植物挥发物对植食性昆虫行为、生长发育及生理生化的影响
[1] Xu, H. and Turlings, T.C.J. (2018) Plant Volatiles as Mate-Finding Cues for Insects. Trends in Plant Science, 23, 100-111.
https://doi.org/10.1016/j.tplants.2017.11.004 [2] 蔡晓明, 李兆群, 潘洪生, 等. 植食性害虫食诱剂的研究与应用[J]. 中国生物防治学报, 2018, 34(1): 8-35. [3] Yan, Z.G., Yan, Y.H. and Wang, C.Z. (2005) Attrac-tiveness of Tobacco Volatiles Induced by Helicoverpa armigera and Helicoverpa assulta to Campoletis chlorideae. Chinese Science Bulletin, 50, 1334-1341.
https://doi.org/10.1360/982005-388 [4] Xue, W.W., Fu, X.W., Luo, M.H., et al. (2009) Effects of Tobacco Vol-atiles on Ovipositing Behaviors of Two Sibling Helicoverpa Species and Volatile Chemical Analysis. Acta Ecologica Sinica, 29, 5783-5790. [5] Lin, K.J., Wu, K.M., Zhang, Y.J., et al. (2007) Research on the Ultrastructures of the An-tennal Sensilla of Bemisia tabaci Gennadius and the Olfactory Behavioral Actions to the Odors of Host Plants. Acta Phytophylacica Sinica, 34, 379-386. [6] 贾志飞, 仇延鑫, 赵永超, 等. 植物挥发物对昆虫的驱避和引诱作用研究进展[J]. 山东农业科学, 2022, 54(7): 164-172. [7] 贾梅. 康复景观中几种芳香植物挥发物及其对人体健康影响的研究[D]: [硕士学位论文]. 杭州: 浙江农林大学, 2018. [8] Sun, Y.F., Yu, H., Zhou, J.J., et al. (2014) Plant Volatile Analogues Strengthen Attractiveness to Insect. PLOS ONE, 9, e99142.
https://doi.org/10.1371/journal.pone.0099142 [9] 郭线茹, 原国辉, 蒋金炜, 等. 植物挥发性次生物质对昆虫触角电位反应的影响[J]. 河南农业大学学报, 2003(1): 18-22. [10] 孔岑, 刘淑敏, 原国辉, 等. 植物挥发性物质在蚜虫寄主定位过程中的作用及其相关研究[C]//华中三省(河南、湖北、湖南)昆虫学会2006年学术年会论文集. 北京: 中国农业大学出版社, 2006: 7. [11] 卢伟, 侯茂林, 文吉辉, 等. 植物挥发性次生物质对植食性昆虫的影响[J]. 植物保护, 2007(3): 7-11. [12] 戴建青, 韩诗畴, 杜家纬. 植物挥发性信息化学物质在昆虫寄主选择行为中的作用[J]. 环境昆虫学报, 2010, 32(3): 407-414. [13] 杜永均, 严福顺. 植物挥发性次生物质在植食性昆虫、寄生植物和昆虫天敌关系中的作用机理[J]. 昆虫学报, 1994(2): 233-250. [14] 杜家纬. 植物-昆虫间的化学通讯及其行为控制[J]. 植物生理学报, 2001(3): 193-200. [15] 宋晓君, 唐超, 覃伟权, 等. 虫害诱导植物挥发物的释放机制及应用[J]. 中国农学通报, 2009, 25(13): 161-165. [16] 娄永根, 程家安. 虫害诱导的植物挥发物: 基本特性、生态学功能及释放机制[J]. 生态学报, 2000(6): 1097-1106. [17] Knudsen, G.K., Norli, H.R. and Marco, T. (2017) The Ratio between Field Attractive and Background Volatiles Encodes Host-Plant Recognition in a Specialist Moth. Frontiers in Plant Science, 8, Article No. 2206.
https://doi.org/10.3389/fpls.2017.02206 [18] Beyaert, I., Wäschke, N., Scholz, A., et al. (2010) Relevance of Resource-Indicating Key Volatiles and Habitat Odour for Insect Orientation. Animal Behaviour, 79, 1077-1086.
https://doi.org/10.1016/j.anbehav.2010.02.001 [19] Webster, B. and Cardé, R.T. (2017) Use of Habitat Odour by Host-Seeking Insects. Biological Reviews, 92, 1241-1249.
https://doi.org/10.1111/brv.12281 [20] Aartsma, Y., Cusumano, A., De Bobadilla, M.F., et al. (2019) Under-standing Insect Foraging in Complex Habitats by Comparing Trophic Levels: Insights from Specialist Host-Parasitoid-Hyperparasitoid Systems. Current Opinion in Insect Science, 32, 54-60.
