[1] 张文辉,刘光杰.植物抗虫性次生物质的研究概况[J].植物学通报,2003,20(5):522-530.
[2] 严善春,张丹丹,迟德富.植物挥发性物质对昆虫作用的研究进展[J].应用生态学报,2003,14(2):310-313.
[3] 梁军,张星耀.森林有害生物生态控制[J].林业科学,2005,41(4):168-176.
[4] 祝传书,赵惠燕.虫害诱导的植物挥发物[J].西北农林科技大学学报:自然科学版,2003,31(增刊):183-186.
[5] 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.
[6] Dicke M,Van Beek T A,Posthumus M A,et al.Isolation and identification of volatile kairomone that affects acarine predator-prey interactions:involvement of host plant in its production[J].Journal of Chemical Ecology,1990,16:381-396.
[7] Dicke M,van Poecke R M P,de Boer J G.Inducible indirect defence of plants:from mechanisms to ecological functions[J].Basic and Applied Ecology,2003,4:27-42.
[8] Turlings T C J,Tumlinson J H,Lewis W J.Exploitation of herbivore-induced plant odors by host-seeking parasitic wasps[J].Science,1990,250(4985):1251-1253.
[9] Agrawal A A.Induced responses to herbivory and increased plant performance[J].Science,1998,279:1201-1202.
[10] Mumm R,Hilker M.Direct and indirect chemical defence of pine against folivorous insects[J].Trends in Plant Science,2006,11(7):351-358.
[11] Bruinsma M,Pang B,Mumm R,et al.Comparing induction at an early and late step in signal transduction mediating indirect defence in Brassica oleracea[J].Journal of Experimental Botany,2009a,60(9):2589-2599.
[12] 赵冬香,高景林,陈宗懋.植食性昆虫对寄主植物的定向行为研究进展[J].热带农业科学,2004,24(2):62-68.
[13] Brilli F,Ciccioli P,Frattoni M,et al.Constitutive and herbivore-induced monoterpenes emitted by Populus×euroamericana leaves are key volatiles that orient Chrysomela populi beetles[J].Plant Cell and Environment,2009,32(5):542-552.
[14] Bruinsma M,Posthumus M A,Mumm R,et al.Jasmonic acid-induced volatiles of Brassica oleracea attract parasitoids:effects of time and dose,and comparison with induction by herbivores[J].Journal of Experimental Botany,2009b,60(9):2575-2587.
[15] Dicke M,van Loon J J A,Soler R.Chemical complexity of volatiles from plants induced by multiple attack[J].Nature Chemical Biology,2009,5:317-324.
[16] 王志辉,白郁华,王雪松,等.西双版纳地区三叶橡胶树异戊二烯和单萜烯排放机理初步研究[J].北京大学学报:自然科学版,2003a,39(4):512-516.
[17] 王永峰,李庆军.陆地生态系统植物挥发性有机化合物的排放及其生态学功能研究进展[J].植物生态学报,2005,29(3):487-496.
[18] Wildermuth M C,Fall R.Light-dependent isoprene emission:Characterization of a thylakoid-bound isoprene synthase in Salix Discolor[J].Plant Physiology,1996,112:171-182.
[19] Kesselmeier J,Staudt M.Biogenic volatile organic compounds(VOC):An overview on emission,physiology and ecology[J].Journal of Atmospheric Chemistry,1999,33:23-88.
[20] 王志辉,张树宇,陆思华,等.北京地区植物VOCs 排放速率的测定[J].环境科学,2003b,24(2):6-12.
[21] Guenther A,Hewitt CN,Erickson D,et al.A global model of natural volatile organic compound emissions[J].Journal of Geophysical Research,1995,100:8 873-8 892.
[22] Guenther A,Zimmerman P,Harley P,et al.Isoprene and monoterpene emission rate variability:model evaluation and sensitivity analysis[J].Journal of Geophysical Research,1993,98:12609-12617.
[23] Karlik J F,McKaya A H,Welcha J M,et al.A survey of California plant species with a portable VOC analyzer for biogenic emission inventory development[J].Atmospheric Environment,2002,36:5221-5233.
[24] Zimmerman P R.Natural sources of ozone in Houston:natural organics.In:Air pollution control association.proc specialty conf on ozone/oxidants-interactions with the total environment[M].Pittsburgh,PA:Air Pollution Control Association.1979.
[25] Loreto F,Mannozzi M,Maris C,et al.Ozone quenching properties of isoprene and its antioxidant role in leaves[J].Plant Physiology,2001,126:993-1000.
