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1.
苏宏华  宋彬  李丽  陆永威  杨益众 《昆虫知识》2012,49(6):1659-1663
甜菜夜蛾Spodoptera exigua(Hübner)是世界性农业害虫,近年来在我国由次要害虫上升为主要害虫。甜菜夜蛾对很多种化学杀虫剂和生物杀虫剂产生了抗性。本文分别阐述了甜菜夜蛾对常用杀虫剂如有机磷类、拟除虫菊酯类、氨基甲酸酯类、生长调节类杀虫剂、Bt杀虫剂等的抗性发展现状,并且对抗药性机理进行了总结,提出了抗性治理措施。  相似文献   

2.
烟粉虱抗药性的研究进展   总被引:12,自引:2,他引:10  
烟粉虱是一种世界性的重要害虫,目前已对有机磷、拟除虫菊酯和氨基甲酸酯等许多常规杀虫剂产生高水平抗性,在一些地区烟粉虱对昆虫生长调节剂和烟碱类杀虫剂的抗性也是十分普遍.文中综述了世界范围内烟粉虱的抗药性现状、抗药性机理、以及抗药性与生物型的关系,并介绍了美国和以色列较为成功的烟粉虱抗药性治理计划.  相似文献   

3.
赵琪  闫乾  郑宇  王少丽  张友军  邱立红 《昆虫知识》2012,49(6):1448-1453
在室内用甲氧虫酰肼对甜菜夜蛾Spodoptera exigua(Hübner)幼虫进行抗药性选育,经过13代汰选,甜菜夜蛾抗性种群(Met-R)对甲氧虫酰肼的抗性倍数为4.19倍;交互抗性测定发现,Met-R甜菜夜蛾对毒死蜱、高效氯氰菊酯、虫螨腈、虫酰肼、甲胺基阿维菌素苯甲酸盐等药剂的交互抗性比值在1.05~2.07之间,不存在交互抗性。离体酶活性测定结果表明,Met-R甜菜夜蛾5龄幼虫中肠谷胱甘肽S-转移酶比活力是相对敏感种群(SS)甜菜夜蛾的2.44倍,存在显著性差异,说明谷胱甘肽S-转移酶活性增强可能与甜菜夜蛾对甲氧虫酰肼产生抗药性有关;但Met-R甜菜夜蛾全酯酶催化活性与SS的无显著性差异,说明其抗药性可能与酯酶无关。  相似文献   

4.
针对当前我国蔬菜生产中甜菜夜蛾Spodoptera exigua(Hübner)高抗药性、猖獗为害、防控困难的现状,项目组对甜菜夜蛾的发生规律、越冬与迁飞、抗药性、生物防治与综合防控等进行了系统的研究。明确了甜菜夜蛾在我国各地的发生规律及发生动态,从南到北发生时间呈楔形,而发生量总体东高西低,从南到北呈中部高南北低的马鞍形。阐述了甜菜夜蛾"无卵子发生-飞行拮抗"的迁飞特性,提出了接力棒式季节性南北往返迁飞模式,初步阐明了甜菜夜蛾在我国东部地区的迁飞路线与迁飞时间。提出并认证了甜菜夜蛾在我国的越冬区域。明确了全国各主要发生区甜菜夜蛾对10种杀虫剂的抗药性水平,探明了甜菜夜蛾对茚虫威、甲氨基阿维菌素苯甲酸盐的抗性风险、交互抗性、种群适合度、抗性遗传规律和抗性机理,提出了抗药性治理措施。分别在海南、湖南、湖北、上海、天津等地进行了甜菜夜蛾田间药效试验,筛选出环境友好型高效杀虫剂7种。掌握了马尼拉陡胸茧蜂、夜蛾黑卵蜂和淡足侧沟茧蜂人工大量繁殖技术,改进了甜菜夜蛾核型多角体病毒生产工艺,解决了寄生蜂和病毒规模化生产及田间释放关键技术,达到规模化生产的要求。改进优化了甜菜夜蛾性引诱剂配方、研发出新型诱捕装置,并投入生产应用。集成出4套农业生产轻简化实用技术,华南、华中、华北、华东地区根据当地发生特点制定了4套防控方案。在全国甜菜夜蛾主要发生区建立试验基地16个,核心示范基地29个,年示范面积总计约3800hm2,取得显著的经济、社会和生态效益。  相似文献   

