畜牧兽医学报 ›› 2021, Vol. 52 ›› Issue (11): 3006-3013.doi: 10.11843/j.issn.0366-6964.2021.011.002
祁晓晓, 李环, 王铂涵, 孟佳丽, 孙玮玮*, 潘保良*
收稿日期:
2021-02-16
出版日期:
2021-11-23
发布日期:
2021-11-24
通讯作者:
孙玮玮,主要从事寄生虫病诊疗及新兽药研发,E-mail:sunweiwei@cau.edu.cn;潘保良,主要从事寄生虫病诊疗及新兽药研发,E-mail:baoliang@cau.edu.cn
作者简介:
祁晓晓(1992-),女,河南安阳人,博士生,主要从事鸡皮刺螨生物学及防治研究,E-mail:xxqade@163.com
基金资助:
QI Xiaoxiao, LI Huan, WANG Bohan, MENG Jiali, SUN Weiwei*, PAN Baoliang*
Received:
2021-02-16
Online:
2021-11-23
Published:
2021-11-24
摘要: 鸡皮刺螨是家禽养殖业中危害最严重的体外寄生虫之一。为了控制禽舍中鸡皮刺螨的种群繁殖,目前最常用的方法是化学药物喷洒。但是,随着健康饮食观念的深入人心,人们越来越关注鸡蛋和鸡肉的农药残留问题。因此,需要探索化学农药的替代品,包括疫苗、生物防治、物理防治以及生态友好型的化学信息物质。本文综述了生态友好型的化学信息物质,主要包括聚集信息素、性信息素、报警信息素、利他素以及植物类化合物,在鸡皮刺螨防治方面的作用、应用及研究现状,为防治鸡皮刺螨寻找绿色无污染的方法提供理论基础。
中图分类号:
祁晓晓, 李环, 王铂涵, 孟佳丽, 孙玮玮, 潘保良. 螨类化学信息物质及其在鸡皮刺螨防治中的应用现状[J]. 畜牧兽医学报, 2021, 52(11): 3006-3013.
QI Xiaoxiao, LI Huan, WANG Bohan, MENG Jiali, SUN Weiwei, PAN Baoliang. Research Progress on Semiochemicals of Mites and Its Application Status on Control of Dermanyssus gallinae[J]. Acta Veterinaria et Zootechnica Sinica, 2021, 52(11): 3006-3013.
[1] | SPARAGANO O A E, GEORGE D R, HARRINGTON D W J, et al. Significance and control of the poultry red mite, Dermanyssus gallinae[J]. Annu Rev Entomol, 2014, 59:447-466. |
[2] | WANG C W, MA Y Y, HUANG Y, et al. An efficient rearing system rapidly producing large quantities of poultry red mites, Dermanyssus gallinae (Acari:Dermanyssidae), under laboratory conditions[J]. Vet Parasitol, 2018, 258:38-45. |
[3] | WANG C W, MA Y Y, HUANG Y, et al. Darkness increases the population growth rate of the poultry red mite Dermanyssus gallinae[J]. Parasit Vectors, 2019, 12(1):213. |
[4] | CHAUVE C. The poultry red mite Dermanyssus gallinae (De Geer, 1778):current situation and future prospects for control[J]. Vet Parasitol, 1998, 79(3):239-245. |
[5] | NORDENFORS H, HOGLUND J, UGGLA A. Effects of temperature and humidity on oviposition, molting, and longevity of Dermanyssus gallinae (Acari:Dermanyssidae)[J]. J Med Entomol, 1999, 36(1):68-72. |
[6] | WANG C W, XU X L, YU H, et al. Low-temperature storage of the poultry red mite, Dermanyssus gallinae, facilitates laboratory colony maintenance and population growth[J]. Parasitology, 2020, 147(7):740-746. |
[7] | BRAUNEIS M D, ZOLLER H, WILLIAMS H, et al. The acaricidal speed of kill of orally administered fluralaner against poultry red mites (Dermanyssus gallinae) on laying hens and its impact on mite reproduction[J]. Parasit Vectors, 2017, 10(1):594. |
[8] | FLOCHLAY A S, THOMAS E, SPARAGANO O. Poultry red mite (Dermanyssus gallinae) infestation:a broad impact parasitological disease that still remains a significant challenge for the egg-laying industry in Europe[J]. Parasit Vectors, 2017, 10(1):357. |
[9] | NUNN F, BAGANZ J, BARTLEY K, et al. An improved method for in vitro feeding of adult female Dermanyssus gallinae (poultry red mite) using Baudruche membrane (goldbeater's skin)[J]. Parasit Vectors, 2020, 13(1):585. |
