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1.
通过室内杀虫剂处理水培棉苗选育抗性棉蚜,研究棉蚜在药剂诱导下抗性的变化,比较吡虫啉、吡虫啉 增效磷、氧乐果和氰戊菊酯对棉蚜抗性诱导的差异,评价棉蚜对吡虫啉抗药性的风险.结果表明,用吡虫啉等药剂分别选育棉蚜至18代都能够诱导抗性上升,棉蚜对吡虫啉抗性达到10.08倍,对吡虫啉 增效磷的抗性达9.70倍;而用氧乐果和氰戊菊酯分别选育棉蚜至12代时,其抗性分别达28.48倍和35158倍.各抗性品系停止选育12代,抗性下降.  相似文献   

2.
朱砂叶螨的抗药性选育及其解毒酶活性研究   总被引:14,自引:2,他引:14       下载免费PDF全文
在室内模拟田间药剂的选择压力,用阿维菌素和甲氰菊酯对朱砂叶螨Tetranychus cinnabarinus 进行逐代处理,以选育其抗药性品系。阿维菌素品系选育至42代,抗性增长到8.7倍,甲氰菊酯品系选育至40代,抗性增长到68.5倍。阿维菌素抗性品系羧酸酯酶(CarE)、谷胱甘肽-S-转移酶(GSTs)、多功能氧化酶(MFO)的活性分别为敏感品系的2.7、3.4和1.4倍,差异达显著水平。推测3种解毒酶活性显著升高是朱砂叶螨对阿维菌素产生抗性的重要原因。甲氰菊酯抗性品系GSTs的活性为敏感品系的2.8倍,差异显著,表明该抗性品系的形成与GSTs活性增强有关。羧酸酯酶动力学测定结果表明,朱砂叶螨阿维菌素抗性品系体内存在变构的羧酸酯酶。  相似文献   

3.
在温室内模拟田间药剂的选择压力,用梅岭霉素和溴虫腈对二斑叶螨Tetranychus urticae以浸渍法逐代处理,选育其抗性种群,评价其抗性风险性.结果表明,选育至12代,对梅岭霉素抗性增长到9.2倍,对溴虫腈抗性增长到10.0倍.酶抑制剂和离体酶活性的测定结果表明,二斑叶螨对梅岭霉素的抗性可能与羧酸酯酶、多功能氧化酶解毒作用的增强和药剂对害螨体壁穿透性降低有关;而药剂对害螨体壁穿透性降低和谷胱甘肽-S-转移酶及酯酶代谢作用的增强可能是二斑叶螨对溴虫腈产生抗性的主要原因.  相似文献   

4.
4种棉蚜抗药性种群的生命力及繁殖力   总被引:6,自引:0,他引:6  
用4种杀虫剂以浸渍法分别累代处理敏感棉蚜,以选育抗药性。每选育4代进行1次毒力测定及生命力和繁殖力的观察。选育至12代,棉蚜对溴氰菊酯的抗性倍数达4031.4倍,对久效磷、灭多威及硫丹的抗性倍数分别仅为6.3、6.1及4.0倍。棉蚜对溴氰菊酯抗性水平较低时,其生命力及繁殖力略低于敏感品系,随着抗性水平的提高,其生命力和繁殖力也随之增强,RF_(8)接近敏感品系的水平,RF_(12)及RF_(16)则明显超过。灭多威及硫丹抗性种群随抗性水平的提高,其生命力及繁殖力表现不同程度的降低。久效磷抗性种群,各抗性水平下其生命力和繁殖力与敏感品系相比无显著差异。  相似文献   

