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1.
昆虫抗药性和昆虫毒理动力学(英文)   总被引:1,自引:0,他引:1  
不断地使用一种杀虫药剂防治昆虫,会导致昆虫产生抗药性。对昆虫抗药性资料进行广泛综述时,发现了仅单独的解毒作用不能被解释为家蝇对有机氯杀虫药剂产生高抗性原因。作为一个基因。家蝇可以对有机氯产生比对有机磷杀虫剂更高的抗药性,尽管有机磷杀虫剂一般在虫体内是不太稳定的。考虑到昆虫毒理的动力学,杀虫药剂的穿透作用更显示出其实际的重要性。根据穿透和解毒的速率,慢的穿透作用是解毒作用的一个限制因子。防治敏感和抗性昆虫的观察结果,可以划出物理和生物因子之间关系的几种相关曲线图解。这些相关性不仅能说明家蝇对有机磷和有机氯杀虫剂的抗性程度,而且也助于选择出新的杀虫毒剂。  相似文献   

2.
中国杀虫药剂毒理研究进展概况   总被引:5,自引:0,他引:5  
陈巧云 《昆虫知识》1992,29(3):156-159
<正> 杀虫剂的应用历史悠久,但是由于应用杀虫剂防治害虫而兴起的杀虫药剂毒理学却是一门比较年轻的科学。它虽然研究哪些物质对昆虫有毒,产生什么中毒征象,然而其主要任务是研究杀虫药剂杀死昆虫的机制以及昆虫对杀虫药剂的反应。它还包括环境及昆虫生理状态等因素对杀虫剂毒杀作用的影响,以及杀虫剂对  相似文献   

3.
张广学 《昆虫学报》1999,42(-1):1-5
人类的发展面临着许多问题,其中包括环境污染与害虫暴发失控等, 对策应是人类谋求与自然协调共存。人类必须学会既要和众多的非生命物又要和数千万种生物包括100多万种昆虫协调共存。天敌昆虫是大害虫的克星; 人类赖以生存的经济植物是由昆虫传播花粉的; 昆虫是人类的美味佳肴和医病良药; 有些昆虫是重要工业原料。所以人类要锐意合理利用昆虫资源。对于农林害虫要尽可能谋求自然控制; 提倡利用植物的抗害性、利用害虫的天敌、利用昆虫生长调节剂、种间信息物质、昆虫辐射不育技术控制害虫。尽量利用植物性杀虫剂控制害虫。尽量采用不杀伤或少杀伤天敌、不污染环境的化学杀虫剂或方法防治害虫。我国创造了很多行之有效的利用农业技术防治害虫的方法。  相似文献   

4.
Processes affecting the toxicity of diazinon to a susceptible and a resistant strain of houseflies were examined. More evidence was obtained to show that slower penetration of diazinon through the integument of resistant flies is a cause of resistance. Small amounts of two decomposition products were found in both strains. The decomposition mechanisms, in these strains were differently distributed and, although detoxication of diazinon in the two strains is quantitatively similar and small, it may contribute to resistance. Traces of diazoxon were detected when diazinon was incubated with tissue extracts of either strain. Tissue extracts of resistant, but not of susceptible, flies decomposed significant amounts of diazinon in 1 hr. and the ability to decompose diazoxon seems to be an important cause of resistance. Tissues of both strains sorbed diazinon from aqueous solution similarly; the quantities sorbed were large and suggest that sorption may increase the amount of poison needed inside the insects to kill, by between five and forty times.  相似文献   

