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印楝素的萃取及其杀虫活性

Azadirachtin Extraction and Insect Control Activity

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【作者】 赵淑英; 宋湛谦; 高兴祥; 罗万春;

【Author】 ZHAO Shu-Ying1,2, SONG Zhan-Qian1, GAO Xing-Xiang3, LUO Wan-Chun3 (1Institute of Forest Products Chemistry, China Academy of Forestry, Nanjing 210042, China; 2College of Chemistry and ChemicalEngineering, Jinan University, Jinan 250022, China; 3Shandong Provincial Laboratory of Pesticide Toxicology and UtilizationTechnology, Shandong Agriculture University, Tai’an 271018, China)

【机构】 中国林科院林产化工研究所; 山东农业大学农药毒理与应用技术省级重点实验室; 山东农业大学农药毒理与应用技术省级重点实验室 南京210042 济南大学化学化工学院; 济南250022; 南京210042; 泰安271018; 泰安271018;

【摘要】 采用常规溶剂萃取、微波辅助萃取和CO2超临界萃取技术从印楝种仁中萃取印楝素,以甜菜夜蛾为试虫对其室内杀虫活性进行了研究。结果表明萃取方法不同,印楝素的萃取率不同,其中以微波法萃取率为最高(0.52%);不同方法得到的印楝素的杀虫活性也不同,其中以超临界萃取物的活性最高,用药后7d的LC50为151.0μg/ml;印楝素严重影响试虫的生长发育,对幼虫的生长抑制率最高为89.6%。

【Abstract】 Azadirachtin was extracted from neem seeds by conventional, microwave-assisted, and CO2 supercriticalfluid extraction methods, and its insecticidal activity evaluated on Spooptera exigua in the laboratory. Azadirachtinextraction rates differed among different extraction methods, with microwave-assisted extraction providing the highestextraction rate (0.52%). Azadirachtin extracted by different methods also had different insecticidal activity. Supercriticalfluid extraction yielded the most active extracts, with an LC50 of 151.0μg/ml 7 d after application. Azadirachtinsubstantially reduced insect growth and development, especially in larvae where it provided 89.6% inhibition.

【基金】 中国林科院资源昆虫培育与利用重点实验室基金资助项目(2002-1)
  • 【分类号】S482.39
  • 【被引频次】13
  • 【下载频次】380
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