›› 2009, Vol. 52 ›› Issue (4): 453-460.

• 研究论文 • 上一篇    下一篇

水菖蒲活性物质β-细辛醚对四种储粮害虫的熏蒸活性

姚英娟, 蔡万伦, 杨长举, 张宏宇, 华红霞   

  • 出版日期:2009-04-20 发布日期:2009-04-20
  • 通讯作者: 华红霞

Fumigant toxicity of β-asarone extracted from Acorus calamus against four stored grain beetles

  • Online:2009-04-20 Published:2009-04-20

摘要: 植物性次生物质在植物-害虫的关系中起着非常重要的作用, 植物中的一些成分对害虫具有熏蒸、触杀和驱避等作用。水菖蒲Acorus calamus L.是一种常用中药, 它的主要杀虫活性成分为β-细辛醚。本研究通过室内生测试验研究了水菖蒲根茎提取物β-细辛醚对玉米象Sitophilus zeamais Motschulsky、谷蠹Rhyzopertha dominica (Fabricius)、赤拟谷盗Tribolium castaneum (Herbst)和四纹豆象Callosobruchus maculatus (Fabricius) 4种储粮害虫的熏蒸击倒和致死作用。结果表明: β-细辛醚对4种试虫的熏蒸击倒和致死作用明显。以50 μL/L的浓度处理120 h后, 对玉米象、谷蠹和四纹豆象的击倒作用均达到100%, 而对赤拟谷盗击倒率为50%; 玉米象、谷蠹和四纹豆象的死亡率分别为81.23%, 97.78%和100%, 而赤拟谷盗死亡率仅为8.89%。处理24 h, β-细辛醚对玉米象、谷蠹、赤拟谷盗和四纹豆象的KC50分别为49.38, 102.96, 124.04和1.07 μL/L; 处理120 h, β-细辛醚对玉米象、谷蠹、赤拟谷盗和四纹豆象的LC50分别为17.82, 4.42, 116.48和0.73 μL/L。结果显示水菖蒲根茎提取物β-细辛醚对4种储粮害虫均具有明显的熏蒸效果, 具有开发为储粮害虫熏蒸剂的潜力。

关键词: 储粮害虫, 水菖蒲, 植物性杀虫剂, β-细辛醚, 熏蒸毒力

Abstract: Plant secondary metabolites play important roles in plant-insect relationships. Some plant-based extracts are insect repellents or have fumigant or contact toxicity. β-asarone is the main active ingredient of Acorus calamus L., a commonly used Chinese traditional medicinal herb. In this study, the knockdown and lethal impacts of β-asarone on four main stored-grain insects, Sitophilus zeamais, Rhyzopertha dominica, Tribolium castaneum and Callosobruchus maculatus were assayed in the laboratory. The study results showed that β-asarone extracted from A. calamus rhizome had significant knockdown and lethal impact on the pests. After the pests were treated with β-asarone for 120 h at the concentration of 50 μL/L, 100% of the C. maculatus, S. zeamais and R. dominica adults, and 50% of T. castaneum adults were knocked down; the mortality rates of T. castaneum, S. zeamais, R. dominica and C. maculatus adults were 8.89%, 81.23%, 97.78% and 100%, respectively. After 24 h exposure, the KC50 values for S. zeamais, R. dominica, T. castaneum and C. maculatus adults were 49.38, 102.96, 124.04 and 1.07 μL/L, respectively. After 120 h exposure, the LC50 values for S. zeamais, R. dominica, T. castaneum and C. maculatus adults were 17.82, 4.42, 116.48 and 0.73 μL/L, respectively. It is so concluded that the β-asarone extracted from A. calamus has distinct fumigant toxicity against all the four pests assayed, and thus can be exploited as a potential fumigant.

Key words: tored-grain insects, Acorus calamus, botanical insecticides, β-asarone, fumigant toxicity