. Pervasive resistance to Pyrethroids in German cockroaches (Blattodea:Ectobiidae) related to lack of efficacy of total release foggers[J]. J Econ Entomol,2019,112(5):2295-2301. DOI:10.1093/jee/toz120.
[6] 郑卫青,陈海婴,柳小青,等. 杀蟑毒饵的研究进展[J]. 中华卫生杀虫药械,2010,16(5):373-376. DOI:10.19821/j.1671-2781.2010.05.016.Zheng WQ,Chen HY,Liu XQ,et al. Research development of gel bait[J]. Chin J Hyg Insect Equip,2010,16(5):373-376. DOI:10.19821/j.1671-2781.2010.05.016.
[7] 夏凯,叶晓磊,陈德华,等. 几种灭蟑毒饵对德国小蠊的实验室灭效观察[J]. 中华卫生杀虫药械,2018,24(4):339-341. DOI:10.19821/j.1671-2781.2018.04.006.Xia K,Ye XL,Chen DH,et al. Efficacy observation of several cockroach poison baits against Blattella germanica[J]. Chin J Hyg Insect Equip,2018,24(4):339-341. DOI:10.19821/j.1671-2781.2018.04.006.
[8] 王东,张晓,刘慧媛,等. 0.05%氟虫腈杀蟑胶饵对德国小蠊成若虫继发传递毒性研究[J]. 中国媒介生物学及控制杂志,2017,28(2):157-159. DOI:10.11853/j.issn.1003.8280.2017. 02.015.Wang D,Zhang X,Liu HY,et al. The serial toxic effects of 0.05% fipronil gel bait on Blattella germanica adults and nymphs[J]. Chin J Vector Biol Control,2017,28(2):157-159. DOI:10.11853/j.issn.1003.8280.2017.02.015.
[9] 吕鸿雁,孙锦程,郝蕙玲. 5种吡虫啉胶饵保湿防霉性能测评及其对德国小蠊的药效测试[J]. 中华卫生杀虫药械,2019,25(2):102-104. DOI:10.19821/j.1671-2781.2019.02.002.Lyu HY,Sun JC,Hao HL. Evaluation of moisture retention and mildew resistance of five imidacloprid gel baits and their efficacy on Blattella germanica[J]. Chin J Hyg Insect Equip,2019,25(2):102-104. DOI:10.19821/j.1671-2781.2019.02.002.
[10] Durier V,Rivault C. Improvement of German cockroach (Dictyoptera:Blattellidae) population control by fragmented distribution of gel baits[J]. J Econ Entomol,2003,96(4):1254-1258. DOI:10.1093/jee/96.4.1254.
[11] 刘曜,刘洪霞,冷培恩,等. 4种不同有效成分杀蟑胶饵对德国小蠊的实验室灭效研究[J]. 中国媒介生物学及控制杂志,2020,31(5):559-564. DOI:10.11853/j.issn.1003.8280.2020. 05.012.Liu Y,Liu HX,Leng PE,et al. Laboratory efficacy against Blattella germanica of four cockroach-killing gel baits containing different effective constituents[J]. Chin J Vector Biol Control,2020,31(5):559-564. DOI:10.11853/j.issn.1003.8280.2020. 05.012.
[12] 张燕华,常洪美,李炼. 胶饵类灭蟑剂对医院灭蟑效果观察[J]. 预防医学情报杂志,2017,33(8):747-750.Zhang YH,Chang HM,Li L. Effect of gel bait for cockroach control in hospital[J]. J Prev Med Inf,2017,33(8):747-750.
[13] 陈焕瑜,周小毛,刘杰,等. 6种灭蟑饵剂对蟑螂的药效测定试验[J]. 广东农业科学,2008(6):79-80,92. DOI:10.16768/j.issn.1004-874x.2008.06.001.Chen HY,Zhou XM,Liu J,et al. Tests on the efficacy of 6 kinds of baits against cockroaches[J]. Guangdong Agric Sci,2008(6):79-80,92. DOI:10.16768/j.issn.1004-874x.2008.06.001.
[14] Wu XY,Appel AG. Insecticide resistance of several field-collected German cockroach (Dictyoptera:Blattellidae) strains[J]. J Econ Entomol,2017,110(3):1203-1209. DOI:10.1093/jee/tox072.
[15] Hu IH,Chen SM,Lee CY,et al. Insecticide resistance,and its effects on bait performance in field-collected German cockroaches (Blattodea:Ectobiidae) from Taiwan[J]. J Econ Entomol,2020,113(3):1389-1398. DOI:10.1093/jee/toaa053.
[16] Ko AE,Bieman DN,Schal C,et al. Insecticide resistance and diminished secondary kill performance of bait formulations against German cockroaches (Dictyoptera:Blattellidae)[J]. Pest Manag Sci,2016,72(9):1778-1784. DOI:10.1002/ps.4211.