5.
A house fly strain, ALHF, was collected from a poultry farm in Alabama after a control failure with permethrin, and further selected in the laboratory with permethrin for five generations. The level of resistance to permethrin in ALHF was increased rapidly from an initial 260-fold to 1,800-fold after selection. Incomplete suppression of permethrin resistance by piperonyl butoxide (PBO) and S,S,S,-tributylphosphorotrithioate (DEF) reveals that P450 monooxygenase- and hydrolase-mediated detoxication, and one or more additional mechanisms are involved in resistance to permethrin. The ALHF strain showed a great ability to develop resistance or cross-resistance to different insecticides within and outside the pyrethroid group including some relatively new insecticides. Resistance to beta-cypermethrin, cypermethrin, deltamethrin, and propoxur (2,400-4,200-, 10,000-, and > 290-fold, respectively, compared with a susceptible strain, aabys) in ALHF house flies was partially or mostly suppressed by PBO and DEF, indicating that P450 monooxygenases and hydrolases are involved in resistance to these insecticides. Partial reduction in resistance with PBO and DEF implies that multiresistance mechanisms are responsible for resistance. Fifteen- and more than fourfold resistance and cross-resistance to chlorpyrifos and imidacloprid, respectively, were not effected by PBO or DEF, indicating that P450 monooxygenases and hydrolases are not involved in resistance to these two insecticides. Forty-nine-fold cross-resistance to fipronil was mostly suppressed by PBO and DEF, revealing that monooxygenases are a major mechanism of cross-resistance to fipronil. Multiresistance mechanisms in the ALHF house fly strain, however, do not confer cross-resistance to spinosad, a novel insecticide derived from the bacterium Saccharopolyspora spinosa. Thus, we propose that spinosad be used as a potential insecticide against house fly pests, especially resistant flies.  相似文献   

6.
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   

7.
The evolution of resistance to drugs and pesticides poses a major threat to human health and food security. Neonicotinoids are highly effective insecticides used to control agricultural pests. They target the insect nicotinic acetylcholine receptor and mutations of the receptor that confer resistance have been slow to develop, with only one field‐evolved mutation being reported to date. This is an arginine‐to‐threonine substitution at position 81 of the nAChR_β1 subunit in neonicotinoid‐resistant aphids. To validate the role of R81T in neonicotinoid resistance and to test whether it may confer any significant fitness costs to insects, CRISPR/Cas9 was used to introduce an analogous mutation in the genome of Drosophila melanogaster. Flies carrying R81T showed an increased tolerance (resistance) to neonicotinoid insecticides, accompanied by a significant reduction in fitness. In comparison, flies carrying a deletion of the whole nAChR_α6 subunit, the target site of spinosyns, showed an increased tolerance to this class of insecticides but presented almost no fitness deficits.  相似文献   

8.
The horn fly, Haematobia irritans, is a serious pest of cattle in North America. The control of horn flies has primarily relied on insecticides. However, the heavy use of insecticides has led to the development of insecticide resistance in horn flies. Novel methods to control horn flies are greatly needed. Transgenic technology is an effective tool to genetically modify insects and may lead to novel methods of pest control based on genomic approaches. Here we report a piggyBac‐mediated transformation of the horn fly via electroporation. Transformation with a DsRed fluorescent marker protein coding region was verified by PCR analysis of individual fly bodies and pupal cases and sequencing of PCR products. However, Southern blot analysis failed to indicate the DsRed gene was integrated into the horn fly genome. Thus, the electroporation protocol may have caused the DsRed gene to be integrated into bacterial symbionts of the horn fly.  相似文献   

9.
拟除虫菊酯抗性家蝇的交互抗药性研究   总被引:1,自引:0,他引:1  
拟除虫菊酯的广泛使用使家蝇普遍产生了抗药性,为有效的控制家蝇的危害,需要了解家蝇对轮换或新杀虫剂的交互抗性状况。作者用点滴法测定了两个实验室汰选的拟除虫菊酯抗性家蝇品系对几种杀虫剂的交互抗性,结果表明:二氯苯醚菊酯和溴氰菊酯之间存在较高程度的交互抗药性;拟除虫菊酯抗性较高的家蝇对作用机制不同的新农药(多杀菌素、氟虫腈)表现较低程度的交互抗性。  相似文献   

