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1.
小菜蛾抗性稳定性及抗性治理对策研究   总被引:9,自引:1,他引:9  
试验表明,福州地区田间小菜蛾已对有机磷、氨基甲酸酯及拟除虫菊酯产 生高抗性。脱离选择压力3代后,小菜蛾的抗性水平迅速下降。Bt预处理可提高抗性和敏感小菜蛾幼虫 对有机磷的敏感性,尤其对抗性小菜蛾增效极显著,对敏感小菜蛾AChE的 Ki值则影响不 大。据此提出在抗性治理中,应轮用或换用不同毒理机制的杀虫剂,且其间隔至少为2~3代。  相似文献   

2.
为在小菜蛾防治中合理使用化学杀虫剂和生物农药Bt,探究了小菜蛾对化学农药的抗药性与其对Bt杀虫蛋白Cry1Ac的敏感度之间的关系。采用浸叶法测定了2个抗性背景不同的小菜蛾种群对9种常用杀虫剂和Cry1Ac蛋白的敏感度,通过比较敏感度差异,初步探索了小菜蛾对化学农药的抗药性和其对Cry1Ac蛋白敏感度之间的关系。结果表明:采自广东博罗县田间的小菜蛾种群(GDBL)对除Cry1Ac之外的9种常用杀虫剂,均已产生了不同程度的抗药性;而北京室内小菜蛾种群(BJNK),虽然对高效氯氰菊酯、阿维菌素、茚虫威、多杀菌素、溴虫腈具有抗性,对Cry1Ac在内的其他5种杀虫剂仍比较敏感。可见,对多种不同类型的杀虫剂产生了不同程度抗性的两个小菜蛾种群,对Cry1Ac蛋白仍处于敏感状态。由于小菜蛾对化学杀虫剂的抗性机制与其对Cry1Ac的抗性机制不同,小菜蛾对化学杀虫剂的抗药性与其对Cry1Ac的抗药性之间不存在交互抗性。因此,在田间可以通过加强Bt杀虫剂的使用来提高对多种化学杀虫剂产生抗性的小菜蛾的防治效果。  相似文献   

3.
为了解决目前广泛使用的cry1A类基因的抗性问题,获得对鳞翅目害虫高效杀虫基因,从菌株SC5D2和T03C001中鉴定并克隆到了2个新型cry9Aa基因,被Bt国际命名委员会分别正式命名为cry9Aa3和cry9Aa4,并进一步对其编码的蛋白进行活性测定。结果显示,2个基因对小菜蛾、玉米螟均具有较高的杀虫活性,其中对小菜蛾的LC50分别为1.83μg/mL和1.90μg/mL,对玉米螟的LC50分别为6.93μg/mL和1.06μg/mL。同时,两种Cry9Aa蛋白对Cry1Ac抗性小菜蛾都具有较高的杀虫活性,LC50分别为1.74μg/mL和1.39μg/mL,与敏感小菜蛾杀虫活性测定数据相当,表明Cry9Aa与Cry1Ac没有交互抗性。  相似文献   

4.
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   

5.
药剂对小菜蛾抗性及敏感品系乙酰胆碱酯酶抑制作用比较   总被引:5,自引:1,他引:4  
采用浸叶法测定了云南通海、元谋和澜沧的小菜蛾plutella xylostella田间种群对常用杀虫剂的抗药性。结果表明,云南上述地区小菜蛾田间种群对各类杀虫剂均产生了不同程度的抗性。对有机磷类药剂的抗药性为1.74~31.1倍;对菊酯类药剂的抗药性为7.41~764倍;对阿维菌素类药剂则产生了 5.60~4.06×104倍的抗性。通过离体和活体试验测定了药剂对小菜蛾头部乙酰胆碱酯酶(AChE)的抑制作用。敌敌畏和灭多威对通海抗性品系AChE离体和活体内的抑制中浓度(I50)分别是敏感品系的209、26.5倍和2.21、2.16倍;敌敌畏对通海小菜蛾种群的离体和活体内抑制中时间(IT50)小于敏感品系,分别是敏感品系的0.32和0.17倍;而灭多威对通海小菜蛾种群的离体和活体内抑制中时间(IT50)则大于敏感品系,分别是敏感品系的1.37和1.74倍。  相似文献   

