[1] VOSSHALL L B, STOCKER R F. Molecular architecture of smell and taste in Drosophila[J]. Annual Review of Neuroscience, 2007, 30: 505-533. doi: 10.1146/annurev.neuro.30.051606.094306
[2] SUH E, BOHBOT J D, ZWIEBEL L. Peripheral olfactory signaling in insects[J]. Current Opinion in Insect Science, 2014, 6: 86-92. doi: 10.1016/j.cois.2014.10.006
[3] FLEISCHER J, PREGITZER P, BREER H, et al. Access to the odor world: olfactory receptors and their role for signal transduction in insects[J]. Cellular and Molecular Life Sciences, 2018, 75(3): 485-508.
[4] VOSSHALL L B, WONG A M, AXEL R. An olfactory sensory map in the fly brain[J]. Cell, 2000, 102(2): 147-159. doi: 10.1016/S0092-8674(00)00021-0
[5] HALLEM E A, HO M G, CARLSON J R. The molecular basis of odor coding in the Drosophila antenna[J]. Cell, 2004, 117(7): 965-979. doi: 10.1016/j.cell.2004.05.012
[6] HALLEM E A, CARLSON J R. Coding of odors by a receptor repertoire[J]. Cell, 2006, 125(1): 143-160. doi: 10.1016/j.cell.2006.01.050
[7] JONES W D, CAYIRLIOGLU P, KADOW I G, et al. Two chemosensory receptors together mediate carbon dioxide detection in Drosophila[J]. Nature, 2007, 445(7123): 86-90. doi: 10.1038/nature05466
[8] BENTON R, VANNICE K S, GOMEZ-DIAZ C, et al. Variant ionotropic glutamate receptors as chemosensory receptors in Drosophila[J]. Cell, 2009, 136(1): 149-162. doi: 10.1016/j.cell.2008.12.001
[9] PASK G M, SLONE J D, MILLAR J G, et al. Specialized odorant receptors in social insects that detect cuticular hydrocarbon cues and candidate pheromones[J]. Nature Communications, 2017, 8: 297. doi: 10.1038/s41467-017-00099-1
[10] SLONE J D, PASK G M, FERGUSON S T, et al. Functional characterization of odorant receptors in the ponerine ant, Harpegnathos saltator[J]. Proceedings of the National Academy of Sciences of the United States of America, 2017, 114(32): 8586-8591. doi: 10.1073/pnas.1704647114
[11] 白鹏华, 王 冰, 张仙红, 等. 昆虫气味受体的研究方法与进展[J]. 昆虫学报, 2022, 65(3):364-385. doi: 10.16380/j.kcxb.2022.03.012
[12] 马瑞燕, 杜家纬. 昆虫的触角感器[J]. 昆虫知识, 2000, 37(3):179-183.
[13] 王桂荣, 郭予元, 吴孔明. 棉铃虫触角感器的超微结构观察[J]. 中国农业科学, 2002, 35(12):1479-1482+1584-1586.
[14] SCHNEIDER D. Insect antennae[J]. Annual Review of Entomology, 1964, 9: 103-122. doi: 10.1146/annurev.en.09.010164.000535
[15] 杨忠岐, 王小艺, 曹亮明, 等. 管氏肿腿蜂的再描述及中国硬皮肿腿蜂属Sclerodermus (Hymenoptera: Bethylidae) 的种类[J]. 中国生物防治学报, 2014, 30(1):1-12.
[16] 胡 霞, 周祖基, 蒋学建, 等. 川硬皮肿腿蜂雌蜂触角超微结构观察[J]. 辽宁林业科技, 2006, 33(6):4-7.
[17] LI X R, LU D G, LIU X X, et al. Ultrastructural characterization of olfactory sensilla and immunolocalization of odorant binding and chemosensory proteins from an ectoparasitoid Scleroderma guani (Hymenoptera: Bethylidae)[J]. International Journal of Biological Sciences, 2011, 7(6): 848-868. doi: 10.7150/ijbs.7.848
[18] ZHOU C X, SUN X, MI F, et al. Antennal sensilla in the parasitoid Sclerodermus sp. (Hymenoptera: Bethylidae)[J]. Journal of Insect Science, 2015, 15(36): 1. doi: 10.1093/jisesa/iev024
[19] JIANG Y, YANG Z Q, WANG X Y, et al. Molecular identification of sibling species of Sclerodermus (Hymenoptera: Bethylidae) that parasitize buprestid and cerambycid beetles by using partial sequences of mitochondrial DNA cytochrome oxidase subunit 1 and 28s ribosomal RNA gene[J]. PLoS One, 2015, 10(3): e0119573. doi: 10.1371/journal.pone.0119573
[20] ZACHARUK R Y. Ultrastructure and function of insect chemosensilla[J]. Annual Review of Entomology, 1980, 25: 27-47. doi: 10.1146/annurev.en.25.010180.000331
[21] BLEEKER M A K, SMID H M, VAN AELST A C, et al. Antennal sensilla of two parasitoid wasps: a comparative scanning electron microscopy study[J]. Microscopy Research and Technique, 2004, 63(5): 266-273. doi: 10.1002/jemt.20038
[22] 田慎鹏, 徐志强. 管氏肿腿蜂触角感器的扫描电镜观察[J]. 昆虫知识, 2003, 40(1):59-62.