5.
杀虫剂使用失当是甜菜夜蛾大发生的重要原因   总被引:3,自引:0,他引:3  
近年来,甜菜夜蛾Spodoptera exigua(H櫣bner)在我国的危害面积越来越广,造成的损失越来越大。为了更好地了解甜菜夜蛾的发生和成灾规律,改善和提高预测与防治技术,文章就杀虫剂对甜菜夜蛾及其天敌的影响进行了分析。结果表明,杀虫剂使用失当是甜菜夜蛾大发生的重要原因。甜菜夜蛾对杀虫剂的抗药性水平超过天敌,而天敌的飞行、搜索、攻击和产卵等行为,以及生长、发育、生殖和寿命等又容易受杀虫剂的干扰,产生负面影响,从而降低天敌对甜菜夜蛾的控制能力。因此,如何合理使用杀虫剂,在有效控制甜菜夜蛾种群的同时,达到保护天敌的目的,将是我们面临的新课题。  相似文献   

6.
昆虫的抗药性   总被引:2,自引:0,他引:2  
随着杀虫剂的使用,越来越多的昆虫对杀虫剂产生了抗性。昆虫的抗药性已经对人类产生了严重的影响。从定义、发展简况、遗传起源、机理、检测方法及治理几个方面加以介绍,对昆虫的抗药性进行了简单的探讨。  相似文献   

7.
褐飞虱抗药性研究现状   总被引:11,自引:2,他引:9  
褐飞虱Nilaparvata lugens(Stal)对杀虫剂产生抗药性是其近年来暴发频繁的重要原因。文章综述国内外关于褐飞虱抗药性的研究成果,包括褐飞虱抗性测定方法、抗药性的发展、交互抗性、抗性遗传、抗性机理及抗性治理等。田间褐飞虱种群对新烟碱类药剂产生不同程度的抗药性,其中对吡虫啉产生高水平到极高水平抗性,对氯噻啉和噻虫嗪分别产生中等水平和低水平的抗药性,对呋虫胺和烯啶虫胺仍然处于敏感性阶段。此外,褐飞虱种群对噻嗪酮(昆虫生长调节剂)产生低水平到中等水平抗性。长期大面积使用化学药剂是褐飞虱产生抗药性的重要原因。因此,必须加强褐飞虱的抗性治理,以延缓其抗药性进一步发展。  相似文献   

8.
昆虫生长调节剂的毒理机制与抗药性研究进展   总被引:3,自引:0,他引:3       下载免费PDF全文
昆虫生长调节剂是通过干扰昆虫正常生长发育,致使昆虫个体死亡或活动能力下降,从而导致种群灭绝的一类特异性杀虫剂。本文对3类重要的昆虫生长调节剂(保幼激素类似物、几丁质合成抑制剂和蜕皮激素类似物)的毒理作用机制以及害虫对其抗药性的研究进展进行了综述,叙述了害虫对该类药剂的抗药性发展情况,并对其抗药性机理进行了探讨。目前研究表明,害虫对该类药剂的主要抗性机理是解毒代谢酶增强和表皮穿透率降低。  相似文献   

9.
斜纹夜蛾抗药性及其防治对策的研究进展   总被引:61,自引:4,他引:57  
周晓梅  黄炳球 《昆虫知识》2002,39(2):98-102
斜纹夜蛾Spodopteralitura是多种作物的重要害虫 ,对有机氯、有机磷、氨基甲酸酯类、拟除虫菊酯类以及Bt制剂等杀虫剂均产生抗药性。本文对斜纹夜蛾抗药性的形成与发展、抗性机理及其防治对策等方面进行了综述  相似文献   

10.
杀虫剂是害虫防治的有效途径之一,但随着杀虫剂长期和广泛的使用,昆虫种群对各种杀虫剂的敏感性降低,产生了抗药性,如何克服昆虫的抗药性是害虫综合治理的重要问题。近年来,借助基因组测序和遗传操作技术的发展,对昆虫抗药性的研究已经深入到细胞水平和分子水平,取得诸多重要的突破,为害虫抗性的控制奠定了理论基础。本文从常见杀虫剂的历史沿革及作用机理切入,从靶标抗性、代谢抗性和穿透抗性3个方面阐述了杀虫剂抗性产生的机制:杀虫剂作用位点的突变降低了靶标与杀虫剂的亲和力,细胞色素P450酶系和谷胱甘肽转移酶系的激活增加了杀虫剂的降解,表皮结构成分的变化和ABC转运蛋白的增加有效阻挡了杀虫剂的渗入。利用基因操作手段或抑制剂,对上述3种抗性机制的关键步骤进行调控可能成为未来杀虫剂抗性控制的新策略。  相似文献   