6.
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   

7.
嗜线虫致病杆菌对小菜蛾的致死和亚致死效应室内评价   总被引:1,自引:1,他引:0  
嗜线虫致病杆菌是与昆虫病原线虫共生的细菌,对小菜蛾等多种害虫具有广谱的杀虫活性。为了深入了解该菌的杀虫活性,在室内测定了嗜线虫致病杆菌HB310 ( 简称 Xn HB310)菌株对小菜蛾幼虫的致死和亚致死效应以及持效期。结果表明, Xn HB310菌液对小菜蛾2龄和3龄幼虫72 h的LC50值分别是3.32×104 和8.56×104 CFU/mL,其活性组分主要存在于菌株细胞和经50 kDa超滤膜超滤后的上清液中。此外, Xn HB310菌液对小菜蛾幼虫还表现出明显的拒食活性,其2龄和3龄幼虫的拒食中浓度(AFC50)分别为4.03×105和8.48×105 CFU/mL。将2.24×106 CFU/mL菌液喷施到甘蓝苗上,其在室内的持效期为3~4 d。用亚致死剂量(LC30和LC50)的菌液饲喂小菜蛾2龄幼虫,存活幼虫的生长发育指标、蛹重、雌虫寿命以及成虫产卵量均明显下降,推测这可能导致小菜蛾下一代种群数量减少。研究结果表明,嗜线虫致病杆菌HB310菌株具有开发成为杀虫剂的潜力。  相似文献   

8.
为有效控制小菜蛾的危害,明确绿薄荷对小菜蛾的防治效果,采用95%乙醇对绿薄荷茎和叶进行索式抽提,并测定了茎和叶提取物12.5、25.0和50.0 mg/mL浓度下小菜蛾幼虫的拒食率和成虫产卵忌避活性。结果显示,绿薄荷茎和叶的乙醇提取物对小菜蛾幼虫的拒食和成虫的产卵忌避均有显著作用,提取物浓度越高,拒食率和产卵忌避率越大。当茎和叶提取物浓度为12.5 mg/mL时,小菜蛾的拒食率最低,分别为36.16%和59.81%,产卵忌避率最低,分别为46.18%和57.78%;茎和叶提取物浓度为50.0 mg/mL时,拒食率最高,分别为82.67%和87.15%,产卵忌避率最高,分别为88.29%和98.27%。茎和叶对应的拒食中浓度(AFC_(50))最高分别为18.93 mg/mL和15.97 mg/mL,产卵忌避中浓度(AOC_(50))最高分别为16.38 mg/mL和15.03 mg/mL。  相似文献   

9.
为明确靶标害虫对Bt蛋白的抗性及对不同类型Bt蛋白的交互抗性,采用生物测定法进行了二化螟Chilo suppressalis(Walker)敏感品系和Cry1Ac汰选品系在Cry1Ac毒饲料上的时间-死亡率反应、对不同Bt杀虫蛋白的敏感性及不同Bt蛋白复配组合对二化螟毒力效果的研究。结果表明,二化螟Cry1Ac汰选品系已对36.67μg/mL(LC_(50))的Cry1Ac杀虫蛋白产生了一定的适应性,但对308.69μg/mL(LC90)的Cry1Ac蛋白反应仍较敏感。Cry1Ac敏感品系和汰选品系对Cry1Ab蛋白的LC_(50)分别为1.40μg/mL和3.86μg/mL,二者差异显著,但对Cry1Ca(1.63μg/mL和1.73μg/mL)或Cry2Aa(127.48μg/mL和144.50μg/mL)的LC_(50)差异不显著,即Cry1Ac汰选品系与Cry1Ab存在明显的交互抗性,但与Cry1Ca和Cry2Aa不存在交互抗性。在不同Bt蛋白复配组合中(1∶1复配),Cry1Ab+Cry1Ca、Cry1Ab+Cry2Aa和Cry1Ca+Cry2Aa增效作用最为显著。表明抗虫基因cry1Ca和cry2Aa可作为双价转基因抗虫水稻研发的候选基因。  相似文献   