5.
甲氨基阿维菌素苯甲酸盐(甲维盐)和虱螨脲是目前生产上防治草地贪夜蛾的主要杀虫剂,为评估其抗性风险,以福建省草地贪夜蛾田间种群为研究对象,在实验室抗性汰选品系选育基础上,采用数量遗传学域性状分析法并结合交互抗性测定,进行草地贪夜蛾对上述两种杀虫剂的抗性风险评估。结果表明:非连续汰选11代和10代后,草地贪夜蛾对甲维盐(F11)和虱螨脲(F10)的抗性倍数分别达30.57倍和11.35倍;抗性现实遗传力分别为0.403和0.555,且前半段筛选的抗性遗传力都远大于后半段;药剂在室内对草地贪夜蛾致死率为50%~90%时,对甲维盐和虱螨脲抗性倍数上升10倍需要汰选8~15代和6~12代。交互抗性测定显示,甲维盐汰选品系对氯虫苯甲酰胺、虱螨脲、虫螨腈无交互抗性,对茚虫威和乙基多杀菌素存在一定交互抗性。虱螨脲汰选品系对氯虫苯甲酰胺、甲维盐、茚虫威、虫螨腈和乙基多杀菌素均无交互抗性。结果表明:草地贪夜蛾对甲维盐和虱螨脲存在快速产生抗性的风险,但可通过与无交互抗性药剂轮用来延缓抗性发展。  相似文献   

6.
小菜蛾对溴氰菊酯抗性选育及其机理   总被引:15,自引:3,他引:15  
本研究用溴氰菊酯在室内以点滴法处理小菜蛾4龄幼虫,连续继代药剂淘汰选育其抗药性,至F65代,抗药性提高到1163倍,已形成高抗生品系。其抗性的形成发展趋势为前期相对缓慢,中期较快,后期迅速增长。于1992、1993、1994年分别以氯氰菊酯、敌敌畏、杀虫双、灭虫剂有明显 正交互抗性,对其它非菊酯类杀虫虫没有产生交互抗性。用聚丙烯酰胺凝胶电泳地(PAGE)测定表明,小菜蛾对溴氰菊酯抗性的产生可能与非  相似文献   

7.
采集桔全爪螨敏感种群 ,在室内用甲氰菊酯处理 ,以选育其抗药性。结果显示 :选育至 12代 ,抗性达 17 11倍 ,且发展速度越来越快。交互抗性测定结果显示 ,甲氰菊酯抗性品系对功夫和哒螨灵有非常明显的交互抗性 ,对卡死克有非常明显的负交互抗性现象。  相似文献   

8.
小菜蛾对阿维菌素B_1抗药性选育及交互抗性   总被引:1,自引:0,他引:1  
用阿维菌素B_1(abamectin)对小菜蛾敏感种群在室内进行抗性品系选育。经过25代连续汰选,获得抗性种群Laba-R,与选育前比较,抗性提高100倍。Laba-R种群在不接触任何药剂条件下饲养20代,抗性逐渐下降,很难恢复到选育前的敏感状态。抗性汰选前后分别测定10种药剂的剂量-死亡率毒力回归线,发现Laba-R抗性种群对乙酰甲胺磷、锐劲特、灭多威、敌敌畏不存在交互抗性;对溴氰菊酯、氯氰菊酯、杀虫双、巴丹和Bt的敏感性略有下降,但无明显交互抗性。活体增效剂试验表明,增效醚(PBO)和磷酸三苯酯(TPP)对阿维菌素B_1均有明显的增效作用,其中PBO的增效活性尤为显著,它能使对阿维菌素B_1产生100多倍抗药性的小菜蛾完全恢复其敏感性。说明多功能氧化酶解毒代谢增强可能是小菜蛾对阿维菌素B_1产生抗性的主导因素之一。  相似文献   

9.
小菜蛾对阿维菌素B1抗药性选育及交互抗性   总被引:6,自引:0,他引:6  
用阿维菌素B1(abamectin)对小菜蛾敏感种群在室内进行抗性品系选育。经过25代连续汰选,获得抗性种群Laba-R,与选育前比较,抗性提高100倍,La-ba-R种群在不接触任何药剂条件下饲养20代,抗性逐渐下降,很难恢复到选育前的敏感状态。抗性汰选前后分别测定10种药剂的剂量-死亡率毒力回归线,发现Laba-R抗性种群对乙酰甲胺磷、锐劲特、灭多威、敌敌畏不存在交互抗性;对溴氰菊酯、氯氰菊酯、杀虫双、巴丹和Bt的第三性略有下降,但无明显交互抗性。活性增效剂试验表明,增效醚(PBO)和磷酸三苯酯(TPP)对阿维菌素B1均有明显的增效作用,其中PBO的增效活性尤为显著,它能使对阿维菌素B1产生100多倍抗药性的小菜蛾完全恢复其敏感性,说明多功能氧化酶解毒代谢增强可能是小菜蛾对阿维菌素B1产生抗性的主导因素之一。  相似文献   