11.
乐伟  马伟华  王沫 《昆虫知识》2009,46(3):428-431
探讨取食不同寄主植物的2种甜菜夜蛾Spodoptera exigua(Hübner)品系对几种常用药剂的敏感性变化情况。试验结果表明,寄主植物对甜菜夜蛾的生长发育和杀虫剂的敏感性有显著影响,取食不同寄主植物以后,甜菜夜蛾2个品系对溴氰菊酯、毒死蜱、溴虫腈、虫酰肼的敏感性均有不同程度的变化,取食不同寄主植物的甜菜夜蛾蛹黑突变品系较甜菜夜蛾正常品系的抗性均要高,2个品系对溴氰菊酯的敏感性变化均较大,最大LD50之比分别达到13.36、12.30倍,2个品系都对虫酰肼的敏感性变化不明显,最大LD50之比分别达到2.54、2.23倍。  相似文献   

12.
The role of salicylic acid (SA) in plant responses to pathogens has been well documented, but its direct and indirect effects on plant responses to insects are not so well understood. We examined the effects of SA, alone and in combination with jasmonic acid (JA), on the performance of the generalist herbivore, Spodoptera exigua, in wild-type and mutant Arabidopsis thaliana genotypes that varied genetically in their ability to mount SA- and JA-mediated defence responses. In one experiment, growth of S. exigua larvae was highest on the Wassilewskija wild-type, intermediate on the Columbia wild-type and the JA-deficient fad mutant, and lowest on the nim1-1 and jar1-mutants, which are defective in the SA and JA pathways, respectively. Activity of guaiacol peroxidase, polyphenoloxidase, n-acetylglucosaminidase, and trypsin inhibitor varied by genotype but did not correlate with insect performance. SA treatment increased growth of S. exigua larvae by approximately 35% over all genotypes, but had no discernable effect on activities of the four defence proteins. In a second experiment, growth of S. exigua was highest across treatments on the cep1 mutant, a constitutive expressor of high SA levels and systemic acquired resistance, and lowest on the fad mutant, which is JA-deficient. JA treatment generally increased activity of all four defence proteins, increased total glucosinolate levels and reduced insect growth by approximately 25% over all genotypes. SA generally inhibited expression of JA-induced resistance to S. exigua when both hormones were applied simultaneously. Across genotypes and treatments, larval mass was negatively correlated with the activity of trypsin inhibitor and polyphenoloxidase and with total glucosinolate levels, and insect damage was negatively correlated with the activity of polyphenoloxidase. SA had little effect on the induction of defence protein activity by JA. However, SA attenuated the induction of glucosinolates by JA and therefore may explain better the interactive effects of SA and JA on insect performance. This study illustrates that direct and indirect cross-effects of SA on resistance to S. exigua can occur in A. thaliana. Effects of SA may be mediated through effects on plant defence chemistry or other aspects of the suitability of foliage for insect feeding and growth.  相似文献   

13.
侍甜  车午男  吴益东  杨亦桦 《昆虫知识》2012,49(6):1482-1489
甜菜夜蛾Spodoptera exigua(Hübner)云南晋宁、上海奉贤和江苏六合种群对甲氨基阿维菌素苯甲酸盐抗性为45~437倍,对高效氯氰菊酯抗性为211~555倍,对其它药剂抗性不明显。这3个田间种群3龄幼虫多功能氧化酶、谷胱甘肽S-转移酶和酯酶的活力分别为室内敏感种群的2.7~8.4倍、1.9~8.6倍和1.6~5.7倍。多功能氧化酶抑制剂PBO和酯酶抑制剂DEF对甲氨基阿维菌素苯甲酸盐的增效比为1.2~4.3和1.3~7.7;PBO和DEF对高效氯氰菊酯的增效比为1.8~58和3.6~245;谷胱甘肽S-转移酶抑制剂DEM对这2种药剂均无增效作用。上述结果表明,解毒代谢增强可能是甜菜夜蛾田间种群对甲氨基阿维菌素苯甲酸盐和高效氯氰菊酯的重要抗性机理,与酯酶和多功能氧化酶活性升高有关,与谷胱甘肽S-转移酶活性升高无关。本文的研究结果还表明,对于代谢抗性机理复杂的多抗性田间种群,根据不同解毒酶抑制剂对药剂的增效作用判断不同解毒代谢酶在抗性形成中的作用更加可靠。  相似文献   

