McKenzie C L, Weathersbee A A, Hunter Wayne B, Puterka Gary J
USDA-ARS, U.S. Horticultural Research Laboratory, 2001 South Rock Rd., Fort Pierce, FL 34945, USA.
J Econ Entomol. 2004 Aug;97(4):1233-8. doi: 10.1603/0022-0493-97.4.1233.
We report the toxicological effects of a new biorational, synthetic sucrose octanoate (AVA Chemical Ventures L.L.C., Portsmouth, NH), on brown citrus aphid, Toxoptera citricida (Kirkaldy), nymphs and adults and to its native parasitoid Lysiphlebus testaceipes (Cresson). Sucrose octanoate topically applied was equally toxic to brown citrus aphid adults and nymphs with LC50 and LC90 values ranging from 356 to 514 and 1029 to 1420 ppm, respectively. Mortalities of both stages did not differ significantly over time during the 3-24-h sampling period. Dry residues of sucrose octanoate exhibited similar levels of toxicity to both nymphs and adults. Mortality ranged from 60 to 70% at 6,000 ppm 4 h after exposure. L. testaceipes was not harmed by treatments as high as 4,000 ppm of sucrose octanoate as long as the parasitoid had mummified before treatment. Based on these results, sucrose octanoate would be a useful biorational in citrus integrated pest management programs.
我们报告了一种新型生物合理合成的蔗糖辛酸酯(AVA化学风险投资有限责任公司,新罕布什尔州朴茨茅斯)对褐橘蚜若虫和成虫及其本地寄生蜂桔蚜茧蜂的毒理学影响。局部施用的蔗糖辛酸酯对褐橘蚜成虫和若虫毒性相同,其LC50和LC90值分别为356至514 ppm和1029至1420 ppm。在3至24小时的采样期内,两个阶段的死亡率随时间没有显著差异。蔗糖辛酸酯的干残留物对若虫和成虫表现出相似的毒性水平。暴露4小时后,6000 ppm的死亡率在60%至70%之间。只要寄生蜂在处理前已形成僵蚜,高达4000 ppm的蔗糖辛酸酯处理对桔蚜茧蜂无害。基于这些结果,蔗糖辛酸酯将是柑橘综合害虫管理计划中一种有用的生物合理药剂。