10.
为了明确巴氏新小绥螨Neoseiulus barkeri溴氰菊酯抗性品系对常用杀虫(螨)剂的交互抗性水平及生物适合度,为巴氏新小绥螨抗药性品系田间应用提供科学依据。本文应用玻片浸渍法测定了巴氏新小绥螨溴氰菊酯抗性品系对12种杀虫(螨)剂的交互抗性,采用种群生命表评价了其生长发育及繁殖情况。结果显示,相对于巴氏新小绥螨敏感品系,溴氰菊酯抗性品系(226.38倍)对供试的其他6种拟除虫菊酯类药剂均存在交互抗性,尤其对氯氟氰菊酯的交互抗性倍数最高,达到2 210.91倍。对噻虫嗪、毒死蜱和乙螨唑的交互抗性分别是116.46、110.71倍和20.43倍,对丁硫克百威、阿维菌素和哒螨灵无交互抗性。对其生物适合度研究发现,溴氰菊酯抗性品系相较于敏感品系,前若螨期和产卵前期显著缩短,产卵期和单雌总产卵量显著增加。上述结果表明,巴氏新小绥螨溴氰菊酯抗性品系对10种常用杀虫(螨)药剂产生了不同水平的交互抗性,且其繁殖率显著增加,推荐在田间推广应用。  相似文献   

11.
The rate of development of resistance to diflubenzuron in a laboratory susceptible strain of the cotton leafworm Spodoptera littoralis Boisd., the pattern of cross-resistance exhibited by the resistant strain to several insecticides and juvenile hormone analogues, as well as the synergistic action of piperonyl butoxide (PB) and S, S, S-tributyl phosphorotrithioate (TBP) with insecticides or diflubenzuron on both strains, were investigated. Resistance to diflubenzuron increased slightly in the first eight selected generations and was enhanced by further selection until in generation 30, the selected strain attained the high level of resistance of 290.7-fold, compared with the parent strain. The resistant strain when challenged with either insecticides or juvenile hormone analogues at selected generations (5, 10, 15, 20, 25 and 30) exhibited different levels of resistance to several insecticides representing organochlorine and organo-phosphorus compounds, carbamates and pyrethroids, but a clear case of negative correlation was indicated between resistance to diflubenzuron and juvenile hormone analogues. With regard to the synergistic action of PB and TBP on the toxicity of either diflubenzuron or insecticides against the fourth-instar larvae of the susceptible strain, methomyl showed slight levels of synergism when it was combined with them. With the exception of cypermethrin, which was not affected by the two synergists, lower levels of synergism were observed with the compounds endrin, diflubenzuron and fenvalerate when they were combined with the same synergists. These two synergists however, antagonised the toxic action of the organophosphorus compounds phosfolan and chlorpyrifos. Against the resistant strain, endrin was moderately synergised by TBP but only slightly by PB. Slight levels of synergism were observed when methomyl, phosfolan and diflubenzuron were combined with either synergist, but both antagonised chlorpyrifos and fenvalerate. Resistance to diflubenzuron and to the other tested chemicals in the resistant strain was scarcely affected by the two synergists.  相似文献   

12.
利用硫丹杀虫剂对夏津抗性棉铃虫进行室内选育17代,棉铃虫对氰戊菊酯的抗性没有提高,而对硫丹的抗性却明显提高了5.87倍。将硫丹选育种群(Edo-R种群)和未用任何杀虫剂的对照种群(CK种群)的某些生物学特征进行比较发现:Edo-R种群的幼虫发育历期较CK种群平均延长了2.30d(显著性检验p<0.01)。Edo-R种群和CK种群未成熟期的存活率分别为36.67%和54.17%(显著性检验p<0.01)。其它的一些生物学指标则不存在显著差异。Edo-R种群相对于CK种群具有0.64的适合度。  相似文献   

