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1.
柑橘大实蝇是柑橘上的重要害虫。本文分别利用Y型嗅觉仪和饲喂法测定了柑橘大实蝇成虫对12种杀虫剂的选择行为和击倒作用,以期筛选出田间防治柑橘大实蝇的高效农药,并为研发其诱杀剂提供理论依据。结果表明:12种杀虫剂中,吡虫啉、阿维菌素对雌成虫具有极显著的驱避作用;多杀霉素、丁硫克百威、阿维菌素、氟铃脲对雄成虫具有极显著的驱避作用;多杀霉素、毒死蜱、噻嗪酮对雌成虫具有显著的驱避作用;啶虫脒、噻虫嗪、乙酰甲胺磷、高效氯氟氰菊酯和高效氯氰菊酯对柑橘大实蝇雌雄成虫既无驱避作用也无引诱作用。同种药剂对柑橘大实蝇雌雄成虫的击倒时间无显著差异,不同药剂间对柑橘大实蝇成虫的击倒时间有显著差异,其中啶虫脒的击倒时间(KD50<1 min)最短。综合考虑杀虫剂对柑橘大实蝇选择行为的影响及击倒作用,认为啶虫脒更适宜作为柑橘大实蝇诱杀剂中的杀虫剂。  相似文献   

2.
《环境昆虫学报》2014,(5):737-743
为了明确成虫密度、日龄和性别对应用药膜法测定杀虫剂毒力结果的影响,本文测定了敌百虫、高效氯氰菊酯和阿维菌素三种药剂对不同密度、不同日龄条件下雌雄橘小实蝇Bactrocera dorsalis (Hendel)雌雄成虫的毒力。结果表明,3种杀虫剂处理后不同密度桔小实蝇成虫的死亡率最高为62%-72%,之后逐渐下降低至10%以下,并趋于稳定;阿维菌素处理死亡率总体呈高-低-高-低的S形变化,以30-50头/瓶最高;高效氯氰菊酯处理后死亡率5头/瓶使最低,其他9个密度稳定在35.5%-46.4%;建立了描述3种药剂处理后死亡率和成虫密度之间关系的模型。同一种药剂处理不同日龄成虫,其死亡率变化规律明显。敌百虫处理4日龄、74日龄雌虫死亡率最高,14日龄最低;4、54、64日龄雄虫死亡率较高,14日龄最低;其雌雄虫死亡率与日龄件均符合Johnson Schumacher模型。高效氯氰菊酯处理雌雄虫的死亡率均以4日龄最低,之后明显增大,24日龄后趋于稳定;死亡率与日龄间的关系均符合Quardratics Ratio模型。同一日龄雌雄虫死亡率比较,敌百虫处理无明显差异,高效氯氰菊酯处理雌虫大多高于雄虫。根据以上研究,提出测定杀虫剂毒力时桔小实蝇的合适密度为0.04-0.06头/mL(容器体积)或者27.4-18.2 c㎡/头(药膜面积)。  相似文献   

3.
为了筛选出对荔枝蝽Tessaratoma papillosa高效低毒低投入的药剂,在室内采用喷雾法初步测定了16种常用杀虫剂对荔枝蝽成虫的活性,进一步测定了辛硫磷、丁醚脲和氟啶虫胺腈等3种药剂对荔枝蝽成虫、1龄若虫和2龄若虫的室内毒力,并开展了3种杀虫剂对荔枝蝽的田间防效试验。室内毒力结果表明:甲氰菊酯、杀虫双、阿维菌素、甲氨基阿维菌素苯甲酸盐、哒螨灵、茚虫威、虫螨腈、多杀霉素、乙基多杀霉素、灭蝇胺、异丙威等11种药剂对荔枝蝽成虫活性较低,辛硫磷、丁醚脲和氟啶虫胺腈对荔枝蝽有较高的杀虫活性,3种药剂对成虫72 h后的LC50分别为102.32、226.88和207.59 mg/L,对1龄若虫分别为42.41、120.90和87.59 mg/L,对2龄若虫分别为62.65、180.20和148.75 mg/L。在田间防效试验中,辛硫磷对荔枝蝽成虫药后1 d的防效高达82.46%;氟啶虫胺腈对荔枝蝽成虫药后1 d防效达89.23%,药后7 d防效维持在85.03%;丁醚脲对荔枝蝽成虫的最高防效为71.63%,与高效氯氟氰菊酯的防效相当。辛硫磷、丁醚脲和氟啶虫胺腈的防效投入比分别为9.68、36.25和176.41。辛硫磷投入低、速效性好且光解快,可作为防治荔枝蝽的应急药剂使用,氟啶虫胺腈和丁醚脲防效较好,但投入高,可作为对荔枝蝽有重要潜在研究价值的药剂。  相似文献   