[23] 孙伊阳, 覃东玉, 潘丽娜, 等. 白蛾周氏啮小蜂触角感受器性二型超微结构分析[J]. 林业科学, 2020, 56(10):135-144. doi: 10.11707/j.1001-7488.20201015
[24] 董文霞, 张钟宁. 中红侧沟茧蜂触角感受器的扫描电镜观察[J]. 昆虫学报, 2006, 49(6):1054-1059. doi: 10.3321/j.issn:0454-6296.2006.06.025
[25] ROUX O, VAN BAAREN J, GERS C, et al. Antennal structure and oviposition behavior of the Plutella xylostella specialist parasitoid: Cotesia plutellae[J]. Microscopy Research and Technique, 2005, 68(1): 36-44. doi: 10.1002/jemt.20220
[26] GAO Y, LUO L Z, HAMMOND A. Antennal morphology, structure and sensilla distribution in Microplitis pallidipes (Hymenoptera: Braconidae)[J]. Micron, 2006, 38(6): 684-693. doi: 10.1016/j.micron.2006.09.004
[27] ONAGBOLA E O, FADAMIRO H Y. Scanning electron microscopy studies of antennal sensilla of Pteromalus cerealellae (Hymenoptera: Pteromalidae)[J]. Micron, 2008, 39: 526-535. doi: 10.1016/j.micron.2007.08.001
[28] WANG X Y, YANG Z Q, GOULD J R. Sensilla on the antennae, legs and ovipositor of Spathius agrili Yang (Hymenoptera: Braconidae), a parasitoid of the emerald ash borer Agrilus planipennis Fairmaire (Coleoptera: Buprestidae)[J]. Microscopy Research and Technique, 2010, 73(5): 560-571.
[29] DAS P, CHEN L, SHARMA K R, et al. Abundance of antennal chemosensilla in two parasitoid wasps with different degree of host specificity may explain sexual and species differences in their response to host-related volatiles[J]. Microscopy Research and Technique, 2011, 74(10): 900-909. doi: 10.1002/jemt.20974
[30] ZHOU H, WU W J, NIU L M, et al. Antennal sensilla of female Encarsia guadeloupae Viggiani (Hymenoptera: Aphelinidae), a nymphal parasitoid of the spiraling whitefly Aleurodicus dispersus (Hemiptera: Aleyrodidae)[J]. Micron, 2013, 44: 365-372. doi: 10.1016/j.micron.2012.09.001
[31] 刘燕梅, 曾浩源, 王姿烨, 等. 亮腹釉小蜂成虫触角感受器的超微结构[J]. 植物保护学报, 2021, 48(4):822-829. doi: 10.13802/j.cnki.zwbhxb.2021.2020151
[32] WANG S N, PENG Y, LU Z Y, et al. Cloning and expression profile of ionotropic receptors in the parasitoid wasp Microplitis mediator (Hymenoptera: Braconidae)[J]. Journal of Insect Physiology, 2016, 90: 27-35. doi: 10.1016/j.jinsphys.2016.05.002
[33] DA ROCHA L, MOREIRA G R P, REDAELLI L R. Morphology and distribution of antennal sensilla of Gryon gallardoi (Brèthes) (Hymenoptera: Scelionidae) females[J]. Neotropical Entomology, 2007, 36(5): 721-728. doi: 10.1590/S1519-566X2007000500013
[34] YAO C A, IGNELL R, CARLSON J R. Chemosensory coding by neurons in the coeloconic sensilla of the Drosophila antenna[J]. The Journal of Neuroscience, 2005, 25(37): 8359-8367. doi: 10.1523/JNEUROSCI.2432-05.2005
[35] COUTO A, ALENIUS M, DICKSON B J. Molecular, anatomical, and functional organization of the Drosophila olfactory system[J]. Current Biology, 2005, 15(17): 1535-1547. doi: 10.1016/j.cub.2005.07.034
[36] 高 宇, 王志英, 赵红盈, 等. 白蜡吉丁啮小蜂触角感觉器的扫描电镜观察[J]. 中国农业科学, 2013, 46(9):1956-1964.
[37] YANG Z Q, WANG X Y, GOULD J R, et al. Host specificity of Spathius agrili Yang (Hymenoptera: Braconidae), an important parasitoid of the emerald ash borer[J]. Biological Control, 2008, 47(2): 216-221. doi: 10.1016/j.biocontrol.2008.08.001
[38] DUAN J J, SCHMUDE J M, WANG X Y, et al. Host utilization, reproductive biology, and development of the larval parasitoid Tetrastichus planipennisi as influenced by temperature: implications for biological control of the emerald ash borer in North America[J]. Biological Control, 2018, 125: 50-56. doi: 10.1016/j.biocontrol.2018.06.009