13.
采用微量毛细管点滴法筛选出比河北廊坊桃蚜相对敏感种群更为敏感的甘肃宕昌桃蚜种群,建立了18种杀虫剂对桃蚜敏感种群的毒力基线,可作为今后国内各地监测桃蚜抗药性水平的敏感基线。用氧乐果、氰戊菊酯及其氧乐果+氰戊菊酯对桃蚜敏感种群进行抗性选育,汰选20次时桃蚜对混剂氧乐果+氰戊菊酯只产生4.85倍的抗药性,比氧乐果单剂(7.39倍)抗性发展速度幔,尤其比氰戊菊酯单剂(87.21倍)更慢,表明桃蚜易对菊酯类药剂产生抗药性,混剂可以延缓产生抗药性。  相似文献   

14.
BACKGROUND: Laodelphax striatellus (Fallén) is a major pest of cultivated rice and is commonly controlled in China with the organophosphate insecticides. To develop a better resistance management strategy, a chlorpyrifos‐resistant strain of L. striatellus was selected in the laboratory, and its cross‐resistance to other insecticides and possible mechanisms of the chlorpyrifos resistance were investigated. RESULTS: After 25 generations of selection with chlorpyrifos, the selected strain of L. striatellus developed 188‐fold resistance to chlorpyrifos in comparison with the susceptible strain, and showed 14‐ and 1.6‐fold cross‐resistance to dichlorvos and thiamethoxam respectively. There was no apparent cross‐resistance to abamectin. Chlorpyrifos was synergised by the inhibitor triphenyl phosphate; the carboxylesterase synergistic ratio was 3.8 for the selected strain, but only 0.92 for the susceptible strain. The carboxylesterase activity of the selected strain was approximately 4 times that of the susceptible strain, whereas there was no significant change in the activities of alkaline phosphatase, acid phosphatase, glutathione S‐transferase and cytochrome P450 monooxygenase between the strains. The Michaelis constant of acetylcholinesterase, maximum velocity of acetylcholinesterase and median inhibitory concentration of chlorpyrifos‐oxon on acetylcholinesterase were 1.7, 2.5 and 5 times higher respectively in the selected strain. CONCLUSION: The high cross‐resistance to the organophosphate dichlorvos in the chlorpyrifos‐resistant strain suggests that other non‐organophosphate insecticides would be necessary to counter resistance, should it arise in the field. Enhanced activities of carboxylesterase and the acetylcholinesterase insensitivity appear to be important mechanisms for chlorpyrifos resistance in L. striatellus. Copyright © 2010 Society of Chemical Industry  相似文献   

15.
Filter-paper residual toxicities of some insecticides used extensively in China were determined during 1994 using newly hatched (within 30 min) larvae of four Pectinophora gossypiella (Saunders) strains. The strains were field collections collected in the Yangtze River cotton-belt areas. Compared with the susceptible laboratory strain from Qunli (Lishui County, Jiangsu province), the four field strains from Anqing (Anhui province), Jiangling (Hubei province), Cixi(Zhejiang province) and Tongzhou(Jiangsu province) had developed 185-, 6·7-, 698- and 249-fold resistance, respectively, to deltamethrin. Cixi and Tongzhou field strains had also developed 103- and 94-fold resistance to fenvalerate, and 10- and 3·6- fold resistance to parathion-methyl. Percentage of survivors at diagnostic dosage for deltamethrin showed that the strains from Anqing, Jiangling, Cixi and Tongzhou had 87·2, 18·3, 90·1 and 74·6% resistant individuals respectively. Cixi and Tongzhou field strains had 88·9 and 65·3% resistant individuals after application of parathion-methyl, which was consistent with the corresponding resistance ratios. Studies of the effect of synergists piperonyl butoxide (PBO), triphenyl phosphate (TPP) with deltamethrin and parathion-methyl in Cixi, Anqing and Tongzhou field strains suggested that metabolic resistance mechanisms such as carboxylesterases (CarE) and mixed function oxygenases (MFO) were involved in parathion-methyl resistance, but not in deltamethrin resistance. © 1997 SCI.  相似文献   