[10] | MIGNON B, LOSSON B. Dermatitis in a horse associated with the poultry mite (Dermanyssus gallinae)[J]. Vet Dermatol, 2008, 19(1):38-43. |
[11] | GEORGE D R, FINN R D, GRAHAM K M, et al. Should the poultry red mite Dermanyssus gallinae be of wider concern for veterinary and medical science?[J]. Parasit Vectors, 2015, 8(1):178. |
[12] | CAFIERO M A, BARLAAM A, CAMARDA A, et al. Dermanysuss gallinae attacks humans. Mind the gap![J]. Avian Pathol, 2019, 48(S1):S22-S34. |
[13] | LEE H J, JEONG J Y, JEONG O M, et al. Impact of Dermanyssus gallinae infestation on persistent outbreaks of fowl typhoid in commercial layer chicken farms[J]. Poult Sci, 2020, 99(12):6533-6541. |
[14] | COCCIOLO G, CIRCELLA E, PUGLIESE N, et al. Evidence of vector borne transmission of Salmonella enterica enterica serovar Gallinarum and fowl typhoid disease mediated by the poultry red mite, Dermanyssus gallinae (De Geer, 1778)[J]. Parasit Vectors, 2020, 13(1):513. |
[15] | OH S I, DO Y J, KIM E, et al. Prevalence of poultry red mite (Dermanyssus gallinae) in Korean layer farms and the presence of avian pathogens in the mite[J]. Exp Appl Acarol, 2020, 81(2):223-238. |
[16] | 王传文. 鸡皮刺螨繁殖体系的建立及其抗药性研究[D]. 北京:中国农业大学, 2020.WANG C W. Establishment of Dermanyssus gallinae rearing system and mechanisms of beca-cypermathrin resistance[D]. Beijing:China Agricultural University, 2020. (in Chinese) |
[17] | MARANGI M, CAFIERO M A, CAPELLI G, et al. Evaluation of the poultry red mite, Dermanyssus gallinae (Acari:Dermanyssidae) susceptibility to some acaricides in field populations from Italy[J]. Exp Appl Acarol, 2009, 48(1-2):11-18. |
[18] | LIMA-BARBERO J F, CONTRERAS M, MATEOS-HERNÁNDEZ L, et al. A Vaccinology Approach to the Identification and characterization of Dermanyssus gallinae candidate protective antigens for the control of poultry red mite infestations[J]. Vaccines, 2019, 7(4):190. |
[19] | XU X L, WANG C W, HUANG Y, et al. Evaluation of the vaccine efficacy of three digestive protease antigens from Dermanyssus gallinae using an in vivo rearing system[J]. Vaccine, 2020, 38(49):7842-7849. |
[20] | TOMER H, BLUM T, ARYE I, et al. Activity of native and commercial strains of Metarhizium spp. against the poultry red mite Dermanyssus gallinae under different environmental conditions[J]. Vet Parasitol, 2018, 262:20-25. |
[21] | HUBERT J, ERBAN T, KOPECKY J, et al. Comparison of microbiomes between red poultry mite populations (Dermanyssus gallinae):Predominance of bartonella-like bacteria[J]. Microb Ecol, 2017, 74(4):947-960. |
[22] | ZRIKI G, BLATRIX R, ROY L. Predation interactions among henhouse-dwelling arthropods, with a focus on the poultry red mite Dermanyssus gallinae[J]. Pest Manag Sci, 2020, 76(11):3711-3719. |
[23] | ALVES L F A, DE OLIVEIRA D G P, PARES R B, et al. Association of mechanical cleaning and a liquid preparation of diatomaceous earth in the management of poultry red mite, Dermanyssus gallinae (Mesostigmata:Dermanyssidae)[J]. Exp Appl Acarol, 2020, 81(2):215-222. |
