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1.
Cry1Ac和Cry2Ab蛋白对大草蛉生长发育及酶活力的影响   总被引:2,自引:0,他引:2  
为明确转Cry1AcCry2Ab基因棉花对大草蛉的影响,运用Bt蛋白与人工饲料混合的方法,以大于转基因棉花叶片中蛋白含量20倍的剂量饲喂大草蛉初孵幼虫,初步研究了Cry1Ac和Cry2Ab对大草蛉生物学参数和消化酶、解毒酶活性的影响。结果表明:取食含Bt蛋白饲料的大草蛉幼虫的发育历期、体重、蛹重、成虫体重、羽化率等生物学参数与对照相比均没有显著差异;在大草蛉幼虫体内可以检测到含量较高的Cry1Ac和Cry2Ab蛋白,分别为974.92~1 282.39 ng/g鲜重和5 592.62~6 082.92 ng/g鲜重,而在大草蛉成虫体内检测到的Cry1Ac和Cry2Ab蛋白含量非常低,分别为0.29~0.39 ng/g鲜重和50.34~56.71 ng/g鲜重;取食含Bt蛋白的饲料对大草蛉幼虫的类胰蛋白酶、类胰凝乳蛋白酶、氨肽酶和谷胱甘肽-S-转移酶活性有一定的影响,但对大草蛉成虫影响与对照差异不显著。表明大草蛉取食含Bt蛋白的人工饲料后,虽然体内可以检测到一定含量的Bt蛋白,但对大草蛉的生长发育并没有显著的直接不利影响。  相似文献   

2.
非靶标生物在转基因抗虫作物的环境安全性评价中具有非常重要的地位。本研究系统评估了新型Bt杀虫蛋白Cry1Ah对多异瓢虫幼虫、成虫和日本通草蛉成虫各项生物学指标的影响。结果表明,取食体表布满Cry1Ah蛋白的桃蚜后,多异瓢虫幼虫存活率、幼虫历期、蛹历期、体质量、雌雄成虫寿命、雌虫产卵量与对照相比均差异不显著。日本通草蛉成虫取食含有Cry1Ah蛋白的蜂蜜水后,雌雄成虫寿命、雌虫产卵量与对照间均差异不显著。因此,Cry1Ah蛋白对多异瓢虫和日本通草蛉的各项生命指标无显著的不利影响,这为转Cry1Ah基因抗虫棉花商业化释放前的安全性评价提供重要的技术支撑。  相似文献   

3.
入侵云南草地贪夜蛾种群对5种常用Bt蛋白的敏感性评价   总被引:2,自引:0,他引:2  
草地贪夜蛾Spodoptera frugiperda(J. E. Smith)是原分布于美洲大陆热带和亚热带地区的一种重要玉米害虫。在当地,种植抗虫转基因玉米是防控草地贪夜蛾危害的主要手段。该虫于2019年1月入侵我国云南省,为明确入侵我国云南的草地贪夜蛾种群对常用Bt蛋白的敏感性水平,本文通过饲料表面涂抹法测定了瑞丽草地贪夜蛾幼虫对Cry1Ab、Cry1Ac、Cry1F、Cry2Ab以及Vip3A等5种Bt蛋白的敏感性。结果表明:几种常用Bt蛋白对瑞丽草地贪夜蛾致死作用顺序为Vip3A>Cry1Ab>Cry1F>Cry2Ab>Cry1Ac,对草地贪夜蛾抑制生长发育的顺序为Cry1Ab>Cry1F>Vip3A>Cry1Ac>Cry2Ab。此外,与美国相对敏感种群比较,云南瑞丽草地贪夜蛾种群对Cry1Ab、Cry1Ac、Cry1F、Cry2Ab和Vip3A的敏感性指标在0.28~3.76之间,表明该入侵种群对此5种Bt蛋白均未产生抗性。此研究可为将来建立以转Bt基因玉米作为防控草地贪夜蛾的技术体系提供依据。  相似文献   