[17] 邓泽静,林献丹,倪朝荣,等. 德国小蠊对5种常用杀虫剂的抗药性分析[J]. 预防医学,2019,31(1):77-79. DOI:10.19485/j.cnki.issn2096-5087.2019.01.020.Deng ZJ,Lin XD,Ni CR,et al. Resistance of Blattella germanica to five kinds of insecticides[J]. Prev Med,2019,31(1):77-79. DOI:10.19485/j.cnki.issn2096-5087.2019.01.020.
[18] Ang LH,Nazni WA,Kuah MK,et al. Detection of the A302S Rdl mutation in fipronil bait-selected strains of the German cockroach (Dictyoptera:Blattellidae)[J]. J Econ Entomol,2013,106(5):2167-2176. DOI:10.1603/ec13119.
[19] Wang CL,Scharf ME,Bennett GW. Genetic basis for resistance to gel baits,fipronil,and sugar-based attractants in German cockroaches (Dictyoptera:Blattellidae)[J]. J Econ Entomol,2006,99(5):1761-1767. DOI:10.1093/jee/99.5.1761.
[20] Fardisi M,Gondhalekar AD,Ashbrook AR,et al. Rapid evolutionary responses to insecticide resistance management interventions by the German cockroach (Blattella germanica L.)[J]. Sci Rep,2019,9(1):8292. DOI:10.1038/s41598-019-44296-y.
[21] 贺盼,马强. 我国蜚蠊的分布及防制概况[J]. 医学动物防制,2018,34(9):868-872. DOI:10.7629/yxdwfz201809015.He P,Ma Q. Distribution and control of cockroaches in China[J]. J Med Pest Control,2018,34(9):868-872. DOI:10.7629/yxdwfz201809015.
[22] 徐小玲. 植物性物质对德国小蠊的生物活性研究[D]. 北京:中国农业大学,2004.Xu XL. Effects of plant-based materials on Blattella germanica[D]. Beijing:China Agricultural University,2004.
[23] Oladipupo SO,Hu XP,Appel AG. Topical toxicity profiles of some aliphatic and aromatic essential oil components against insecticide-susceptible and resistant strains of German cockroach (Blattodea:Ectobiidae)[J]. J Econ Entomol,2020,113(2):896-904. DOI:10.1093/jee/toz323.
[24] Rahayu R,Darmis A,Jannatan R. Potency of papaya leaf (Carica papaya L.) as toxicant and repellent against German cockroach (Blattella germanica L.)[J]. Pak J Biol Sci,2020,23(2):126-131. DOI:10.3923/pjbs.2020.126.131.
[25] Sharififard M,Safdari F,Siahpoush A,et al. Evaluation of some plant essential oils against the brown-banded cockroach,Supella longipalpa (Blattaria:Ectobiidae):a mechanical vector of human pathogens[J]. J Arthropod Borne Dis,2016,10(4):528-537.
[26] 蒋敏丽,莫颂轶,孔保庆,等. 植物源性物质在蟑螂防治中的研究进展[J]. 右江民族医学院学报,2013,35(4):545-546. DOI:10.3969/j.issn.1001-5817.2013.04.064.Jiang ML,Mo SY,Kong BQ,et al. Research progress of plant-based materials in cockroach control[J]. J Youjiang Med Univ Nationalitie,2013,35(4):545-546. DOI:10.3969/j.issn.1001-5817.2013. 04.064.
[27] 熊强,李为众,童严严,等. 昆虫生长调节剂的研究现状及其在白蚁防治中的应用进展[J]. 中华卫生杀虫药械,2018,24(3):288-291. DOI:10.19821/j.1671-2781.2018.03.022.Xiong Q,Li WZ,Tong YY,et al. Research status of insect growth regulators and their application in termite control[J]. Chin J Hyg Insect Equip,2018,24(3):288-291. DOI:10.19821/j.1671-2781.2018.03.022.
[28] 钟平生. 卫生害虫的非化学防治研究进展[J]. 惠州学院学报(自然科学版),2005,25(6):34-41. DOI:10.16778/j.cnki.1671-5934.2005.06.008.Zhong PS. Review of research on non-chemical control of sanitary pests[J]. J Huizhou University,2005,25(6):34-41. DOI:10.16778/j.cnki.1671-5934.2005.06.008.
[29] 于长明,刘泉. 昆虫生长调节剂在蟑螂防制中的应用[J]. 中国媒介生物学及控制杂志,1998,9(2):152-155. DOI:10.3969/j.issn.1003-4692.1998.02.029.Yu CM,Liu Q. Laboratory efficacy against Blattella germanica of four cockroach-killing gel baits containing different effective constituents[J]. Chin J Vector Biol Control,1998,9(2):152-155. DOI:10.3969/j.issn.1003-4692.1998.02.029.