[24] | SPARAGANO O A E, GEORGE D R, FINN R D, et al. Dermanyssus gallinae and chicken egg production:impact, management, and a predicted compatibility matrix for integrated approaches[J]. Exp Appl Acarol, 2020, 82(4):441-453. |
[25] | MUL M F, VAN VUGT S M A, GOSELINK Y S M, et al. Effects of heating laying hen houses between consecutive laying cycles on the survival of the poultry red mite Dermanyssus gallinae[J]. Vet Parasitol, 2020, 288:109307. |
[26] | DECRU E, MUL M, NISBET A J, et al. Possibilities for IPM strategies in european laying hen farms for improved control of the poultry red mite (Dermanyssus gallinae):details and state of affairs[J]. Front Vet Sci, 2020, 7:565866. |
[27] | CARR A L, ROE M. Acarine attractants:Chemoreception, bioassay, chemistry and control[J]. Pestic Biochem Physiol, 2016, 131:60-79. |
[28] | STEIDLE J L M, BARCARI E, HRADECKY M, et al. Pheromonal communication in the european house dust mite, Dermatophagoides pteronyssinus[J]. Insects, 2014, 5(3):639-650. |
[29] | MIZOGUCHI A, MORI N, NISHIDA R, et al. α-Acaridial a female sex pheromone from an alarm pheromone emitting mite Rhizoglyphus robini[J]. J Chem Ecol, 2003, 29(7):1681-1690. |
[30] | ENTREKIN D L, OLIVER J H Jr. Aggregation of the chicken mite, Dermanyssus Gallinae (Acari:Dermanyssidae)[J]. J Med Entomol, 1982, 19(6):671-678. |
[31] | 赵佳怡, 李豪, 李环, 等. 鸡皮刺螨防控技术研究进展[J]. 中国家禽, 2019, 41(9):48-52.ZHAO J Y, LI H, LI H, et al. Advance on the control methods for Dermanyssus gallinae[J]. China Poultry, 2019, 41(9):48-52. (in Chinese) |
[32] | SKELTON A C, CAMERON M M, PICKETT J A, et al. Identification of neryl formate as the airborne aggregation pheromone for the American house dust mite and the European house dust mite (Acari:Epidermoptidae)[J]. J Med Entomol, 2010, 47(5):798-804. |
[33] | KOENRAADT C J M, DICKE M. The role of volatiles in aggregation and host-seeking of the haematophagous poultry red mite Dermanyssus gallinae (Acari:Dermanyssidae)[J]. Exp Appl Acarol, 2010, 50(3):191-199. |
[34] | SONENSHINE D E. Pheromones and other semiochemicals of the acari[J]. Annu Rev Entomol, 1985, 30:1-28. |
[35] | REGEV S, CONE W W. Analyses of pharate female twospotted spider mites for nerolidol and geraniol:evaluation for sex attraction of males[J]. Environ Entomol, 1976, 5(1):133-138. |
[36] | OKU K. Effects of density experience on mate guarding behavior by adult male Kanzawa spider mites[J]. J Ethol, 2009, 27(2):279-283. |
[37] | MORI N, KUWAHARA Y. Comparative studies of the ability of males to discriminate between sexes in Caloglyphus spp.[J]. J Chem Ecol, 2000, 26(5):1299-1309. |
[38] | MIZOGUCHI A, MURAKAMI K, SHIMIZU N, et al. S-isorobinal as the female sex pheromone from an alarm pheromone emitting mite, Rhizoglyphus setosus[J]. Exp Appl Acarol, 2005, 36(1):107-117. |
