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昆虫取食和挥发物诱导的杨树叶片中LOX和PAL活性变化(英文) 被引量:2

Activities of lipoxygenase and phenylalanine ammonia lyase in poplar leaves induced by insect herbivory and volatiles
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摘要 为了探索昆虫取食诱导的木本植物体内所产生的防御反应,以合作杨(Populus simonii×P.pyramidalis,‘Opera8277’)扦插苗为实验材料,经杨扇舟蛾(Clostera anachoreta)幼虫取食后,检测叶片中茉莉酸(jasmonate,JA)途径中的关键酶——脂氧合酶(lipoxygenase,LOX)及苯基丙酸类合成途径中的限速酶——苯丙氨酸解氨酶(phenylalanine ammonia lyase,PAL)的活性变化。结果显示,LOX和PAL的活性不仅在虫咬叶片中出现增加,在虫咬叶片上部的系统叶片中也有显著升高,表明茉莉酸途径和苯基丙酸类合成途径被激活,而且防御反应被系统性诱导。并且,与虫咬植株邻近的健康杨树叶片中LOX和PAL的增加表明,杨树间存在由昆虫取食诱导挥发物介导的信息传递。熏蒸实验也证明,茉莉酸甲酯(methyl jasmonate,MeJA)能够作为气体信号诱导合作杨植株产生防御反应。 A study was conducted to explore the defense response in woody plants after insect herbivory. The activities of two enzymes, lipoxygenase (LOX), a key enzyme ofjasmonate (JA) pathway, and phenylalanine ammonia lyase (PAL), a rate-limiting enzyme of phenyl- propanoid pathway, were measured in the leaves of one-year-old poplar (Populus simonii × P. pyramidalis 'Opera 8277') cuttings after Clostera anachoreta larvae attack. The results show that the increased activities of LOX and PAL were found not only in the leaves wounded by C. anachoreta larvae but also in their tipper systemic leaves, indicating that JA and phenylpropanoid pathways were activated, and the defense response was stimulated systemically. The increase in LOX and PAL activities in neighboring intact poplar cuttings sug- gested that there exists the interplant communication between poplar plants mediated by the herbivore-induced volatiles. Methyl jasmonate (MeJA) was also proved to be an airborne signal to induce defense response in P simonii × P pyramidalis 'Opera 8277' cuttings.
出处 《Journal of Forestry Research》 SCIE CAS CSCD 2009年第4期372-376,I0007,I0008,共7页 林业研究(英文版)
基金 supported by the Pro-gramme for Changjiang Scholars and the Innovative Research Team in Universities of China (PCSIRT0607) by the National Natural Science Foundation of China (30871727 30872037) the National Key Project of Scientific and Technical Supporting Programmes Funded by the Ministry of Science & Technology of China (2006BAD01A15 2006BAD24B04)
关键词 杨扇舟蛾幼虫(Clostera anachoreta) 脂氧合酶 茉莉酸甲酯 苯丙氨酸解氨酶 合作杨扦插苗 Clostera anachoreta larvae lipoxygenase methyl jasmonate phenylalanine ammonia lyase Populus simonii × p pyramidalis 'Opera 8277'cuttings
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  • 1Axelrod B,Cheesbrough TM,Leakso S.1981.Lipoxygenase from soybeans.Methods in Enzymology,7:443–451.
  • 2Baldwin IT,Schultz JC.1983.Rapid changes in tree leaf chemistry induced by damage:Evidence for communication between plants.Science,221:277–279.
  • 3Constabel CP.1999.A survey of herbivore-inducible defensive proteins and phytochemicals.In:Agrawal AA,Tuzun S,Bent E (eds),Inducible plant defenses against pathogens and herbivores:biochemistry,ecology,and ag-riculture.United States of America:American Phytopathological Society Press,pp.137–166.
  • 4Creelman RA,Mullet JE.1995.Jasmonic acid distribution and action in plants:Regulation during development and response to biotic and abiotic stress.Proceedings of the National Academy of Sciences of the United States of America,92:4114–4119.
  • 5Dixon RA,Paiva NL.1995.Stress-induced phenylpropanoid metabolism.Plant Cell,7:1085–1097.
  • 6Engelberth J,Alborn HT,Schmelz EA,Tumlinson JH.2003.Airborne signals prime plants against insect herbivore attack.Proceedings of the National Academy of Sciences of the United States of America,101:1781–1785.
  • 7Farmer EE,Johnson RR,Ryan CA.1992.Regulation of expression of pro-teinase inhibitor genes by methyl jasmonate and jasmonic acid.Plant Physiology,98:995–1002.
  • 8Farmer EE,Ryan CA.1990.Interplant communication:Airborne methyl jasmonate induces synthesis of proteinase inhibitors in plant leaves.Pro-ceedings of the National Academy of Sciences of the United States of America,87:7713–7716.
  • 9Feussner I,Wasternack C.2002.The lipoxygenase pathway.Annual Review of Plant Biology,53:275–297.
  • 10Hahlbrock K,Schell D.1989.Physiology and molecular biology of phehyl-propanoid metabolism.Annual Review of Plant Physiology and Plant Mo-lecular Biology,40:347–369.

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