[26] Benjamin M T.Low-emitting urban forests:a taxonomic methodology for assessing isoprene and monoterpene emission rates[J].Atmospheric Environment,1996,30:1437-1452.
[27] 平立岩,沈应柏,金幼菊,等.几个树种机械损伤诱导挥发物的比较初报[J].植物学报,2001,43(3):261-266.
[28] Klinger L F,Li Q J,Guenther A B,et al.Assessment of volatile organic compound emissions from ecosystems of China[J].Journal of Geophysical Research,2002,107:4603-4624.
[29] 潘丹,翟明普,郭素娟.核桃植株挥发性气体化学成分分析[J].山东农业大学学报:自然科学版,2007,38(2):234-238.
[30] 张凤娟,李继泉,徐兴友,等.皂荚和物角枫挥发物质组成及其对空气微生物的抑制作用[J].园艺学报,2007,34(4):973-978.
[31] 李海东,高岩,金幼菊.珍珠梅花挥发性物质日动态变化的研究[J].内蒙古农业大学学报,2004,25(2):54-59.
[32] 李中新,李庆和,刘凤菊,等.火炬树(Rhus typhina)叶挥发性成分及其对两种叶螨选择行为的影响[J].生态学报,2009,29(2):714-719.
[33] Martin D M,Gershenzon J,Bohlmann J.Induction of volatile terpene biosynthesis and diurnal emission by methyl Jasmonate in foliage of Norway spruce[J].Plant Physiology,2003,132:1586-1599.
[34] 李金龙,白郁华,胡建信,等.油松排放萜烯类化合物浓度的日变化及排放速率的研究[J].中国环境科学,1994,14(3):165-169.
[35] 王鸿斌,王玉刚,张真,等.油松挥发性物质分析及红脂大小蠹的触角电位反应[J].林业科学,2006,142(15):84-88.
[36] 孔祥波,张真,王鸿斌,等.侧柏挥发性化学成分的鉴定及其对双条天牛的触角电位反应[J].林业科学研究,2005,18(3):260-266.
[37] 任琴,金幼菊,胡永建,等.马尾松诱导挥发性有机化合物的快速变化[J].林业科学,2006,42(4):65-70.
[38] 胡永建,任琴,金幼菊,等.马尾松(Pinus massoniana)、湿地松(Pinus elliottii)挥发性化学物质的昼夜节律释放[J].生态学报,2007,27(2):565-570.
[39] 徐伟,严善春,廖月枝,等.落叶松(Larix gemelinii)苗挥发物两种收集方法的对比分析[J].生态学报,2009,29(6):2884-2892.
[40] Takabayashi J,Docke M,Posthumus M A.Volatile herbivore-induced terpenoids in plant-mite interactions:variations caused by biotic and abiotic factors[J].Journal of Chemical Ecology,1994,20:1329-1354.
[41] Gouinguene S P,Turlings T C J.The effects of abiotic factors on induced volatile emissions in corn plants[J].Plant Physiology,2002,129:1296-1307.
[42] Sharkey T D,Singsaas E L.Why plants emit isoprene[J].Nature,1995,374:769-769.
[43] Dudareva N,Pichersky E,Gershenzon J.Biochemistry of plant volatiles[J].Plant Physiology,2004,135:1893-1902.
[44] De Moraes C M,Mescher M C,Tumlinson J H.Caterpillar-induced nocturnal plant volatiles repel conspecific females[J].Nature,2001,410:577-580.
[45] Schmelz E A,Alborn H T,Engelberth J,et al.Nitrogen deficiency increases volicitin-induced volatile emission,jasmonic acid accumulation,and ethylene sensitivity in maize[J].Plant Physiology,2003,133:295-306.
[46] Olson D M,Cortesero A M,Rains G C,et al.Nitrogen and water affect direct and indirect plant systemic induced defense in cotton[J].Biological Control,2009,49(3):239-244.
[47] Par P W,Tumlinson J H.Plant volatiles as a defense against insect herbivores[J].Plant Physiology,1999,121:325-331.
[48] Kessler A,Baldwin I T.Defensive function of herbivore-induced plant volatile emissions in nature[J].Science,2001,291:2141-2145.
[49] Felton G W,Tumlinson J H.Plant insect dialogs:complex interactions at the plant insect interface[J].Current Opinion in Plant Biology,2008,11(4):457-463.
[50] 李继泉,樊慧,金幼菊,等.光肩星天牛取食后复叶槭挥发物的释放机制[J].北京林业大学学报,2002,24(5/6):170-174.