4.
蜂巢小甲虫Aethina tumida是一种新入侵为害蜜蜂蜂巢的危险性害虫,筛选出具有较高毒力水平的化学药剂防治该虫迫在眉睫。本文采用浸渍法测定了10种杀虫剂对蜂巢小甲虫幼虫的毒力。试验结果表明,10 mg/L高效氯氰菊酯、啶虫脒和功夫菊酯在24 h内对蜂巢小甲虫幼虫的致死率达到36.67%、33.33%和29.39%,而10 mg/L高效氯氰菊酯和功夫菊酯在48 h对蜂巢小甲虫幼虫的致死率均达到100%。啶虫脒、高效氯氰菊酯和功夫菊酯在24 h的LC_(50)分别为10.47 mg/L、16.94 mg/L和19.1 mg/L。其它受试的杀虫剂如多杀菌素、氟虫腈、氟啶脲、虫酰肼、敌百虫、阿维菌素和甲维盐的触杀致死率相对较低。筛选结果显示,啶虫脒、高效氯氰菊酯和功夫菊酯可作为目前防治蜂巢小甲虫的的重要参考防治药剂。  相似文献   

5.
荔枝蒂蛀虫Conopomorpha sinensis Bradley是为害荔枝和龙眼的重要害虫,其为害的隐蔽性增加了防治难度。为了探索安全、有效的药剂防治手段和明确氯虫苯甲酰胺的适合施药时期,本研究在室内条件下,以防控荔枝蒂蛀虫常用药剂高效氯氟氰菊酯为对照药,采用喷雾法和药膜法,分别测定了100、10、1、0.1和0.01 mg/L的 5个浓度梯度下,氯虫苯甲酰胺对荔枝蒂蛀虫卵、初孵幼虫的毒杀作用以及对成虫的触杀作用。研究结果表明,氯虫苯甲酰胺的5个浓度梯度对产后24 h、48 h和72 h蒂蛀虫卵孵化抑制率均显著高于高效氯氟氰菊酯;氯虫苯甲酰胺对蒂蛀虫初孵幼虫的毒力是高效氯氟氰菊酯的10倍,对荔枝蒂蛀虫初孵幼虫的LC50分别为3.32 mg/L和38.78 mg/L。而在100 mg/L浓度下氯虫苯甲酰胺和高效氯氟氰菊酯对成虫触杀的校正死亡百分率最高分别为34.36%和77.35%。综上所述,氯虫苯甲酰胺对荔枝蒂蛀虫具有较强的杀卵活性和杀初孵幼虫活性,在荔枝生产上具有潜在的应用价值;鉴于其对成虫的触杀作用不强,故建议在荔枝蒂蛀虫的产卵高峰期和初孵幼虫期使用,以期将荔枝蒂蛀虫于发生为害之前进行有效控制。  相似文献   

6.
为研究成虫期饲毒对小菜蛾种群繁殖力的影响,将氯虫苯甲酰胺、多杀菌素和溴虫腈3种药剂用10%蜂蜜水分别配制成终浓度为250 mg/L、125 mg/L和229.25 mg/L的溶液,饲喂敏感品系小菜蛾成虫,观察对成虫寿命及产卵量的影响;在此基础上,配制终浓度分别为50、20、10和5 mg/L的氯虫苯甲酰胺浓度蜂蜜水溶液,研究对小菜蛾成虫交配率、成虫寿命、产卵量及卵孵化率的影响;并通过建立子代幼虫生命表,分析摄入不同浓度药剂后对子代幼虫存活和生殖力的影响.结果表明,高剂量杀虫剂的摄入,对小菜蛾成虫具有直接毒杀作用;降低杀虫剂氯虫苯甲酰胺摄入剂量后,成虫交配率和产卵量与对照相比显著降低(P<0.05);雌成虫平均寿命出现一定程度下降,下降幅度与处理浓度呈正相关;分析子代幼虫生命表,发现子代成虫产卵量仍显著减少(P<0.05).计算各处理对子代幼虫种群控制作用干扰指数(IIPC),结果表明小菜蛾成虫摄入杀虫剂后,至少2代内子代种群发展产生较强的干扰.  相似文献   