16.
在70%的高选择压下,分别用溴氰菊酯、三氟氯氰菊酯和凯明2号(50%辛硫磷·甲基对硫磷·三氟氯氰乳油,即含三氟氯氰菊酯的复配药剂)对室内饲养了12代未经农药处理的棉铃虫Helicoverpa armigera(H(?)bner)敏感品系进行了抗性筛选。结果,经连续筛选至第12代的LD_(50)值与筛选前第1代的LD_(50)值比较,抗溴氰菊酯种群对溴氰菊酯的抗性为136.7倍,属高抗水平;抗三氟氯氰菊酯种群对三氟氯氰菊酯的抗性为9.5倍,抗凯明2号种群对凯明2号的抗性为3.4倍,均属低抗水平。用8种常用杀虫剂分别对这3个种群在停止上述杀虫剂筛选2代后进行了交互抗性分析。结果表明,3个种群平均对8种杀虫剂的抗性倍数中,对溴氰菊酯、氰戊菊酯、灭多威的抗性极显著高于其余5种杀虫剂;3个种群的平均抗性倍数之间差异极显著,顺序依次为抗溴氰菊酯种群>抗三氟氯氰菊酯种群>抗凯明2号种群;以平均抗性倍数表示的抗性种群与杀虫剂的交互作用有以下几个结果:①高抗溴氰菊酯的种群对氰戊菊酯和灭多威有极显著的交互抗性,但对三氟氯氰菊酯和凯明2号仍反应敏感。②抗三氟氯氰菊酯和抗凯明2号的2个种群对溴氰菊酯有极显著的交互抗性;抗三氟氯氰菊酯种群对灭多威和氰戊菊酯有一定抗性,抗凯明2号种群对硫丹有一定抗性。  相似文献   

17.
BACKGROUND: Developing scientifically valid, economically acceptable insecticide resistance management (IRM) programs is critical for sustainable insect management. The diamondback moth, Plutella xylostella (L.), has demonstrated an ability to develop resistance to many different classes of insecticides, including proteins produced by the bacterium Bacillus thuringiensis Berliner (Bt). Recently it has developed resistance to the novel compounds spinosad and indoxacarb. In greenhouse cage experiments, a laboratory‐selected population of P. xylostella resistant to spinosad, indoxacarb and Bt was used to compare population growth and resistance evolution if these three insecticides were rotated or used in a mosaic fashion. RESULTS: The average population density through nine generations was lowest in the treatment in which the insecticide was rotated every generation (R‐1) (x? = 20.7 ± 3.20) compared with the treatment in which the insecticide was rotated every third generation (R‐3) (x? = 41.4 ± 17.6) or where the insecticides were applied as a mosaic (M) (x? = 41.8 ± 6.53). After nine generations, the survival of resistant individuals increased for each insecticide (7.2–73.5%) compared with the population without selection (CK) (0.73–3.1%). Survival on spinosad was significantly lower (23.7%) in the single‐generation rotation than for the other two treatments, both of which exceeded 72%. The calculated survival on all three insecticides treated simultaneously, according to the survival on each insecticide, was 0.26, 0.81 and 1.6% for R‐1, R‐3 and M treatments respectively. CONCLUSION: Results of both population density and resistance development indicated that insecticide rotation every generation was better for IRM than if the insecticide was rotated every third generation or if the three insecticides were applied as a mosaic. Copyright © 2010 Society of Chemical Industry  相似文献   