10.
Cry1Ac杀虫蛋白对甜菜夜蛾飞行能力的影响   总被引:2,自引:0,他引:2  
江幸福  陈建  罗礼智  张蕾 《植物保护》2011,37(6):102-106
转Bt基因作物上害虫取食Bt杀虫蛋白后存活并羽化的成虫飞行能力对于其飞离Bt作物,寻找庇护所中敏感个体进行交配、产卵,从而稀释抗性基因频率,实现“高剂量/庇护所”抗性治理策略具有重要意义。本文对取食含不同浓度Cry1Ac杀虫蛋白人工饲料的初羽化(未取食补充营养)甜菜夜蛾飞行能力进行了测试,结果表明,幼虫取食含25、50、100 μg/g和200 μg/g Cry1Ac杀虫蛋白人工饲料存活并羽化的成虫飞行距离、飞行速度和飞行时间均差异显著(p<0.05)。取食含较低浓度Cry1Ac杀虫蛋白(25 μg/g和50 μg/g)的人工饲料有促进成虫飞行的倾向,尽管与取食不含Cry1Ac杀虫蛋白的对照相比,成虫飞行距离、飞行速度和飞行时间均未达到显著增加的水平,但强飞行个体比例明显增加。随着饲料中Cry1Ac杀虫蛋白浓度的升高,羽化的成虫飞行能力显著下降。雄蛾飞行能力下降的程度比雌蛾更加明显。这些数据为转Bt基因作物上迁飞性害虫的种群动态规律及其潜在的抗性治理策略提供了科学依据。  相似文献   

11.
通过解毒酶活性测定与钠离子通道基因片段的克隆、测序,研究了南京小菜蛾对拟除虫菊酯产生高水平抗性的生化和分子机制。结果表明,南京抗性种群的酯酶和多功能氧化酶O-脱甲基活性分别是敏感种群的1.06和1.16倍,无显著差异;以2,4二硝基氯苯(CDNB)和1,2-二氯-4-硝基苯(DCNB)为底物,南京抗性种群的谷胱甘肽S-转移酶活性分别是敏感种群的0.68倍和1.03倍;进一步利用聚合酶链式反应(PCR)分别从敏感和抗性小菜蛾基因组DNA中扩增出了位于钠离子通道结构域IIS6的232bp和248bp的DNA片段;与敏感种群相比,南京抗性种群钠离子通道基因存在一个保守性点突变,即C突变为T,并导致亮氨酸突变为苯丙氨酸,表明神经不敏感性是南京小菜蛾对拟除虫菊酯产生高水平抗性的主要机制。  相似文献   

12.
Decreased acetylcholinesterase (AChE) sensitivity and metabolic detoxification mediated by glutathione S-transferases (GSTs) were examined for their involvement in resistance to acephate in the diamondback moth, Plutella xylostella. The resistant strain showed 47.5-fold higher acephate resistance than the susceptible strain had. However, the resistant strain was only 2.3-fold more resistant to prothiofos than the susceptible strain. The resistant strain included insects having the A298S and G324A mutations in AChE1, which are reportedly involved in prothiofos resistance in P. xylostella, showing reduced AChE sensitivity to inhibition by methamidophos, suggesting that decreased AChE1 sensitivity is one factor conferring acephate resistance. However, allele frequencies at both mutation sites in the resistant strain were low (only 26%). These results suggest that other factors such as GSTs are involved in acephate resistance. Expression of GST genes available in P. xylostella to date was examined using the resistant and susceptible strains, revealing no significant correlation between the expression and resistance levels.  相似文献   

13.
Transgenic Bt cotton expressing Cry1Ac is important in controlling various agricultural pests, including Helicoverpa armigera. Especially for transgenic crops that are cultivated in large expanses, avoiding resistance development is a key for ensuring sustainability of Bt technologies. Integrated pest management, in which transgenic crops are strategically combined with rational pesticide use, may help to prevent H. armigera resistance acquisition in Bt cotton. In this study, we evaluated the toxicity of a novel insecticide (chlorantraniliprole) on Cry1Ac-susceptible and resistant individuals of H. armigera. More specifically, we assessed the effect of chlorantraniliprole on the activity of two enzymes and conducted laboratory bioassays to determine its toxicity on H. armigera larvae. Chlorantraniliprole increased esterase and glutathione-S-transferase activities in Cry1Ac susceptible and resistant populations of H. armigera. Cry1Ac resistant populations XJ-F (Cry1Ac resistance ratio 21.8-fold), XJ-10.0 (95.8-fold) and BTR (3536.5-fold) did not show cross-resistance to chlorantraniliprole, with LC50 values of 0.0733 (μg/mL) in XJ-F, 0.0545 (μg/ml) in XJ-10.0 and 0.0731 (μg/mL) in BTR, which were close to that in the susceptible strain 96S (0.0954 μg/mL). Our work shows that chlorantraniliprole could be considered to be integrated in Bt cotton management schemes to delay the H. armigera resistance development.  相似文献   