7.
棉田四种常用杀虫剂对玉米螟赤眼蜂不同虫态的杀伤力   总被引:3,自引:0,他引:3  
陈永明  黄佩忠 《昆虫知识》1994,31(6):330-332
棉田四种常用杀虫剂对玉米螟赤眼蜂不同虫态的杀伤力差异显著。溴氰菊酯、氰戊菊酯、久效磷、甲胺磷对玉米螟赤眼蜂成虫的杀伤力均很强;溴氰菊酯和甲胺磷对玉米螟赤眼蜂卵至蛹各个虫态的杀伤力较强;而氰戊菊酯对卵、久效磷对幼虫有较强的杀伤力。久效磷对玉米螟赤眼蜂成虫的残留毒杀力最强。玉米螟赤眼蜂成虫是玉米螟赤眼蜂一生中对农药最敏感的时期,其次是卵和幼虫,而预蛹和蛹耐药性较强。  相似文献   

8.
【目的】了解瓜实蝇Bactrocera cucurbitae(Coquillett)对低温的耐受性,分析其不同发育阶段耐寒力差异。【方法】以不同发育阶段瓜实蝇为实验材料,分别测定并比较了过冷却点、水分、脂肪、甘油和糖类含量的变化情况。【结果】其不同龄期的过冷却点差异显著,5日龄蛹的过冷却点最低,为﹣17.04℃,1日龄幼虫的过冷却点最高,为﹣11.82℃,同一日龄的雌、雄成虫之间的过冷却点无显著差异;其幼虫期和蛹期虫体的含水量随着龄期的增长而下降,从1日龄幼虫79.64%下降到5日龄蛹65.31%,5日龄蛹的含水量显著低于其他龄期瓜实蝇,成虫期各龄期雌成虫含水量均显著高于雄成虫;5日龄幼虫脂肪含量最高,为32.90%,1日龄雄成虫和14日龄雄成虫脂肪含量最低,均为15%;幼虫期甘油含量随着龄期的增长而下降,从3.32μg/mg下降到1.12μg/mg,而蛹期逐渐上升,14日龄雌成虫甘油含量最高,为5.90μg/mg;1日龄幼虫总糖、海藻糖和糖原含量均最高,分别为7.51、0.94和1.93μg/mg,显著高于其他龄期瓜实蝇,蛹期糖类含量逐渐下降,而成虫期糖类含量随龄期增长而逐渐升高。【结论】本研究结果可为正确评估瓜实蝇的地理适应性和低温检疫处理提供依据。  相似文献   

9.
桔小实蝇Bactrocera doralis (Hendel)是华南地区水果蔬菜上重要害虫,近年来暴发成灾,造成巨大的经济损失。使用化学杀虫剂是防治该虫的重要方法。在长期、频繁接触杀虫剂条件下该虫的抗药性产生、发展规律等问题值得深入研究。本文采用LC50、LC80-90两种剂量汰选成虫、幼虫,研究了桔小实蝇对敌百虫、高效氯氰菊酯和阿维菌素3种药剂的抗性增长规律。通过不接触药剂继代饲养获得了对3种杀虫剂的敏感品系,建立了毒力回归方程,明确了毒力敏感基线LC50分别为1.6024 mg/L,3.0964 mg/L和0.6074 mg/L。不同药剂种类、不同汰选方式时桔小实蝇的抗药性发展速度是不同的。以成虫死亡率50%左右作为选择压力,桔小实蝇对敌百虫的抗性发展最快,汰选至14代抗性增长至84.6倍;其次是高效氯氰菊酯,抗性增长至27.1倍;而对阿维菌素的抗性仅上升至7.7倍 。在成虫和幼虫80%~90%死亡率左右的选择压力下,桔小实蝇对高效氯氰菊酯的抗性发展最快,汰选14代后抗性增长至125.4倍; 其次是敌百虫,抗性增大至49.9倍;对阿维菌素抗性增长相对较缓慢,11代后为17.9倍。在成虫80%~90%死亡率左右的选择压力下,汰选14代、14代、11代后桔小实蝇对高效氯氰菊酯、敌百虫、阿维菌素分别增大至58.7倍、37.6倍、11.9倍。对成虫、幼虫均进行汰选桔小实蝇抗药性发展更快。建立了不同汰选方式时桔小实蝇实验种群汰选代数与对3种杀虫剂的抗性程度之间的关系方程,其中高效氯氰菊酯、敌百虫处理符合韦布尔曲线模型,阿维菌素处理符合幂曲线方程。  相似文献   