4.
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   

5.
以黏虫[〖WTBX〗Mythimna separata〖WTBZ〗 (Walker)]为寄主,研究了亚致死浓度的Bt杀虫蛋白Cry1Ab对淡足侧沟茧蜂[〖WTBX〗Microplitis pallidipes 〖WTBZ〗(Szepligeti)]生长发育的影响。结果表明,当寄主从淡足侧沟茧蜂寄生后开始取食含Cry1Ab杀虫蛋白浓度为1、2、4 μg/g和 8 μg/g的饲料时,淡足侧沟茧蜂卵 幼虫发育历期比以对照黏虫为寄主的显著延长,茧(蛹)重和成虫体重显著下降,但对茧历期及成虫寿命没有显著影响。淡足侧沟茧蜂的卵 幼虫发育历期随着寄主取食Cry1Ab杀虫蛋白浓度的增加而显著延长,茧重和成虫体重则随Bt蛋白浓度的上升而显著下降。因此,尽管Cry1Ab杀虫蛋白对淡足侧沟茧蜂的生长发育具有一定程度的负面影响,但其仍可以在取食Bt毒蛋白的黏虫上完成整个世代发育。  相似文献   

6.
评价转Bt基因玉米对靶标生物亚洲玉米螟的杀虫作用是转基因玉米研发的重要一环。本文采用室内生测法对3种转Bt基因抗虫玉米‘瑞丰125’(表达Cry1Ab/Cry2Aj杀虫蛋白),‘DBN9936’‘DBN9978’(表达Cry1Ab杀虫蛋白)对亚洲玉米螟敏感品系ACB-S及抗Cry1Ab品系ACB-AbR、抗Cry1Ac品系ACB-AcR、抗Cry1F品系ACB-FR、抗Cry1Ah品系ACB-AhR、抗Cry1Ie品系ACB-IeR的杀虫活性进行测定,同时采用心叶期和抽丝期人工接虫法进行田间抗虫效果鉴定。结果表明,取食3种Bt玉米的ACB-S幼虫, 3 d死亡率100%,而取食对照常规玉米3 d存活率100%。取食3种Bt玉米的5个抗性品系幼虫除ACB-AbR和ACB-AcR有2%~6%的个体存活4~5 d, 6 d死亡率也达到了100%,其余品系均在3 d全部死亡,而取食对照玉米5~6 d的死亡率仅为4%~14%,差异显著。田间心叶期食叶级别及穗期活虫数、雌穗被害和茎秆被蛀等为害等级说明3种Bt玉米高抗亚洲玉米螟。明确了‘瑞丰125’‘DBN9936’和‘DBN9978’对亚洲玉米螟有很高的杀虫活性和田间防治效果。5个Bt蛋白抗性亚洲玉米螟品系幼虫在常规玉米上显示一定的适合度劣势。  相似文献   

7.
为更好地了解苏云金芽胞杆菌Bacillus thuringiensis毒素蛋白对二点委夜蛾Athetis lepigone的毒力以及作用机理,通过饲喂含有Cry1Ac、Cry1Ab、Cry2Ab和Vip3Aa四种不同Bt毒素蛋白饲料,测定Bt毒素蛋白对二点委夜蛾幼虫的毒力,并观察取食4种毒素蛋白后幼虫中肠组织的病理学变化。结果显示,二点委夜蛾幼虫取食毒素蛋白后72 h,Cry1Ab和Cry1Ac毒素蛋白对二点委夜蛾幼虫的杀虫活性较高,校正死亡率为84.7%和76.4%;Vip3Aa和Cry2Ab毒素蛋白的毒力较弱。二点委夜蛾幼虫取食4种Bt毒素蛋白后,中肠柱状细胞微绒毛脱落,杂乱地分散在肠腔内,杯状细胞变形和腔内微绒毛脱落,线粒体和内质网等变形破裂,细胞核的核膜消失、核质凝聚和形状发生变化,经Cry1Ab和Cry1Ac毒素蛋白处理后中肠细胞的病变症状和速度明显高于Cry2Ab和Vip3Aa毒素蛋白处理。表明Cry1Ab和Cry1Ac毒素蛋白对二点委夜蛾幼虫杀虫活性较高,显著高于Cry2Ab和Vip3Aa毒素蛋白,且对其中肠细胞的破坏作用也较强。  相似文献   