14.
BACKGROUND: The diamondback moth (DBM), Plutella xylostella (L.), is a cosmopolitan pest of cruciferous crops. Fufenozide, a novel non‐steroidal ecdysone agonist, exhibits good efficacy and plays an increasingly important role in the control of Lepidopterous pests in China. A laboratory strain of DBM was selected for resistance to fufenozide, and the genetic basis of resistance was studied. RESULTS: The resistant strain, selected under laboratory conditions, exhibited a higher level of resistance to fufenozide (302.8‐fold based on LC50s) than the laboratory susceptible strain. Mortality data from the testing of F1 progeny of reciprocal crosses of resistant and susceptible DBM indicated that resistance was autosomal and incompletely recessive with a degree of dominance of ?0.664. Chi‐square analysis from responses of a backcross of crossed F1 progeny and the resistant strain and F2 progeny were highly significant, suggesting that the resistance was probably controlled by more than one gene. The estimated realised heritability (h2) of fufenozide resistance was 0.08, indicating that diamondback moth may have a lower chance of developing resistance to fufenozide than other kinds of insecticide. CONCLUSION: The resistance of DBM to fufenozide might be autosomal and incompletely recessive, and the resistance is probably controlled by more than one gene. These results provide the basic information for pest management programmes. Copyright © 2009 Society of Chemical Industry  相似文献   

15.
邢静  梁沛  高希武 《农药学学报》2011,13(5):464-470
采用叶片药膜法,使用亚致死浓度(LC10、LC25)的氯虫苯甲酰胺对小菜蛾Plutella xylostella(L.)3龄幼虫连续处理5代后,试虫对氯虫苯甲酰胺的敏感度分别比敏感品系下降了57.3% 和67.7%,同时对多杀菌素的敏感度也分别下降了60.2% 和51.5%,但对毒死蜱和高效氯氰菊酯的敏感度变化不明显。采用该浓度的氯虫苯甲酰胺分别处理小菜蛾3龄幼虫24、48和72 h,可诱导其羧酸酯酶(CarE)比活力上升,但对细胞色素P450 O-脱乙基酶(ECOD)、谷胱甘肽S-转移酶(GSTs)和芳基酰胺酶(AA)有明显的抑制作用;连续处理5代后,小菜蛾CarE和ECOD的比活力显著高于对照组,分别为对照组的1.16、1.40倍和1.65、1.56倍,但GSTs和AA的比活力则分别比对照下降了11.0%、27.5%和43.6%、52.5%。结果表明,小菜蛾对氯虫苯甲酰胺产生抗性的风险较高;羧酸酯酶和多功能氧化酶可能与小菜蛾对氯虫苯甲酰胺的敏感度下降有关。  相似文献   

16.
新疆地区棉铃虫自然种群对Bt棉的抗性频率监测   总被引:1,自引:0,他引:1  
为监测新疆棉区棉铃虫Helicoverpa armigera(Hübner)田间种群对Bt棉的抗性频率,在2010年和2011年分别采集石河子和喀什地区莎车的棉铃虫单雌系,以Cry1Ac毒蛋白作为人工饲料,用单雌系F1/F2代法进行棉铃虫种群抗性个体检测。2010年筛选了123个石河子的棉铃虫单雌系,2 011年筛选了152个莎车的棉铃虫单雌系。两地的棉铃虫种群均没有筛选到相对平均发育级别≥0.8的抗Bt棉个体,估算出石河子和莎车的棉铃虫种群的抗性频率低于10-3。莎车F2单雌系与其对应的F1单雌系相对平均发育级别有明显差异。研究表明新疆石河子地区田间棉铃虫种群仍保持敏感状态,喀什地区田间棉铃虫种群对Bt棉的耐受性增高。  相似文献   