10.
为明确几种药剂对广东地区草地贪夜蛾Spodoptera frugiperda幼虫的室内毒杀作用及田间防治效果,合理使用化学农药对草地贪夜蛾进行科学防治提供理论依据.本研究采用浸叶法测定了氯虫苯甲酰胺、高效氯氟氰菊酯和甲氨基阿维菌素苯甲酸盐对草地贪夜蛾3龄幼虫的室内毒杀作用;采用茎叶喷雾法,测定了 200克/升氯虫苯甲酰胺悬浮剂、150克/升氯虫苯甲酰胺?高效氯氟氰菊酯微囊悬浮-悬浮剂、25克/升高效氯氟氰菊酯乳油和5%甲氨基阿维菌素苯甲酸盐水分散粒对田间玉米上草地贪夜蛾幼虫的防治效果.室内毒力测定试验结果表明:甲氨基阿维菌素苯甲酸和氯虫苯甲酰胺对草地贪夜蛾3龄幼虫都有较好的毒杀作用,LC50分别为0.037 mg/L和0.094 mg/L;而高效氯氟氰菊酯对草地贪夜蛾的毒杀作用较一般,LC50为5.336 mg/L.田间试验结果表明,供试的3种药剂对草地贪夜蛾幼虫速效性一般,药后1 d的防治效果为40.79%~59.67%;药后3 d的防治效果为67.27%~88.55%;药后7 d其防治效果为55.75%~90.97%.氯虫苯甲酰胺和甲氨基阿维菌素苯甲酸盐对草地贪夜蛾具有较好室内的毒杀作用和田间防治效果,是目前防治草地贪夜蛾的理想药剂;高效氯氟氰菊酯对草地贪夜蛾室内的毒杀作用和田间防治效果较差,不推荐用来防治草地贪夜蛾.  相似文献   

11.
紫薇绒蚧的生物学特性与药剂防效   总被引:4,自引:0,他引:4  
紫薇绒蚧Eriococcus lagerostroemiae Kuwana是皖北地区严重危害紫薇(Lagerstroemia indiceL.)的虫害之一。该虫年发生2代,以第2代2龄若虫和蛹在寄主枝条缝隙内越冬。翌年4月下旬,成虫出现、羽化、交配、产卵。周年虫口变动出现2个高峰(中/6~下/6和下/8~上/9);相对其它参照药剂,2.5%高效氯氰菊酯的毒力最佳、其防效与其它3种药剂防效差异显著,对紫薇绒蚧致死中量(LC50)为4.9818mg/L,有效成分为16.7mg/L时的校正防效为94.52%。据此,在6月上旬和8月中旬若虫孵化盛期,施用有效成分为16.7mg/L的2.5%高效氯氰菊酯乳油能得到良好的防治效果。  相似文献   

12.
【目的】探索0.3%印楝素乳油对梨小食心虫Grapholita molesta的控制效果。【方法】根据梨小食心虫的生物习性,采用浸渍法和浸虫法对梨小食心虫1日龄、3日龄、5日龄的卵和3龄、5龄幼虫进行了杀虫活性测定,采用药膜法对梨小食心虫初孵幼虫进行毒力测定,并通过田间试验测定0.3%印楝素乳油对梨小食心虫的控制效果。【结果】0.3%印楝素乳油对梨小食心虫1日龄、3日龄和5日龄卵的致死中量分别为6.5195、4.5789、6.6268 mg/L,对初孵幼虫的致死中量为6.0495 mg/L,效果较好,而对3龄和5龄幼虫几乎没有杀伤作用。使用有效成分为2.0 mg/kg~3.0 mg/L的印楝素乳油在田间进行梨小食心虫防治试验时,药后5 d和10 d的防治效果在63.18%~76.22%之间,至药后15 d时,防效则下降到27%以下,果实受害明显,表明该药剂已失去控制作用。【结论】印楝素乳油不能作为防治梨小食心虫的专用药剂,仅可在其发生危害的初期,防治其他害虫时,作为兼治的药剂来使用。  相似文献   

13.
符伟  魏娟  王秋丽  徐志德  孙鹰  尹丽 《昆虫知识》2012,49(2):477-481
采用浸叶法在室内测定了湖南长沙和怀化地区小菜蛾Plutella xylostella(L.)田间种群对10种药剂的敏感性。结果表明:湖南长沙和怀化地区田间小菜蛾除对丁醚脲和BT制剂仍处于敏感(抗性倍数<3)状态外,对其它8种药剂产生了不同程度的抗药性,其中以长沙地区小菜蛾田间种群对高效氯氰菊酯抗性倍数最高(抗性倍数为33.58)。长沙和怀化种群对药剂的相对毒力倍数以巴丹最低(1.20)而以多杀菌素最高(2.59)。  相似文献   

