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印楝杀虫剂Neemix对蚤状溞的种群水平影响。

Population-level effects of the neem insecticide, Neemix, on Daphnia pulex.

作者信息

Stark J D

机构信息

Dept. of Entomology, Washington State University, Puyallup 98371, USA.

出版信息

J Environ Sci Health B. 2001 Jul;36(4):457-65. doi: 10.1081/PFC-100104189.

Abstract

Although natural insecticides from the neem tree are generally perceived as less harmful to the environment than synthetic insecticides, new evidence indicates that these products may pose a risk to certain nontarget organisms. In this paper, acute and chronic effects of commercial neem insecticides on the aquatic invertebrate, Daphnia pulex were examined. The acute toxicity of two commercial neem insecticides, Neemix, Azatin and the experimental insecticide, RH-9999 to D. pulex was investigated using traditional 48 hr concentration-mortality estimates. Neemix and Azatin were equitoxic with LC50's of 0.68 and 0.57 ppm; RH-9999 was significantly less toxic with an LC50 of 13 ppm. A 10 d population growth study was conducted for Neemix and a Neemix formulation blank (Neemix devoid of the active ingredients) to determine whether the active ingredients of Neemix and/or components of the formulation were responsible for toxicity. D. pulex populations went to extinction after exposure to a Neemix concentration of 0.45 ppm azadirachtin (equivalent to the acute LC7). Neemix No Observable Effect Concentration (NOEC) and Lowest Observable Effect Concentration (LOEC) values for population growth were 0.045 and 0.15 ppm azadirachtin, respectively. The mean number of offspring per surviving female (Ro) declined in a concentration-dependent manner after exposure to Neemix with no offspring being produced after exposure to 0.45 ppm. Neemix NOEC and LOEC values for reproduction were 0.045 and 0.15 ppm, respectively. The formulation blank caused no mortality in the individuals used to start the population growth study but reduced reproduction and population growth accounting for 47% of the toxicity caused by Neemix at a concentration of 0.15 ppm. Thus, the formulation contributes substantially to the toxicity of Neemix but neem components are also toxic to D. pulex. Because the NOEC for population growth and reproduction were higher than the estimated environmental concentration of 0.035 ppm (a measure developed for forest pest mananagement), Neemix should pose little risk to populations of D. pulex.

摘要

尽管印楝树的天然杀虫剂通常被认为比合成杀虫剂对环境危害更小,但新证据表明,这些产品可能会对某些非目标生物构成风险。在本文中,研究了商业印楝杀虫剂对水生无脊椎动物大型蚤的急性和慢性影响。使用传统的48小时浓度-死亡率估计方法,研究了两种商业印楝杀虫剂Neemix、Azatin以及实验性杀虫剂RH-9999对大型蚤的急性毒性。Neemix和Azatin具有同等毒性,LC50分别为0.68 ppm和0.57 ppm;RH-9999毒性显著较低,LC50为13 ppm。对Neemix和Neemix制剂空白(不含活性成分的Neemix)进行了为期10天的种群增长研究,以确定Neemix的活性成分和/或制剂成分是否导致毒性。大型蚤种群在暴露于0.45 ppm印楝素的Neemix浓度(相当于急性LC7)后灭绝。Neemix对种群增长的无可见效应浓度(NOEC)和最低可见效应浓度(LOEC)值分别为0.045 ppm和0.15 ppm印楝素。暴露于Neemix后,每只存活雌性后代的平均数量(Ro)以浓度依赖性方式下降,暴露于0.45 ppm后未产生后代。Neemix对繁殖的NOEC和LOEC值分别为0.045 ppm和0.15 ppm。制剂空白在用于开始种群增长研究的个体中未导致死亡,但降低了繁殖和种群增长,在0.15 ppm浓度下占Neemix所致毒性的47%。因此,制剂对Neemix的毒性有很大贡献,但印楝成分对大型蚤也有毒性。由于种群增长和繁殖的NOEC高于估计的环境浓度0.035 ppm(为森林害虫管理制定的指标),Neemix对大型蚤种群应几乎不构成风险。

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