混合杀菌剂GCSC-BtA对小菜蛾不同捕食者的毒副作用研究中国东南部的菜蛾科)

B. Liu , C. Sengonca
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引用次数: 21

摘要

本文研究了混合杀菌剂GCSC-BtA对小菜蛾的毒副作用。(Plutellidae)及其捕食者,如长棘钝绥螨(蜱螨亚纲,植物绥螨科),谷粒细绥螨(野绥螨亚纲,林绥螨科),郑氏细绥螨(等)。七星瓢虫(Coccinella七星瓢虫);(瓢虫科),与商业杀虫剂(如:阿维菌素、虫酰肼、敌敌畏、甘油三酯和高效氯氟氰菊酯。结果表明,gcs - bta对小腹小蠊3龄幼虫的毒性最高,死亡率为91.18%,其次为卡泰普(84.38%)、阿维菌素(78.00%)、虫酰酰菊酯(75.57%)、高效氯氰菊酯(63.75%)和敌敌畏(50.86%)。另一方面,gcs - bta对捕食者的毒性较低,对长棘田鼠、禾草田鼠、相似田鼠和七星田鼠的致死率分别为31.11%、13.33%、11.54%和6.00%。阿维菌素、杀虫剂、敌敌畏、甘油三酯、高效氯氟氰菊酯的致死率分别为:长绒螟72.94%、55.55%、70.0%、53.26%、98.85%,禾草螟46.51%、55.10%、60.0%、46.00%、73.68%,相似螟22.00%、16.00%、35.71%、26.78%、81.03%,七星螟15.55%、19.64%、28.00%、16.66%、41.79%。采用聚类分析方法,将各治疗引起的死亡分为3个毒性组,D = 4.1。第1组为GCSC-BtA,对所有捕食者的毒性均较低,平均死亡率为15.49%(最高31.11%,最低6.00%);第2组为阿维菌素、虫酰肼、敌敌畏和卡泰普,对捕食者毒性中等,平均死亡率为39.96%。第3组为高效氯氟氰菊酯,对捕食者具有高毒性,平均死亡率为73.83%(最高98.85%,最低41.70%)。讨论了该害虫及其捕食者对GCSC-BtA及其杀虫剂的敏感性。GCSC-BtA作为一种生物防治剂,推荐用于蔬菜田害虫综合防治。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Investigations on side-effects of the mixed biocide GCSC-BtA on different predators of Plutella xylostella (L.) (Lep., Plutellidae) in southeastern China

The present paper deals with laboratory studies on side-effects of the mixed biocide GCSC-BtA on Plutella xylostella (L.) (Lep., Plutellidae) and its predators, e. g. Amblyseius longispinosus (Evans) (Acari, Phytoseiidae), Erigonidium graminicola (Sundvall) (Araneae, Linyphiidae), Orius similis Zheng (Het., Anthocoridae) and Coccinella septempunctata L.(Col., Coccinellidae), in comparison to the commercial insecticides, e. g. Abamectin, Tebufenozide, Dichlorvos, Cartap and Lambda-cyhalothrin. The results showed that GCSC-BtA was highly toxic to the 3rd instar of P. xylostella with 91.18 % mortality, followed by Cartap with 84.38 %, Abamectin with 78.00 %, Tebufenozide with 75.57 %, Lambda-cyhalothrin with 63.75 % and Dichlorvos with 50.86 % mortality. On the other hand, GCSC-BtA was found to be comparatively less toxic to the predators, causing 31.11 %, 13.33 %, 11.54 % and 6.00 % mortalities in A. longispinosus, E. graminicola, O. similis and C. septempunctata, respectively. For comparison, the mortalities recorded for Abamectin, Tebufenozide, Dichlorvos, Cartap, Lambda-cyhalothrin were 72.94 %, 55.55 %, 70.00 %, 53.26 % and 98.85 % in A. longispinosus, 46.51 %, 55.10 %, 60.00 %, 46.00 % and 73.68 % in E. graminicola, 22.00 %, 16.00 %, 35.71 %, 26.78 % and 81.03 % in O. similis, 15.55 %, 19.64 %, 28.00 %, 16.66 % and 41.79 % in C. septempunctata, respectively. Cluster analysis was introduced to group the mortalities caused by the treatments into three toxicity groups with the distance of D = 4.1. The 1st group consisted of GCSC-BtA characterized with low toxicity to all the predators tested with 15.49 % mortality on average (highest 31.11 % and lowest 6.00 %). The 2nd group consisted of Abamectin, Tebufenozide, Dichlorvos and Cartap with moderate toxicity to the predators with 39.96 % mortality on average. The 3rd group included Lambda-cyhalothrin with high toxicity to the predators with 73.83 % mortality on average (highest 98.85 % and lowest 41.70 %). The susceptibility of the pest and its predators to GCSC-BtA and the insecticides is discussed. GCSC-BtA as a biological control agent is recommended for use in the integrated pests control programs in the vegetable fields.

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