[39] | KUWAHARA Y, SATO M, KOSHⅡ T, et al. Chemical ecology of astigmatid mites XXXⅡ. 2-Hydroxy-6-methyl-benzaldehyde, the sex pheromone of the brown-legged grain mite Aleuroglyphus ovatus (TROUPEAU) (Acarina:Acaridae)[J]. Appl Entomol Zool, 1992, 27(2):253-260. |
[40] | SATO M, KUWAHARA Y, MATSUYAMA S, et al. Chemical ecology of astigmatid mites:XXXVⅡ. Fatty acid as food attractant of astigmatid mites, its scope and limitation[J]. Appl Entomol Zool, 1993, 28(4):565-569. |
[41] | RYONO A, MORI N, OKABE K, et al. Chemical ecology of astigmatid mites LVⅢ. 2-Hydroxy-6-methylbenzaldehyde:female sex pheromone of Cosmoglyphus hughesi Samšinák (Acari:Acaridae)[J]. Appl Entomol Zool, 2001, 36(1):77-81. |
[42] | TATAMI K, MORI N, NISHIDA R, et al. 2-Hydroxy-6-methylbenzaldehyde:the female sex pheromone of the house dust mite Dermatophagoides farinae (Astigmata:pyroglyphidae)[J]. Med Entomol Zool, 2001, 52(4):279-286. |
[43] | NISHIMURA K, SHIMIZU N, MORI Y, et al. Chemical ecology of astigmatid mites. LXIV. The alarm pheromone neral functions as an attractant in Schwiebea elongata (Banks) (Acari:Acaridae)[J]. Appl Entomol Zool, 2002, 37(1):13-18. |
[44] | KUWAHARA Y. How astigmatic mites control the emission of two or even three types of pheromones from the same gland[M]//SABELIS M W, BRUIN J. Trends in Acarology. Dordrecht:Springer, 2010:241-247. |
[45] | WICHT M C, RODRIGUEZ J G, SMITH W T Jr, et al. Attractant to Macrocheles muscaedomesticae (Acarina) present in the housefly, Musca domestica[J]. J Insect Physiol, 1971, 17(1):63-67. |
[46] | AMIN M M, MIZELL R F, FLOWERS R W. Response of the predatory mite Phytoseiulus macropilis (Acari:Phytoseiidae) to pesticides and kairomones of three spider mite species (Acari:Tetranychidae), and non-prey food[J]. Fla Entomol, 2009, 92(4):554-562. |
[47] | CALDERONE N W, LIN S S. Behavioural responses of Varroa destructor (Acari:Varroidae) to extracts of larvae, cocoons and brood food of worker and drone honey bees, Apis mellifera (Hymenoptera:Apidae)[J]. Physiol Entomol, 2001, 26(4):341-350. |
[48] | PAGEAT P. Allomone repulsive and kairomone attractive compositions for controlling arachnids:US, 20050137119A1[P]. 2005-06-23. |
[49] | HARRINGTON D W J, GUY J H, ROBINSON K, et al. Comparison of synthetic membranes in the development of an in vitro feeding system for Dermanyssus gallinae[J]. Bull Entomol Res, 2010, 100(2):127-132. |
[50] | ARRIAGA-JIMÉNEZ A, ADOUZI E M, ROY L. Composition anti-acariens:WO2018109417A1; FR3060258A1[P]. 2018-06. |
[51] | RAJABPOUR A, MASHHADI A R A, GHORBANI M R. Acaricidal and repellent properties of some plant extracts against poultry red mite, Dermanyssus gallinae (Mesostigmata:Dermanyssidae)[J]. Per J Acarol, 2018, 7(1):85-91. |
[52] | KIM H K, LEE S J, HWANG B Y, et al. Acaricidal and repellent effects of Cnidium officinale-derived material against Dermanyssus gallinae (Acari:Dermanyssidae)[J]. Exp Appl Acarol, 2018, 74(4):403-414. |
[53] | LUNDH J, WIKTELIUS D, CHIRICO J. Azadirachtin-impregnated traps for the control of Dermanyssus gallinae[J]. Vet Parasitol, 2005, 130(3-4):337-342. |