18.
Wang Y  Chen J  Zhu YC  Ma C  Huang Y  Shen J 《Pest management science》2008,64(12):1278-1284
BACKGROUND: In recent years, outbreaks of the brown planthopper, Nilaparvata lugens (Stål), have occurred more frequently in China. The objective of this study was to determine the susceptibility of N. lugens to neonicotinoids and other insecticides in major rice production areas in China. RESULTS: Results indicated that substantial variations in the susceptibility to different insecticides existed in N. lugens. Field populations had developed variable resistance levels to neonicotinoids, with a high resistance level to imidacloprid (RR: 135.3–301.3‐fold), a medium resistance level to imidaclothiz (RR: 35–41.2‐fold), a low resistance level to thiamethoxam (up to 9.9‐fold) and no resistance to dinotefuran, nitenpyram and thiacloprid (RR < 3‐fold). Further examinations indicated that a field population had developed medium resistance level to fipronil (up to 10.5‐fold), and some field populations had evolved a low resistance level to buprofezin. In addition, N. lugens had been able to develop 1424‐fold resistance to imidacloprid in the laboratory after the insect was selected with imidacloprid for 26 generations. CONCLUSION: Long‐term use of imidacloprid in a wide range of rice‐growing areas might be associated with high levels of resistance in N. lugens. Therefore, insecticide resistance management strategies must be developed to prevent further increase in resistance. Copyright © 2008 Society of Chemical Industry  相似文献   

19.
甜菜夜蛾对三种拟除虫菊酯杀虫剂的抗性稳定性研究   总被引:11,自引:0,他引:11       下载免费PDF全文
在室内脱离药剂选择的条件下,分别研究了甜菜夜蛾Spodoptera exigua Hübner 对氯氟氰菊酯、氰戊菊酯和顺式氯氰菊酯3种拟除虫菊酯杀虫剂的抗性稳定性及抗性衰退规律。结果表明,即使甜菜夜蛾对氯氟氰菊酯、氰戊 菊酯、顺式氯氰菊酯的抗性分别达522.9倍、669.7倍和2 737.2倍,抗性仍不稳定,分别经10代、8代和9代饲养后抗性下降为60.8倍、90.8倍和180.5倍;对田间抗性种群的抗性衰退研究发现,甜菜夜蛾对这3种拟除虫菊酯的抗性也表现为不稳定性,在无杀虫剂选择的情况下,开始几代抗性下降较快,当下降至一定水平(6~10倍)后,抗性趋于基本稳定,但很难完全恢复对拟除虫菊酯的敏感性。  相似文献   

20.
Cross-resistance of a fenvalerate-resistant (R-fenvalerate) strain and an imidacloprid-resistant (R-imidacloprid) strain of the cotton aphidAphis gossypii Glover to methomyl, endosulfan and omethoate was determined on cotton and cucumber in the laboratory. The R-fenvalerate strain had been selected for 16 consecutive generations on cotton, and the R-imidacloprid strain for 12. Compared with the susceptible (S) strains, the resistance in the 17th generation of the R-fenvalerate strain to fenvalerate was 29,035-fold on cotton and 700-fold on cucumber, whereas the resistance in the 13th generation of the R-imidacioprid strain to imidacloprid was 4.7-fold on cotton and 3.6-fold on cucumber. The R-fenvalerate strain did not show any cross-resistance to imidacloprid, methomyl or omethoate on cotton and cucumber, but became slightly cross-resistant to endosulfan (RR [resistance ratio] = 5.8 and 7.4 on cotton and cucumber, respectively). On cotton the R-imidacloprid strain became highly cross-resistant to fenvalerate (RR = 108.9) and slightly cross-resistant to methomyl, endosulfan and omethoate (RR = 6.3, 3.0 and 8.5, respectively). In contrast, on cucumber the R-imidacloprid strain became highly cross-resistant to fenvalerate (RR = 33.5) and slightly cross-resistant to methomyl and omethoate (RR = 7.0 and 3.3, respectively), but did not show any cross-resistance to endosulfan. It appears thatA. gossypii of both resistant strains was more resistant to the tested insecticides on cotton than on cucumber, except for imidacloprid —where the resistance on cotton was not significantly different from that on cucumber.  相似文献   

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