17.
A population of Amaranthus powellii that had survived imazethapyr did not have any of the documented AHAS mutations causing resistance in this species in Ontario. The goal of this research was to confirm resistance in this population, determine its molecular basis and develop diagnostic tests. Whole plant dose-response experiments showed the resistant population had greater than 25-fold resistance to the selective agent imazethapyr at the whole plant level. Whole plant resistance to other herbicides ranged between 9-fold to flumetsulam and 85-fold to flucarbazone. This was confirmed at the enzyme level with resistance ranging between 25-fold to imazethapyr and 485-fold to thifensulfuron. AHAS from the resistant population had 16% higher specific activity than that of the susceptible population and it was also less sensitive to feedback inhibition by valine, leucine and isoleucine. Genomic DNA was extracted to PCR amplify and sequence the AHAS gene and to determine the applicability of diagnostic tests. Sequencing of the AHAS gene revealed a single point mutation of thymine1125 to guanine coding for an Asp376Glu substitution. Two different diagnostic tests, restriction fragment length polymorphism and PCR amplification of specific allele, were able to correctly identify the resistant population from the susceptible control and from other resistant populations. Although this mutation appears to confer higher resistance to pyrithiobac and flucarbazone, two herbicides not registered in Eastern Canada, it endows plants with enough protection to allow survival to imazethapyr, the main selective agent in Ontario.  相似文献   

18.
A field population of the rice stem borer (Chilo suppressalis Walker) with 203.3-fold resistance to triazophos was collected. After 8-generation of continuous selection with triazophos in laboratory, resistance increased to 787.2-fold, and at the same time, the resistance to isocarbophos and methamidophos was also enhanced by 1.9- and 1.4-fold, respectively, implying some cross-resistance between triazophos and these two organophosphate insecticides. Resistance to abamectin was slightly enhanced by triazophos selection, and fipronil and methomyl decreased. Synergism experiments in vivo with TPP, PBO, and DEM were performed to gain a potential indication of roles of detoxicating enzymes in triazophos resistance. The synergism results revealed that TPP (SR, 1.92) and PBO (SR 1.63) had significant synergistic effects on triazophos in resistant rice borers. While DEM (SR 0.83) showed no effects. Assays of enzyme activity in vitro demonstrated that the resistant strain had higher activity of esterase and microsomal O-demethylase than the susceptible strain (1.20- and 1.30-fold, respectively). For glutathione S-transferase activity, no difference was found between the resistant and the susceptible strain when DCNB was used as substrate. However, 1.28-fold higher activity was observed in the resistant strain when CDNB was used. These results showed that esterase and microsomal-O-demethylase play some roles in the resistance. Some iso-enzyme of glutathione S-transferase may involve in the resistance to other insecticides, for this resistant strain was selected from a field population with multiple resistance background. Acetylcholinesterase as the triazophos target was also compared. The results revealed significant differences between the resistant and susceptible strain. The Vmax and Km of the enzyme in resistant strain was only 32 and 65% that in the susceptible strain, respectively. Inhibition tests in vitro showed that I50 of triazophos on AChE of the resistant strain was 2.52-fold higher. Therefore, insensitive AChE may also involved in triazophos resistance mechanism of rice stem borer.  相似文献   

19.
Fipronil resistance mechanisms were studied between the laboratory susceptible strain and the selective field population of rice stem borer, Chilo suppressalis Walker in the laboratory. The borer population was collected from Wenzhou county, Zhejiang province. After five generations of selection, fipronil resistance ratio was 45.3-fold compared to the susceptible strain. Synergism experiments showed that the synergistic ratios of PBO, TPP and DEF on fipronil in susceptible and resistant strains of C. suppressalis were 7.55-, 1.93- and 2.91-fold, respectively, and DEM showed no obvious synergistic action on fipronil. Activities of carboxylesterase and microsomal-O-demethylase in the resistant strain were 1.89- and 1.36-fold higher that in susceptible strain, and no significant difference of glutathione-S-transferase activity was found between the resistant and susceptible strains. The Km and Vmax experiments also demonstrated that fipronil resistance of C. suppressalis was closely relative to the enhanced activities of carboxylesterase and microsomal-O-demethylase. Moreover, cross-resistance between fipronil and other conventional insecticides and the multiple resistant properties of the original Wenzhou’s population were also discussed.  相似文献   

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