https://doi.org/10.1016/j.cois.2018.11.001 [21] 阎凤鸣. 化学生态学[M]. 北京: 科学出版社, 2003. [22] 樊慧, 金幼菊, 李继泉, 等. 引诱植食性昆虫的植物挥发性信息化合物的研究进展[J]. 北京林业大学学报, 2004, 26(3): 76-81. [23] 莫圣书, 赵冬香, 陈青. 植物挥发物与昆虫行为关系研究进展[J]. 热带农业科学, 2006, 26(6): 84-89+93. [24] 李䶮, 曾鑫年, 王瑞霞, 等. 信息化合物对昆虫行为的影响及其在害虫防治中的应用[J]. 广东农业科学, 2008(7): 85-89. [25] Ghaninia, M. and Tabari, M.A. (2016) Olfactory Cues Explain Differential Attraction of the Striped Rice Stem Borer to Different Varieties of Rice Plant. Journal of Applied Entomology, 140, 376-385.
https://doi.org/10.1111/jen.12270 [26] 阎雄飞, 刘永华, 王亚文, 等. 枣飞象对枣树植物挥发物的EAG和行为反应[J]. 昆虫学报, 2020, 63(8): 981-991. [27] 向玉勇, 刘同先, 张世泽. 植物挥发物在植食性昆虫寄主选择行为中的作用及应用[J]. 安徽农业科学, 2015, 43(28): 92-94+183. [28] Wang, H.M., Bai, P.H., Zhang, J., et al. (2020) Attraction of Bruchid Beetles Callosobruchus chinensis (L.) (Coleoptera: Bruchidae) to Host Plant Volatiles. Journal of Integrative Agriculture, 19, 3035-3044.
https://doi.org/10.1016/S2095-3119(20)63237-3 [29] Li, X., Zhang, X.G., Xiao, C., et al. (2020) Behavioral Re-sponses of Potato Tuber Moth (Phthorimaea operculella) to Tobacco Plant Volatiles. Journal of Integrative Agriculture, 19, 325-332.
https://doi.org/10.1016/S2095-3119(19)62663-8 [30] 李琳, 修春丽, 路伟, 等. 黄地老虎成虫对15种植物挥发物的电生理和行为反应[J]. 新疆农业科学, 2020, 57(11): 2020-2027. [31] 王鹏. 飞蝗感受不同范围的植物挥发物的行为反应[D]: [博士学位论文]. 北京: 中国农业大学, 2019. [32] Mccormick, A.C., Heyer, J., Sims, J.W., et al. (2017) Exploring the Effects of Plant Odors, from Tree Species of Differing Host Quality, On the Response of Lymantria Dispar Males to Female Sex Pheromones. Journal of Chemical Ecology, 43, 243-253.
https://doi.org/10.1007/s10886-017-0825-0 [33] Light, D.M., Flath, R.A., Buttery, R.G., et al. (1993) Host-Plant Green-Leaf Volatiles Synergize the Synthetics Sex Pheromones of the Corn Earworm and Codling Moth (Lepidoptera). Chemoecology, 4, 145-152.
https://doi.org/10.1007/BF01256549 [34] Reddy, G.V.P. and Guerrero, A. (2000) Behavioral Responses of the Diamondback Moth, Plutella xylostella, To Green Leaf Volatiles of Brassica oleracea Subsp. Capitata. Journal of Ag-ricultural and Food Chemistry, 48, 6025-6029.
https://doi.org/10.1021/jf0008689 [35] 和小娟, 相会明, 王怡, 等. 两种寄主植物挥发物对梨小食心虫性信息素的增效作用[J]. 山西农业大学学报(自然科学版), 2017, 37(12): 854-860. [36] 于海利, 张青文, 徐环李. 乙酸叶醇酯对梨小食心虫性信息素的增效作用[J]. 果树学报, 2015, 32(3): 469-473. [37] 孙海楠. 菊花及近缘种属植物挥发性次生代谢物的鉴定及合成机制初步研究[D]: [博士学位论文]. 南京: 南京农业大学, 2015. [38] Kimani, S.M., Chhabra, S.C., Khan, Z.R., et al. (2000) Airborne Volatiles from Melinis minutiflora P. Beauv., A Non-Host Plant of the Spotted Stem Borer. Journal of Essential Oil Research, 12, 221-224.
https://doi.org/10.1080/10412905.2000.9699502 [39] De Moraes, C.M., Mescher, M.C. and Tumlinson, J.H. (2001) Caterpillar-Induced Nocturnal Plant Volatiles Repel Conspecific Females. Nature, 410, 577-580.
https://doi.org/10.1038/35069058 [40] Kessler, A. and Baldwin, I.T. (2001) Defensive Function of Herbi-vore-Induced Plant Volatile Emissions in Nature. Science, 291, 2141-2144.