[30] 魏舸,白亮,曲爽,等. 昆虫共生微生物在病虫害和疾病控制上的应用前景[J]. 微生物学报,2018,58(6):1090-1102. DOI:10.13343/j.cnki.wsxb.20180028.Wei G,Bai L,Qu S,et al. Insect microbiome and their potential application in the insect pest and vector-borne disease control[J]. Acta Microbiol Sin,2018,58(6):1090-1102. DOI:10. 13343/j.cnki.wsxb.20180028.
[31] Zhang XC,Li XX,Gong YW,et al. Isolation,identification,and virulence of a new Metarhizium anisopliae strain on the German cockroach[J]. J Econ Entomol,2018,111(6):2611-2616. DOI:10.1093/jee/toy280.
[32] 刘文彬. Vip3Aa杀蜚蠊的作用与机制及其生防工程菌的构建和评价[D]. 广州:南方医科大学,2020.Liu WB. Insecticidal effect and mechanism of Vip3Aa on cockroach and application in construction of transgenic biocontrol bacteria[D]. Guangzhou:Southern Medical University,2020.
[33] Hubner-Campos RF,Leles RN,Rodrigues J,et al. Efficacy of entomopathogenic hypocrealean fungi against Periplaneta americana[J]. Parasitol Int,2013,62(6):517-521. DOI:10.1016/j.parint.2013.07.013.
[34] 辛正,张晓,刘慧媛,等. 白僵菌在蟑螂防治中的研究进展[J]. 中华卫生杀虫药械,2017,23(5):401-406. DOI:10.19821/j.1671-2781.2017.05.001.Xin Z,Zhang X,Liu HY,et al. Advances in cockroach control by Beauveria bassiana[J]. Chin J Hyg Insect Equip,2017,23(5):401-406. DOI:10.19821/j.1671-2781.2017.05.001.
[35] 陈建新,刘泉. 昆虫生长调节剂在防制室内卫生昆虫中的应用[J]. 中国媒介生物学及控制杂志,1999,10(2):Ⅱ-Ⅵ. DOI:10.3969/j.issn.1003-4692.1999.02.001.Chen JX,Liu Q. Application of insect growth regulator to control indoor medical pests[J]. Chin J Vector Biol Control,1999,10(2):Ⅱ-Ⅵ. DOI:10.3969/j.issn.1003-4692.1999.02.001.
[36] 岳梅,雷仲仁,孟涛,等. 温度对绿僵菌LA菌株孢子萌发、酶活力及毒力的影响[J]. 植物保护,2010,36(2):56-60. DOI:10.3969/j.issn.0529-1542.2010.02.011.Yue M,Lei ZR,Meng T,et al. Temperature influence on conidial germination rate,enzyme activity and virulence of Metarhizium anisopliae LA isolate[J]. Plant Prot,2010,36(2):56-60. DOI:10.3969/j.issn.0529-1542.2010.02.011.
[37] Zhang F,Sun XX,Zhang XC,et al. The interactions between gut microbiota and entomopathogenic fungi:a potential approach for biological control of Blattella germanica (L.)[J]. Pest Manag Sci,2018,74(2):438-447. DOI:10.1002/ps.4726.
[38] 孙锦程,郝蕙玲,吕鸿雁. 绿僵菌在德国小蠊防治中的应用[J]. 中华卫生杀虫药械,2014,20(5):406-408,411. DOI:10.19821/j.1671-2781.2014.05.004.Sun JC,Hao HL,Lyu HY. Controlling Blattella germanica with Metarhizium anisopliae[J]. Chin J Hyg Insect Equip,2014,20(5):406-408,411. DOI:10.19821/j.1671-2781.2014.05.004.
[39] Pol JC,Jimenez SI,Gries G. New food baits for trapping German cockroaches,Blattella germanica (L.) (Dictyoptera:Blattellidae)[J]. J Econ Entomol,2017,110(6):2518-2526. DOI:10.1093/jee/tox247.
[40] 田厚军,赵建伟,陈勇,等. 德国小蠊和美洲大蠊饵剂的研制及其诱杀效果[J]. 寄生虫与医学昆虫学报,2019,26(3):182-187. DOI:10.3969/j.issn.1005-0507.2019.03.007.Tian HJ,Zhao JW,Chen Y,et al. Researches on baits alluring effects on Blattella germanica and Periplaneta americane[J]. Acta Parasitol Med Entomol Sin,2019,26(3):182-187. DOI:10.3969/j.issn.1005-0507.2019.03.007.
[41] 卢金凤. 缓释杀蟑剂研究概述[J]. 现代农业科技,2020(8):125-126,128. DOI:10.3969/j.issn.1007-5739.2020.08.079.Lu JF. Overview of research on slow-release cockroach killer[J]. Mod Agric Sci Technol,2020(8):125-126,128. DOI:10.3969/j.issn.1007-5739.2020.08.079.
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