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华山松树皮挥发性诱虫活性物质成分分析 被引量:9

Analysis of Volatile Constituents in Pinus armandii Bark with GC/MS
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摘要 In this study,steam distillation was used to extract the volatile constituents from the bark of Pinus armandii.The volatile constituents and Pissodes punctatus were used for laboratory test by"Y"olfactometer.The chemical constituents of the volatile oil were identified with GC/MS method.6.25% volatile constituents showed strong attractiveness to Pissodes punctatus in the laboratory,and 65 compounds were identified mainly including such chemical compound as Limonene(29.27%),Benzene(17.81%),1R-.alpha.-Pinene(16.08%),3-Methylhexane(7.15%),and Heptane(5.55%),beta.-Pinene(5.67%),Caryophyllene(3.27%),beta.-Myrcene(3.1%) and etc. In this study, steam distillation was used to extract the volatile constituents from the bark of Pinus armandii. The volatile constituents and Pissodes punctatus were used for laboratory test by" Y" olfactometer. The chemical constituents of the volatile oil were identified with GC/MS method. 6.25% volatile constituents showed strong attractiveness to Pissodes punctatus in the laboratory, and 65 compounds were identified mainly including such chemical compound as Limonene (29.27%), Benzene (17.81%), 1R-. alpha. -Pinene ( 16.08% ), 3-Methylhexane (7.15%) , and Heptane (5.55%), beta. -Pinene (5.67%), Caryophyllene (3.27%), beta. -Myrcene (3.1% ) and etc.
出处 《林业科学研究》 CSCD 北大核心 2007年第3期428-432,共5页 Forest Research
基金 云南省"十五"科技攻关项目(2003NG12)资助
关键词 华山松 树皮 木蠹象 成分分析 Pinus armandii bark Pissodes punctatus compounds of volatile
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  • 1蒋青,梁忆冰,王乃扬,姚文国.有害生物危险性评价的定量分析方法研究[J].植物检疫,1995,9(4):208-211. 被引量:400
  • 2[2]Amman G D, Lindgren B S. Semiochemicals for management of mountain pine beetle. In: Salom S M, Hobson K R eds. Application of semiochemicals for management of bark beetle infestations: proceedings of an informal conference, Collingdale: Diane Publishing Company, 1998, 14-22
  • 3[3]Birch M C, Svihra P, Paine T D et al. Influence of chemically mediated behavior on host tree colonization by four cohabiting species of Bark Beetles. J Chem Ecol, 1980, 6(2): 395-414
  • 4[4]Birch M C, Wood D L. Mutual inhibition of the attractant pheromone response by two species of Ips. J Chem Ecol, 1975, 1(1):101-113
  • 5[5]Blight M M, Wadhams L J, Wenham M J et al. Field attraction of Scolytus scolytus to the enantiomers of 4-methyl-3-heptanol, the major component of the aggregation pheromone. J For, 1979, 52(1): 83-90
  • 6[6]Borden J H, Bennett R B. A continuously recording flight mill for investigating the effects of volatile substances on the flight of tethered insects. J Econ Entomol, 1969, 62(4): 782-785
  • 7[7]Borden J H. Aggregation pheromones. In: Mitton J B, Sturgeon K B eds. Bark Beetles in North American forest. Austin, TX:University of Texas Press. 1982, 74-439
  • 8[8]Borden J H. Behavioral responses of coleoptera to pheromones,allomones and kairomones. In: Shorey H H and Mckelvey J J eds. Chemical control of insect behavior:theory and application. New York:John Wiley and Sons, 1977, 169-198
  • 9[9]Borden J H. Factors influencing the response of Ips paraconsusus to male attractant. Can Entomol 1967, 99:1164-1193
  • 10[10]Borden J H. From identifying semiochemicals to developing a suppression tactic: a historical review. In: Salom S M, Hobson K R eds. Application of semiochemicals for management of bark beetle infestations: proceedings of an informal conference. Collingdale: Diane Publishing Company, 1998,3-10

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