https://doi.org/10.1126/science.291.5511.2141 [41] 李钊阳, 韩云, 唐良德, 等. 普通大蓟马对寄主植物及其挥发物的行为反应[J]. 环境昆虫学报, 2021, 43(6): 1566-1580. [42] Li, G.Q. and Ishikawa, Y. (2004) Oviposition Deterrents in Larval Frass of Four Ostrinia Species Fed on an Artificial Diet. Journal of Chemical Ecology, 30, 1445-1456.
https://doi.org/10.1023/B:JOEC.0000037750.64844.4b [43] Li, G.Q. and Ishikawa, Y. (2005) Oviposition Deterrents from the Egg Masses of Adzuki Bean Borer, Ostrinia scapulalis and Asian Corn Borer, O. furnacalis. Entomologia Experimentalis et Applicata, 115, 401-407.
https://doi.org/10.1111/j.1570-7458.2005.00282.x [44] 师光禄, 杜艳丽, 于同泉, 等. 植物挥发性物质对昆虫的觅食作用[J]. 北京农学院学报, 2006, 21(4): 75-78. [45] 姚晓明. 不同寄主植物对斜纹夜蛾生殖力的影响及其机制研究[D]: [硕士学位论文]. 江苏: 扬州大学, 2009. [46] 蒋兴川, 董文霞, 肖春, 等. 甘蔗和玉米挥发物差异及其对亚洲玉米螟幼虫取食行为的调控作用[J]. 应用昆虫学报, 2017, 54(5): 803-812. [47] 樊建庭, 张冬勇, 章祖平, 等. 松墨天牛取食行为及其与寄主挥发物的关系[J]. 浙江农林大学学报, 2014, 31(1): 78-82. [48] 李绍文. 生态生物化学[M]. 北京: 北京大学出版社, 2001. [49] Timilsena, B.P., Irmgard, S.A. and Tumlinson, J.H. (2020) Herbivore-Specific Plant Volatiles Prime Neighboring Plants for Nonspecific Defense Responses. Plant Cell and En-vironment, 43, 787-800.
https://doi.org/10.1111/pce.13688 [50] 王琛柱, 查利文, 杨奇华. 棉铃虫的取食营养特点与棉花抗虫素分布的关系[J]. 昆虫学报, 1997, 40(1): 55-60. [51] Delphia, C.M., Mescher, M.C. and De Moraes, C.M. (2007) Induction of Plant Volatiles by Herbivores with Different Feeding Habits and the Effects of Induced Defenses on Host-Plant Selection by Thrips. Journal of Chemical Ecology, 33, 997-1012.
https://doi.org/10.1007/s10886-007-9273-6 [52] Fan, J., Kang, L. and Sun, J. (2007) Role of Host Volatiles in Mate Location by the Japanese Pine Sawyer, Monochamus alternatus Hope (Coleoptera: Cerambycidae). Environmental Entomology, 36, 58-63.
https://doi.org/10.1093/ee/36.1.58 [53] Xiao, C., Gregg, P.C., Hu, W.L., et al. (2002) Attraction of the Cotton Bollworm, Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae), To Volatiles from Wilted Leaves of a Non-Host Plant, Pterocarya stenoptera. Applied Entomology and Zoology, 37, 1-6.
https://doi.org/10.1303/aez.2002.1 [54] Zhang, H.F., Li, W.Z., Luo, Q.W., et al. (2018) Fatal Attraction: Ricinus communis Provides an Attractive but Risky Mating Site for Holotrichia parallela Beetles. Journal of Chemical Ecology, 44, 965-974.
https://doi.org/10.1007/s10886-018-0994-5 [55] Sugiura, N. (2016) Mate-Seeking and Oviposition Behavior of Chyliza vittata (Diptera: Psilidae) Infesting the Leafless Orchid Gastrodia elata. Entomological Science, 19, 129-132.
https://doi.org/10.1111/ens.12177 [56] Sadek, M.M. and Anderson, P. (2007) Modulation of Reproductive Be-haviour of Spodoptera littoralis by Host and Non-Host Plant Leaves. Basic and Applied Ecology, 8, 444-452.
https://doi.org/10.1016/j.baae.2006.08.001 [57] Binyameen, M., Hussain, A., Yousefi, F., et al. (2013) Modulation of Reproductive Behaviors by Non-Host Volatiles in the Polyphagous Egyptian Cotton Leafworm, Spodoptera littoralis. Journal of Chemical Ecology, 39, 1273-1283.
https://doi.org/10.1007/s10886-013-0354-4 [58] Binder, B.F., Robbins, J.C. and Wilson, R.L. (1995) Chemically Mediated Ovipositional Behaviors of the European Corn Borer, Ostrinia nubilalis (Lepidoptera: Pyralidae). Journal of Chemical Ecology, 21, 1315-1327.