10.
11.
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   

12.
昆虫抗药性靶标不敏感机制的研究进展   总被引:21,自引:0,他引:21  
李显春  王荫长 《昆虫学报》1998,41(4):417-425
靶标不敏感(targetsiteinsensitivity)是昆虫对杀虫剂产生抗药性的一个极为重要的生化机制,已在多种昆虫对多种杀虫剂的抗性中发现[1,2],最著名的便是:变构乙酰胆碱酯酶(alteredacetvlcholinesterase,简称变构AChE)对有机磷和氨基甲酸酯类杀虫剂的抗性、不敏感的Na 通道(insensitivesodiumchannel)对DDT和除虫菊酯的击倒抗性(knockdownresistance,kdr),以及不敏感的γ-氨基丁酸受体(insensitiveGABAreceptor)对环戊二烯类杀虫剂和γ-六六六的抗性[3]。80年代以来,众多学者利用各种技术尤其是分子生物学技术对上述靶…  相似文献   

13.

Background

Insects may use various biochemical pathways to enable them to tolerate the lethal action of insecticides. For example, increased cytochrome P450 detoxification is known to play an important role in many insect species. Both constitutively increased expression (overexpression) and induction of P450s are thought to be responsible for increased levels of detoxification of insecticides. However, unlike constitutively overexpressed P450 genes, whose expression association with insecticide resistance has been extensively studied, the induction of P450s is less well characterized in insecticide resistance. The current study focuses on the characterization of individual P450 genes that are induced in response to permethrin treatment in permethrin resistant house flies.

Results

The expression of 3 P450 genes, CYP4D4v2, CYP4G2, and CYP6A38, was co-up-regulated by permethrin treatment in permethrin resistant ALHF house flies in a time and dose-dependent manner. Comparison of the deduced protein sequences of these three P450s from resistant ALHF and susceptible aabys and CS house flies revealed identical protein sequences. Genetic linkage analysis located CYP4D4v2 and CYP6A38 on autosome 5, corresponding to the linkage of P450-mediated resistance in ALHF, whereas CYP4G2 was located on autosome 3, where the major insecticide resistance factor(s) for ALHF had been mapped but no P450 genes reported prior to this study.

Conclusion

Our study provides the first direct evidence that multiple P450 genes are co-up-regulated in permethrin resistant house flies through the induction mechanism, which increases overall expression levels of P450 genes in resistant house flies. Taken together with the significant induction of CYP4D4v2, CYP4G2, and CYP6A38 expression by permethrin only in permethrin resistant house flies and the correlation of the linkage of the genes with resistance and/or P450-mediated resistance in resistant ALHF house flies, this study sheds new light on the functional importance of P450 genes in response to insecticide treatment, detoxification of insecticides, the adaptation of insects to their environment, and the evolution of insecticide resistance.  相似文献   

14.
昆虫抗药性与适合度   总被引:3,自引:0,他引:3  
昆虫抗药性的产生常伴有适合度劣势(即适合度代价),即抗性个体常表现出发育速率较慢、存活率和生殖力较低。文章主要阐述害虫抗药性与生物适合度和适合度代价的关系以及适合度代价产生的机制、特性及影响因素。并从生态学角度论述害虫抗药性的进化,为探索抗性发展规律及害虫抗性治理提供理论依据。  相似文献   

15.
棉铃虫抗药性的生理生化机制研究   总被引:12,自引:2,他引:10  
张友军  张文吉 《昆虫学报》1997,40(3):247-253
本文报道了棉铃虫Helicoverpa armigera田间抗性种群对杀虫剂抗药性的生理生化机制。抗性种群(HJ-R)5龄幼虫羧酸酯酶、谷胱甘肽转移酶、多功能氧化酶活力均明显高于相对敏感种群(HD-S)。两种群乙酰胆碱酯酶对杀虫剂敏感性没有显著差异。HJ-R种群的腹神经索对氰戊菊酯表现了2-3倍的神经不敏感性。HJ-R种群对氨基甲酸酯类杀虫剂的抗性主要是由代谢机制引起,其中多功能氧化酶可能起主导作用;对菊酯的抗性是由多功能氧化酶、酯酶、以及神经不敏感性几个因子综合作用的结果。  相似文献   

