茉莉酸甲酯和水杨酸甲酯诱导杨树叶片内酚酸含量的变化
用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P. deltoids)植株,采用高效液相色谱技术(HPLC)检测杨树叶片内没什子酸、儿茶酸、邻苯二酚、咖啡酸、香豆酸、阿魏酸和苯甲酸的含量变化,分析MeJa与MeSa诱导植物叶片内酚酸含量的差异.结果表明:在不同的处理条件下,不同酚酸含量存在显著差异.MeJA及MeSa熏蒸后的黑杨叶片内没什子酸、香豆酸、咖啡酸、阿魏酸和苯甲酸含量均增加,且没什子酸含量在MeJa处理24 h后达到最大量,在MeSa处理12天后达到最大量.MeJa及MeSa熏蒸后的合作杨叶片内没什子酸...
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Published in | Journal of forestry research Vol. 17; no. 2; pp. 107 - 110 |
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Main Author | |
Format | Journal Article |
Language | Chinese English |
Published |
北京林业大学,生物科学与技术学院,北京,100083%北京林业大学,科技处,北京,100083
2006
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Subjects | |
Online Access | Get full text |
ISSN | 1007-662X 1993-0607 |
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Abstract | 用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P. deltoids)植株,采用高效液相色谱技术(HPLC)检测杨树叶片内没什子酸、儿茶酸、邻苯二酚、咖啡酸、香豆酸、阿魏酸和苯甲酸的含量变化,分析MeJa与MeSa诱导植物叶片内酚酸含量的差异.结果表明:在不同的处理条件下,不同酚酸含量存在显著差异.MeJA及MeSa熏蒸后的黑杨叶片内没什子酸、香豆酸、咖啡酸、阿魏酸和苯甲酸含量均增加,且没什子酸含量在MeJa处理24 h后达到最大量,在MeSa处理12天后达到最大量.MeJa及MeSa熏蒸后的合作杨叶片内没什子酸、邻苯二酚和阿魏酸含量也增加,儿茶酸和苯甲酸含量略有下降,咖啡酸和香豆酸在对照叶片和熏蒸叶片内都没有检测到.说明MeJa与MeSa可作为气体信号诱导植株产生防御反应. |
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AbstractList | 用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P. deltoids)植株,采用高效液相色谱技术(HPLC)检测杨树叶片内没什子酸、儿茶酸、邻苯二酚、咖啡酸、香豆酸、阿魏酸和苯甲酸的含量变化,分析MeJa与MeSa诱导植物叶片内酚酸含量的差异.结果表明:在不同的处理条件下,不同酚酸含量存在显著差异.MeJA及MeSa熏蒸后的黑杨叶片内没什子酸、香豆酸、咖啡酸、阿魏酸和苯甲酸含量均增加,且没什子酸含量在MeJa处理24 h后达到最大量,在MeSa处理12天后达到最大量.MeJa及MeSa熏蒸后的合作杨叶片内没什子酸、邻苯二酚和阿魏酸含量也增加,儿茶酸和苯甲酸含量略有下降,咖啡酸和香豆酸在对照叶片和熏蒸叶片内都没有检测到.说明MeJa与MeSa可作为气体信号诱导植株产生防御反应. Q946.8; 用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P. deltoids)植株,采用高效液相色谱技术(HPLC)检测杨树叶片内没什子酸、儿茶酸、邻苯二酚、咖啡酸、香豆酸、阿魏酸和苯甲酸的含量变化,分析MeJa与MeSa诱导植物叶片内酚酸含量的差异.结果表明:在不同的处理条件下,不同酚酸含量存在显著差异.MeJA及MeSa熏蒸后的黑杨叶片内没什子酸、香豆酸、咖啡酸、阿魏酸和苯甲酸含量均增加,且没什子酸含量在MeJa处理24 h后达到最大量,在MeSa处理12天后达到最大量.MeJa及MeSa熏蒸后的合作杨叶片内没什子酸、邻苯二酚和阿魏酸含量也增加,儿茶酸和苯甲酸含量略有下降,咖啡酸和香豆酸在对照叶片和熏蒸叶片内都没有检测到.说明MeJa与MeSa可作为气体信号诱导植株产生防御反应. |
Abstract_FL | The contents of seven different phenolic acids such as gallic acid, catechinic acid, pyrocatechol, caffeic acid, coumaric acid, ferulic acid and benzoic acid in the poplar leaves (Populus Simonii×Populus Pyramibalis c.v and Populus deltoids) suffocated by Methyl jasmonate (MeJA) and Methyl salicylate (MeSA) were monitored for analyzing their functions in interplant communications by using high-pressure liquid chromatography (HPLC).The results showed that the contents of phenolic acids had obviously difference in leaves exposed to either MeSA or MeJA.When P.deltoides leaves exposed to MeJA or MeSA, the level of gallic acid, coumaric acid, caffeic acid, ferulic acid and benzoic acid was increased, gallic acid in leaves treated with MeJA comes to a peak at 24 h while to a peak at 12-d having leaves treated with MeSA.When P.Simonii ×P.Pyramibalis c.v leaves were exposed to MeJA or MeSA, the level of gallic acid, pyrocatechol and ferulic acid was increased; The catechinic acid and benzoic acid had a little drop; The caffeic acid and coumaric acid were undetected in both suffocated and control leaves.This changed pattern indicated that MeJA and MeSA can act as airborne signals to induce defense response of plants. |
Author | 安钰 沈应柏 吴丽娟 张志翔 |
AuthorAffiliation | 北京林业大学生物科学与技术学院,北京100083 北京林业大学科技处,北京100083 |
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Author_FL | WU Li-juan AN Yu ZHANG Zhi-xiang SHEN Ying-bai |
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ClassificationCodes | Q946.8 |
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Copyright | Copyright © Wanfang Data Co. Ltd. All Rights Reserved. |
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DocumentTitleAlternate | A change of phenolic acids content in poplar leaves induced by methyl salicylate and methyl jasmonate |
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Keywords | 气体信号 茉莉酸甲酯 Phenolic acid Airborne signal 水杨酸甲酯 诱导抗性 酚酸 Methyl jasmonate (MeJA) Methyl salicylate (MeSA) Induce resistance |
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Notes | Q946.8 Phenolic acid Methyl salicylate (MeSA); Methyl jasmonate (MeJA); Airborne signal; Phenolic acid; Induce resistance Airborne signal Methyl jasmonate (MeJA) Methyl salicylate (MeSA) Induce resistance 23-1409/S |
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PublicationYear | 2006 |
Publisher | 北京林业大学,生物科学与技术学院,北京,100083%北京林业大学,科技处,北京,100083 |
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Snippet | 用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P.... Q946.8; 用茉莉酸甲酯(MeJa)及水杨酸甲酯(MeSa)熏蒸合作杨(P. Simonii×P. Pyramibalis c.v)和黑杨(P.... |
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SubjectTerms | 气体信号 水杨酸甲酯 茉莉酸甲酯 诱导抗性 酚酸 |
Title | 茉莉酸甲酯和水杨酸甲酯诱导杨树叶片内酚酸含量的变化 |
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