14.
LY-04 and WSQIF are newly-synthesized compounds which were presented by the Institute of Pesticides Chemistry, Central China Normal University. LY-04 belongs to α-oxophosphonic acid derivatives, while WSQIF is an aromatic acetyl oxophospho04 and WSQIF were determined in S. obliquus cells at 24h, 48h, 72h, 96h represented by cell density. Our data showed that the 24h, 48h, 72h, 96h EC50 of LY-04 were 1983mg/L, 2943mg/L, 240mg/L and 65.0mg/L acetone, respectively, and the 24h,48h, 72h, 96h EC50 of WSQIF were 15.9mg/L, 53.0mg/L, 98.0mg/L and 28.8mg/L respectively. LY-04 displayed a higher insecticidal activity, while WSQIF showed a higher phytocidal activity. As LY-04 and WSQIF were designed to act as insecticide and herbicide, respectively, the results were in contrast to the anticipated ones. According to the toxicant classification standard,EC50 of both substances was far higher than 3mg/L, while the toxicity of LY-04 and WSQIF to aquatic algae were fairly low, indicating that these two pesticides are rather safe to the aquatic ecosystem.  相似文献   

15.
The toxicity of spinosad was evaluated using the RaPID Assay® Spinosad immunosorbent assay in different developmental stages of the parasitoid, Hyposoter didymator, and in its host, fourth-instar larvae of the cotton leafworm Spodoptera littoralis. Spinosad was applied directly to pupae and adults of H. didymator (ingestion or topical application) or to the immature stages of the parasitoid via the host larvae. Low amounts of spinosad were recovered from S. littoralis host larvae after topical treatment, and the compound was mainly retained in the hemolymph. Amounts of spinosad detected in third-instar larvae of H. didymator, pulled out from the hemolymph of parasitized S. littoralis larvae, were 85 pg (3.57 ng a.i./g body weight) in dead larvae, and 82 pg (3.42 ng a.i./g body weight) in alive individuals. After topical treatment of H. didymator cocoons, most of the compound was retained in the silken cocoon, preventing contamination of the pupa. Also in the parasitoid adults, relatively low amounts of spinosad were accumulated in the body overall, but half of all the insecticide recovered was found in the ovaries. The kinetic results obtained help to better understand the toxicity of spinosad in the complex S. littoralis–H. didymator, and to ascertain the compatibility between spinosad and the parasitoid for optimizing the control of lepidopteran pests.  相似文献   

16.
苦杏仁精油对粘虫的触杀活性研究   总被引:2,自引:0,他引:2  
以粘虫4龄幼虫为对象,采用"点滴法"研究了山杏种仁两种苦杏仁精油(含HCN和去HCN)对粘虫的触杀活性及其生长发育的影响.结果显示,处理后48 h,5~100 μL/mL浓度处理的试虫死亡率均在51.67%以上,40和100 μL/mL浓度处理的粘虫死亡率分别达到了95%(含HCN)/98.33%(去HCN)和100%,48 h时含HCN与除去HCN两种苦杏仁精油对粘虫的触杀致死中浓分别为5.10和4.69 μL/mL;苦杏仁精油对粘虫的化蛹期以及羽化期提前1~3 d,并有一定数量的畸形蛹出现,部分试虫虽能正常化蛹并羽化,但其蛹以及成虫虫体均较对照小,且羽化后蛾体萎缩,活动力降低,因展翅困难而死.可见,两种苦杏仁精油对粘虫具有很强的触杀活性,且去HCN的苦杏仁精油对粘虫的活性高于含HCN的苦杏仁精油,其对粘虫生长发育抑制活性主要表现化蛹期以及羽化期提前,苦杏仁精油有望发展为植物性杀虫剂.  相似文献   

17.
为了确定水菖蒲(Acorus calamus)活性成分β-细辛醚对玉米象Sitophilus zeamais Motschulsky的熏蒸活性,研究β-细辛醚对玉米象不同虫态的熏蒸作用。结果表明:β-细辛醚对玉米象4种虫态都有一定的熏蒸作用,其中对成虫的熏蒸效果最好,其次是卵,幼虫和蛹对β-细辛醚具有较高的耐药性。以质量浓度为200μL/L熏蒸卵120h后,卵的死亡率达到了99.09%。对幼虫和蛹的熏蒸作用不明显。对成虫熏蒸120h后,LC50为17.82μL/L。  相似文献   