[51] 胡永建,任琴,李镇宇,等.虫害马尾松(Pinus massoniana Lamb)邻枝针叶挥发物及其内源茉莉酸甲酯的快速变化[J].生态学报,2008,28(11):5331-5337.
[52] 李新岗,杨立军,刘拉平,等.松果梢斑螟成虫的寄主选择[J].林业科学,2009,45(2):75-81.
[53] Par P W,Tumlinson J H.De novo biosynthesis of volatiles induced by insect herbivory in cotton plants[J].Plant Physiology,1997,114:1161-1167.
[54] Fujita M,Fujita Y,Noutoshi Y,et al.Crosstalk between abiotic and biotic stress responses:a current view from the points of convergence in the stress signaling networks[J].Current Opinion in Plant Biology,2006,9(4):436-442.
[55] Tuteja N,Sopory S K.Chemical signaling under abiotic stress environment in plants[J].Plant Signal Behavior,2008,3(8):525-536.
[56] Erbilgin N,Raffa K E.Opposing effects of host monoterpenes on responses by two sympatric species of bark beetles to their aggregation pheromones[J].Journal of Chemical Ecology,2000,26:2527-2548.
[57] Chenier J V R,Philogene B J R.Field responses of certain forest coleoplera to conifer monterpenes and athano1[J].Journal of Chemical Ecology,1989,15(6):1929-1945.
[58] 严善春,杨慧,高璐璐,等.落叶松挥发物及7种药剂对兴安落叶松鞘蛾嗅觉和产卵反应的影响[J].林业科学,2008,44(12):83-87.
[59] Kendrick A P,Raffa K F.Sources of insect and plant volatiles attractive to cottonwood leaf beetles feeding on hybrid poplar[J].Journal of Chemical Ecology,2006,32:2585-2594.
[60] 赵冬香,高景林,陈宗懋,等.假眼小绿叶蝉对茶树挥发物的定向行为反应[J].华南农业大学学报:自然科学版,2002,23(4):27-29.
[61] 雷静品.三峡库区马尾松、柏木林木生长及健康经营研究[D].北京:中国林科院,2009.
[62] Baldwin I T,Halitschke R,Pashold A,et al.Volatile signalling in plant-plant interactions:'talking trees' in the genomics era[J].Science,2006,311:812-815.
[63] Heil M,Bueno J C S.Within-plant signaling by volatiles leads to induction and priming of an indirect plant defense in nature[J].PNAS,2007,104:5467-5472.
[64] 李中新,孙绪艮,刘学辉.2种叶螨对银杏叶的选择性及其挥发物测定[J].林业科学,2007,43(11):170-174.
[65] 薛皎亮,贺珺,谢映平.植物挥发物对天敌昆虫异色瓢虫的引诱效应[J].应用与环境生物学报,2008,14(4):494-498.
[66] Dicke M.Local and systemic production of volatile herbivore-induced terpenoids:their role in plant-carnivore mutualism[J].Journal of Plant Physiology,1994,143:465-472.
[67] De Moraes C M,Lewis W J,Paré P W,et al.Herbivore-infested plants selectively attract parasitoids[J].Nature,1998,393:570-573.
[68] 张艳峰,谢映平,薛皎亮,等.茉莉酸甲酯和日本龟蜡蚧诱导柿树挥发物对红点唇瓢虫的吸引[J].林业科学,2009,45(1):90-96.
[69] Lou Y G,Du M H,Turlings T C J,et al.Exogenous application of jasmonic acid induces volatile emissions in rice and enhances parasitism of Nilaparvata lugens eggs by the parasitoid Anagrus nilaparvatae[J].Journal of Chemical Ecology,2005,31(9):1985-2002.
[70] Dicke M,Gols R,Ludeking D,et al.Jasmonic acid and herbivory differentially induce carnivore-attracting plant volatiles in Lima bean plants[J].Journal of Chemical Ecology,1999,25:1907-1922.
[71] 娄永根,汪霞,杜孟浩,等.寄生性天敌寄生行为及研究中应注意的若干问题[J].生态学杂志,2005,24(4):438-442.
[72] Dicke M,Hilker M.Induced plant defences:from molecular biology to evolutionary ecology[J].2003,4(1):3-14.
[73] Baldwin IT,Halitschke R,Kessler A,et al.Merging molecular and ecological approaches in plant insect interactions[J].Current Opinion in Plant Biology,2001,4(4):351-358.
[74] Roda A L,Baldwin I T.Molecular technology reveals how the induced direct defenses of plants work[J].Basic and Applied Ecology,2003,4(1):15-26. |