[54] | CAMARDA A, PUGLIESE N, BEVILACQUA A, et al. Efficacy of a novel neem oil formulation (RP03TM) to control the poultry red mite Dermanyssus gallinae[J]. Med Vet Entomol, 2018, 32(3):290-297. |
[55] | BARIMANI A, YOUSSEFI M R, TABARI M A. Traps containing carvacrol, a biological approach for the control of Dermanyssus gallinae[J]. Parasitol Res, 2016, 115(9):3493-3498. |
[56] | PRITCHARD J, KUSTER T, GEORGE D, et al. Impeding movement of the poultry red mite, Dermanyssus gallinae[J]. Vet Parasitol, 2016, 225:104-107. |
[57] | SANTANA C B, DE LARA SOUZA J G, CORACINI M D A, et al. Chemical composition of essential oil from Myrcia oblongata DC and potential antimicrobial, antioxidant and acaricidal activity against Dermanyssus gallinae (Degeer, 1778)[J]. Biosci J, 2018, 34(4):996-1009. |
[58] | TABARI M A, YOUSSEFI M R, BENELLI G. Eco-friendly control of the poultry red mite, Dermanyssus gallinae (Dermanyssidae), using the α-thujone-rich essential oil of Artemisia sieberi (Asteraceae):toxic and repellent potential[J]. Parasitol Res, 2017, 116(5):1545-1551. |
[59] | MAKAROW R, SCHAFER S, ALBRECHT S, et al. Investigation of volatile organic compounds emitted by Anoplophora glabripennis (Moschulsky) using thermal desorption and gas chromatography-mass spectrometry[J]. Microchem J, 2019, 146:142-148. |
[60] | LEE S J, KIM H K, KIM G H. Toxicity and effects of essential oils and their components on Dermanyssus gallinae (Acari:Dermanyssidae)[J]. Exp Appl Acarol, 2019, 78(1):65-78. |
[61] | TABARI M A, KHODASHENAS A, JAFARI M, et al. Acaricidal properties of hemp (Cannabis sativa L.) essential oil against Dermanyssus gallinae and Hyalomma dromedarii[J]. Ind Crops Prod, 2020, 147:112238. |
[62] | TABARI M A, ROSTAMI A, KHODASHENAS A, et al. Acaricidal activity, mode of action, and persistent efficacy of selected essential oils on the poultry red mite (Dermanyssus gallinae)[J]. Food Chem Toxicol, 2020, 138:111207. |
[63] | BARAN A I, JAHANGHIRI F, HAJIPOUR N, et al. In vitro acaricidal activity of essential oil and alcoholic extract of Trachyspermum ammi against Dermanyssus gallinae[J]. Vet Parasitol, 2020, 278:109030. |
[64] | DHIVYA B, LATHA B R, RAJA M D, et al. Control of brown dog tick, Rhipicephalus sanguineus using assembly pheromone encapsulated in natural polymer, chitosan[J]. Exp Appl Acarol, 2014, 63(1):85-92. |
[65] | FOUNTAIN M T, DEAKIN G, FARMAN D, et al. An effective ‘push-pull’ control strategy for European tarnished plant bug, Lygus rugulipennis (Heteroptera:Miridae), in strawberry using synthetic semiochemicals[J]. Pest Manag Sci, 2021, 77(6):2747-2755. |
[66] | ADOUZI M E, ARRIAGA-JIMÉNEZ A, DORMONT L, et al. Modulation of feed composition is able to make hens less attractive to the poultry red mite Dermanyssus gallinae[J]. Parasitology, 2019, 147(2):171-181. |
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