18.
The toxicity of two biorational insecticides, spinosad (Tracer) and methoxyfenozide (RH-2485), was tested against eggs, larvae, and pupae of the noctuid Spodoptera littoralis (Boisduval). In the first experiment, filter paper circles containing egg masses of two different age classes, young (<24 h old) and old (24-48 h old), were dipped in different concentrations of each insecticide diluted in either water or acetone. No ovicidal activity was recorded when insecticides were diluted in water. In contrast, when insecticides were diluted in acetone, both egg age classes generally showed a concentration-dependent response for both compounds. Mortality of larvae that hatched from both egg age classes was significantly increased, compared with control larvae, at all concentrations of both insecticides when diluted in water or acetone alike. The prevalence of mortality was similar with each insecticide. In the second experiment, third instars of S. littoralis were fed semisynthetic diet containing different concentrations of both insecticides. According to LC50 values, no significant differences were observed between spinosad (2.11 mg [AI]/kg diet) and methoxyfenozide (3.98 mg [AI]/kg diet) after 48 h of treatment, based on the overlap of 95% CL. Toxic effects on the mortality of pupae, adult emergence, and the prevalence of deformed adults after topical application on young pupae also were examined. Only methoxyfenozide caused pupal mortality and deformed adults. Our results suggest that spinosad and methoxyfenozide are potentially potent compounds for control of S. littoralis.  相似文献   

19.
谭清  庞仁乙  高熹  张忠  袁远  陈斌  张海涛  吴国星 《昆虫学报》2014,57(10):1245-1252
【目的】为解释蜡蚧轮枝菌Lecanicillium lecanii对棕尾别麻蝇Boettcherisca peregrina成虫、蛹和幼虫等 3种虫态的致病性差异,研究分析了蜡蚧轮枝菌L. lecanii分生孢子在3种虫态体表的附着能力及与寄主体表结构的关系。【方法】采用血球计数板计数法测量蜡蚧轮枝菌分生孢子在棕尾別麻蝇B. peregrina成虫、蛹和幼虫体表的附着数量,并利用扫描电子显微镜等显微技术观察供试虫体体壁外长物分布情况以及附着分生孢子情况。【结果】蜡蚧轮枝菌分生孢子在棕尾別麻蝇3种虫态上的附着数量差异显著(P=0.0001),成虫附着孢子数量为(1.35±0.12)×106个/头,而蛹和幼虫分别为(0.57±0.09)×106个/头和(0.45±0.06)×106个/头。成虫周身微毛上均有孢子附着;整个蛹体仅棘刺底部呈“绳索状”的褶皱处可发现有孢子的附着;幼虫的体表未发现有孢子的附着。【结论】蜡蚧轮枝菌分生孢子在棕尾別麻蝇成虫、蛹、幼虫体表的附着能力与寄主体表结构有密切关系,是蜡蚧轮枝菌对该虫不同虫态间存在致病差异的原因。  相似文献   

20.
Use of insecticides with low toxicity to natural enemies is an important component of conservation biological control. In this study, we evaluated the toxicity of insecticides used in sweet corn, Zea mays L., and soybean, Glycine max (L.) Merr., to the multicolored Asian lady beetle, Harmonia axyridis (Pallas), under laboratory and field conditions. Field experiments conducted in sweet corn in 2003 and 2004 and in soybean in 2003, showed that H. axyridis was the most abundant predator. In sweet corn, densities of H. axyridis larvae in plots treated with spinosad or indoxacarb were generally higher than in plots treated with chlorpyrifos, carbaryl, bifenthrin, and A-cyhalothrin. In soybean, densities of H. axyridis larvae in plots treated with chlorpyrifos were higher than in plots treated with lambda-cyhalothrin. Laboratory experiments were conducted to evaluate the acute toxicity of insecticides to eggs, first and third instars, pupae, and adults. Spinosad, followed by indoxacarb, were the least toxic insecticides for all life stages of H. axyridis. Conventional insecticides showed high toxicity to H. axyridis when applied at field rates under laboratory conditions. Overall, first instars were most susceptible to the insecticides tested, followed by third instars and adults, eggs, and pupae. Our results suggest that spinosad, and to a lesser extent indoxacarb, offer reduced toxicity to H. axyridis and would be beneficial for conservation biological control in agricultural systems where H. axyridis is abundant.  相似文献   

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