14.
Plants are frequently attacked by both above- and belowground arthropod herbivores. Nevertheless, studies rarely consider root and shoot herbivory in conjunction. Here we provide evidence that the root-feeding insect Agriotes lineatus reduces the performance of the foliage feeding insect Spodoptera exigua on cotton plants. In a bioassay, S. exigua larvae were allowed to feed on either undamaged plants, or on plants that had previously been exposed to root herbivory, foliar herbivory, or a combination of both. Previous root herbivory reduced the relative growth rates as well as the food consumption of S. exigua by more than 50% in comparison to larvae feeding on the undamaged controls. We found no effects in the opposite direction, as aboveground herbivory by S. exigua did not affect the relative growth rates of root-feeding A. lineatus . Remarkably, neither did the treatment with foliar herbivory affect the food consumption and relative growth rate of S. exigua in the bioassay. However, this treatment did result in a significant change in the distribution of S. exigua feeding. Plants that had been pre-exposed to foliar herbivory suffered significantly less damage on their young terminal leaves. While plant growth and foliar nitrogen levels were not affected by any of the treatments, we did find significant differences between treatments with respect to the level and distribution of plant defensive chemicals (terpenoids). Exposure to root herbivores resulted in an increase in terpenoid levels in both roots as well as in mature and immature foliage. Foliar damage, on the other hand, resulted in high terpenoid levels in young, terminal leaves only. Our results show that root-feeding herbivores may change the level and distribution of plant defenses aboveground. Our data suggest that the reported interactions between below- and aboveground insect herbivores are mediated by induced changes in plant secondary chemistry.  相似文献   

15.
植物激素茉莉素作为抗性信号调控植物对腐生性病原菌和昆虫的抗性, 作为发育信号调控植物根的生长、雄蕊发育、表皮毛形成和叶片衰老。茉莉素受体COI1识别茉莉素分子, 进而与JAZ蛋白互作并诱导其降解, 继而调控多种茉莉素反应。拟南芥(Arabidopsis thaliana) IIId亚组bHLH转录因子(bHLH3、bHLH13、bHLH14和bHLH17)是JAZ的一类靶蛋白。与野生型相比, IIId亚组bHLH转录因子的单突变体对灰霉菌和甜菜夜蛾的抗性无明显差异, 而四突变体对灰霉菌和甜菜夜蛾的抗性增强。该文通过高表达bHLH17并研究其对灰霉菌和甜菜夜蛾的抗性反应, 结果显示, 被灰霉菌侵染的bHLH17高表达植株较野生型表现出更严重的病症。取食bHLH17高表达植株叶片的甜菜夜蛾幼虫体重大于取食野生型叶片的幼虫体重。bHLH17高表达抑制了茉莉素诱导的抗性相关基因(Thi2.1)和伤害响应基因(VSP2、AOS、JAZ1、JAZ9和JAZ10)的表达。原生质体转化实验显示bHLH17通过其N端行使转录抑制功能。研究结果表明, IIId亚组bHLH转录抑制因子bHLH17高表达会负调控茉莉素介导的对灰霉菌和甜菜夜蛾的抗性。  相似文献   

16.
Peracid activated organophosphorus (OP) insecticides were evaluated against electric eel and a range of insect acetylcholinesterases (AChE). Incubation of chlorpyrifos and sulprofos with meta-chloroperoxybenzoic acid (MCPBA) produced active metabolites capable of distinguishing between AChE enzymes conferring OP susceptibility and resistance in populations of the tobacco whitefly, Bemisia tabaci Gennadius, and the beet armyworm, Spodoptera exigua Hubner. These products were also active against enzymes present in the lygus bug Lygus hesperus Knight and the greenhouse whitefly, Trialeurodes vaporariorum Westwood. Although profenofos was active against electric eel AChE, incubation of the OP with MCPBA did not enhance its anti-AChE properties toward the eel or insect AChEs.  相似文献   

17.
Insecticide control is the major measure for suppression of Cnaphalocrocis medinalis (Guenée) (Lepidoptera: Pyralidae) damage, and a few insecticides used for long time have proved to fail to control this pest in China. Several new chemicals have been introduced for control of C. medinalis. However, there was no baseline susceptibility data of C. medinalis to insecticides used or will be in use. In this study, a seedling dipping method was developed for bioassay of insecticide susceptibility of C. medinalis. Dose responses of C. medinalis to 11 insecticides were tested. Interpopulation sensitivity to insecticides was compared. Based on LC50 values, C. medinalis was most susceptible to antibiotic insecticides (abamectin, emamectin benzoate, and spinosad) and least sensitive to monosultap and a Bacillus thuringiensis (Bt) product. Chlorantraniliprole and insect growth regulator (IGR) insecticides (tebufenozide and hexaflumuron) exhibited great efficacy against C. medinalis. No susceptibility difference was observed for antibiotic insecticide and IGR insecticides among three populations. Narrow variation in tolerant level was detected for organophosphates insecticides, chlorantraniliprole, monosultap, and Bt. The results in this study provided baseline susceptibility data of C. medinalis to 11 insecticides and also offered useful information for choice of alternative insecticide and for integrated resistance management of C. medinalis.  相似文献   

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