16.
天敌昆虫抗药性研究进展   总被引:3,自引:0,他引:3  
天敌昆虫抗药性研究在协调害虫化学防治和生物防治中有着重要的理论和现实意义,其研究的最终目的在于更好地推进抗性天敌在害虫综合治理(IPM)中的应用。抗药性天敌昆虫具有潜在的巨大价值。鉴于此,本文系统地综述了天敌昆虫抗药性最新研究进展,包括杀虫剂对天敌昆虫的影响、天敌昆虫抗药性现状、抗药性机理和限制天敌昆虫抗药性发展因素等。文章最后还对抗药性天敌昆虫的应用前景进行了展望。  相似文献   

17.
Assays of five commercial insecticides applied as residual sprays at label rates to plywood indicated the most toxic insecticide overall for pteromalid parasitoids of house flies, Musca domestica L., was Atroban (permethrin), followed by Ciodrin (crotoxyphos), Rabon (tetrachlorvinphos), Ectrin (fenvalerate), and Cygon (dimethoate). Insecticide-susceptible house flies were susceptible to all five insecticides (mortality, 62-100%). Flies that were recently colonized from populations on dairy farms in New York were susceptible only to Rabon. Urolepis rufipes (Ashmead) was the most susceptible parasitoid species overall to these insecticides, followed by Muscidifurax raptor Girault & Sanders, Nasonia vitripennis Walker, Pachycrepoideus vindemmiae (Rondani), and Spalangia cameroni Perkins. Compared with susceptible flies, newly colonized flies showed moderate resistance to avermectin B1a (abamectin). Abamectin was more toxic to all of the parasitoids except N. vitripennis and S. cameroni than to newly colonized house flies when exposed for 90 min to plywood boards treated with 0.001-0.1% abamectin. Space sprays with Vapona (dichlorvos) killed all of the parasitoids and susceptible flies and 64% of the newly colonized flies when insects were placed directly in the path of the spray; mortality was substantially lower among flies and parasitoids protected under 5 cm of wheat straw. Space sprays with Pyrenone (pyrethrins) killed greater than 86% of all insects exposed to the spray path except for the newly colonized flies (1% mortality); mortality of insects protected under straw was low (less than 12%) except for S. cameroni (76%). Because responses of the five parasitoids to the different insecticides varied considerably, general conclusions about parasitoid susceptibility to active ingredients, insecticide class, or method of application were not possible.  相似文献   

18.
灭幼脲Ⅲ号对马尾松林昆虫群落多样性的影响研究   总被引:12,自引:0,他引:12  
1995年7月至1996年6月在湘中丘陵区马尾松林内用灭幼脲Ⅲ号作的喷药试验结果表明,灭幼脲Ⅲ号不仅直接影响鳞翅目昆虫的物种组成主多样性水平,而且对膜翅目昆虫(主要是蚂蚁)和蜘蛛的物种组成及多样性水平有间接影响。在时间过程中,施药区鳞翅目和直翅目昆虫的多样性水平有一定程度的下降,但下降程度不如对照区大,膜翅目和蜘蛛的多样性水平则有较大程度的上升,因此林内昆虫群落趋于相对稳定。由于药剂对蚜虫种群无影  相似文献   

19.
植物精油在害虫防治上的应用   总被引:26,自引:0,他引:26  
本文就应用植物精油防治害虫的研究集中在下列四方面进行了综述:1.精油对昆虫的吸引作用;2.精油对昆虫的忌避、拒食和生长发育抑制作用;3.精油对昆虫的毒杀作用;4.不同精油或精油与化学农药的混用及其产生的增效作用。  相似文献   

20.
昆虫分子生物学的一些进展:杀虫剂抗性的分子基础   总被引:31,自引:2,他引:29  
翟启慧 《昆虫学报》1995,38(4):493-501
昆虫分子生物学的一些进展:杀虫剂抗性的分子基础翟启慧(中国科学院动物研究所北京100080)昆虫对杀虫剂的中毒,在药物动力学上包括三种不同水平上的作用:穿透表皮组织,在体内组织中的分布、贮存和代谢,以及对最终靶部位的作用。因此,已经公认的抗性机理包括...  相似文献   

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