https://doi.org/10.1007/BF02027564 [59] 马惠芬, 刘凌, 闫争亮, 等. 思茅松主要鳞翅目害虫的产卵选择性[J]. 东北林业大学学报, 2013, 41(9): 107-109. [60] 蒋敏. 寄主植物挥发物对莲草直胸跳甲趋性行为和生长繁殖的影响[D]: [硕士学位论文]. 福州: 福建农林大学, 2019. [61] 相会明, 李先伟, 曹敏, 等. 寄主植物挥发物对梨小食心虫产卵选择的影响[J]. 山西农业科学, 2020, 48(8): 1301-1304. [62] Cha, D.H., Nojima, S., Hesler, S.P., et al. (2008) Identification and Field Evaluation of Grape Shoot Volatiles Attractive to Female Grape Berry Moth (Paralobesia viteana). Journal of Chemical Ecology, 34, 1180-1189.
https://doi.org/10.1007/s10886-008-9517-0 [63] 马艳粉, 李正跃, 任明佳, 等. 马铃薯块茎蛾对不同寄主植物的产卵选择性比较[J]. 农药, 2010, 49(5): 380-382+389. [64] Yu, J., Yang, B., Chang, Y.J., et al. (2020) Identifica-tion of a General Odorant Receptor for Repellents in the Asian Corn Borer Ostrinia furnacalis. Frontiers in Physiology, 11, Article No. 176.
https://doi.org/10.3389/fphys.2020.00176 [65] Mccallum, E.J., Cunningham, J.P., Luecker, J., et al. (2011) Increased Plant Volatile Production Affects Oviposition, but Not Larval Development, In the Moth Helicoverpa armigera. Journal of Experimental Biology, 214, 3672-3677.
https://doi.org/10.1242/jeb.059923 [66] Veyrat, N., Robert, C.A.M., Turlings, T.C.J., et al. (2016) Herbivore In-toxication as a Potential Primary Function of an Inducible Volatile Plant Signal. Journal of Ecology, 104, 591-600.
https://doi.org/10.1111/1365-2745.12526 [67] Von Merey, G.E., Veyrat, N., D’alessandro, M., et al. (2013) Her-bivore-Induced Maize Leaf Volatiles Affect Attraction and Feeding Behavior of Spodoptera littoralis Caterpillars. Frontiers in Plant Science, 4, Article No. 209.
https://doi.org/10.3389/fpls.2013.00209 [68] 李晓颖, 王志刚, 毕拥国, 等. 7种非寄主植物挥发物对桃小食心虫繁殖与发育的影响[J]. 河北农业大学学报, 2011, 34(5): 73-77. [69] Mithofer, A. and Boland, W. (2012) Plant Defense against Herbivores: Chemical Aspects. Annual Review of Plant Biology, 63, 431-450.
https://doi.org/10.1146/annurev-arplant-042110-103854 [70] Steppuhn, A., Gase, K., Krock, B., et al. (2004) Nicotine’s Defensive Function in Nature. PLOS Biology, 2, 1684-1684.
https://doi.org/10.1371/journal.pbio.0020217 [71] 张秀歌, 李祥, 孙小旭, 等. 植物挥发物对蛾类昆虫性信息素的影响[J]. 应用昆虫学报, 2015, 52(6): 1333-1344. [72] Ghosh, E. and Venkatesan, R. (2019) Plant Volatiles Modulate Immune Responses of Spodoptera litura. Journal of Chemical Ecology, 45, 715-724.
https://doi.org/10.1007/s10886-019-01091-3 [73] 侯丽伟, 程彬, 陈思羽, 等. 蒙古栎枝叶部挥发物的分析[J]. 吉林林业科技, 2020, 49(4): 34-36. [74] 杨真, 张宏瑞, 李正跃. 植物挥发物对蛾类昆虫行为影响的研究进展[J]. 南方农业学报, 2015, 46(3): 441-446.
相关知识
不同光照对植物生长、生理生化和形态结构影响的研究进展
植物的生长发育与生物节律.pptx
植物的生长发育与生物节律
8种十字花科植物子叶和真叶对小菜蛾生长发育和生理代谢的影响
西花蓟马对二斑叶螨为害菜豆的选择性与挥发物的关系
不同LED光质、光强对瓠瓜幼苗生长及若干生理生化特性的影响
温度对花卉生长发育的影响表现在哪些方面
中国昆虫学会
园艺植物保护 昆虫的生物学特性 昆虫的生物学特性.ppt
‘黄冠’梨正常试管苗与玻璃化苗生理生化及超微结构的比较研究
网址: 植物挥发物对植食性昆虫行为、生长发育及生理生化的影响 https://m.huajiangbk.com/newsview308030.html