8.
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   

9.
为治理小地老虎的危害,研究了Bt杀虫蛋白对小地老虎幼虫的控制作用.室内生物测定结果表明,Cry2Ab杀虫蛋白对小地老虎初孵幼虫的致死效果高于Cry1Ac杀虫蛋白.取食含有Cry2Ab杀虫蛋白人工饲料的小地老虎幼虫体内的中肠总蛋白酶和类胰凝乳蛋白酶活性高于对照,当人工饲料中Cry2Ab杀虫蛋白含量达到12μg/g时,小地老虎幼虫中肠氨肽酶活性显著升高;而取食含有Cry1Ac杀虫蛋白人工饲料的小地老虎幼虫中肠蛋白酶活性无显著变化.此外,小地老虎幼虫取食含有Cry2Ab杀虫蛋白的人工饲料后,体内谷胱甘肽-S-转移酶活性显著升高,而取食合有Cry1Ac杀虫蛋白的人工饲料后其变化不明显.  相似文献   

10.
Cry1Ac抗性亚洲玉米螟对四种Bt蛋白的交互抗性   总被引:4,自引:3,他引:1  
种Bt蛋白Cry1Ac、Cry1Ab、Cry1Ah和Cry1Ie对敏感品系ACB-BtS和抗性品系ACB-AcR的毒力,结果显示,ACB-AcR对Cry1Ah的相对抗性倍数达14.9倍,有显著的交互抗性;对Cry1Ab的相对抗性倍数为4.3倍,交互抗性水平较低;对Cry1Ie的相对抗性倍数为0.9,即无交互抗性.4种蛋白对抗、感品系的EC50表明,ACB-AcR品系对Cry1Ac蛋白产生了显著的抗性,相对抗性达到32.6倍,对Cry1Ah和Cry1Ab有低水平的交互抗性,而对Cry1Ie没有交互抗性.  相似文献   

11.
使用苏云金芽胞杆菌库斯塔克亚种(Btk)可湿性粉剂对小菜蛾进行继代汰选获得F80代和F100代抗性品系。通过分别测定Cry1Ab、Cry1Ac、Cry1Ah和Cry1Ca四种杀虫晶体蛋白对小菜蛾Btk抗性品系F80代和F100代的室内毒力,明确了小菜蛾Btk抗性品系对四种Bt杀虫晶体蛋白抗性发展规律。研究结果表明,汰选至F80代时,Cry1Ca对小菜蛾的毒力最高,LC50约12.1 mg/L,其次为Cry1Ac,LC50约47.7 mg/L;而汰选至F100代时,仍以Cry1Ca对小菜蛾的毒力最高,LC50约21.4 mg/L,其次为Cry1Ab,LC50约72.2 mg/L。与相对敏感品系相比,小菜蛾抗性品系对Cry1Ac的抗性发展较快(抗性倍数高达67.3~106.8倍),对Cry1Ab的次之(抗性倍数高达60.0~66.1倍),而对Cry1Ca和Cry1Ah的抗性发展较慢(抗性倍数分别为3.4~6.0倍和1.6~2.5倍)。以上结果说明,在主效杀虫基因为Cry1Ac的Btk药剂选择压力下,小菜蛾对四种Bt杀虫晶体蛋白的抗性发展速度差异较大,且Cry1Ac和Cry1Ab存在交互抗性风险。  相似文献   

12.
Bacillus thuringiensis (Bt) has been used as sprayable pesticides for many decades. Bt strains utilized in these products produce multiple insecticidal proteins to complement a narrow insect specificity of each protein. In the late 1990s, genes encoding Bt insecticidal proteins were expressed in crop plants such as cotton and corn to protect these crops from insect damage. The first Bt protein used in transgenic cotton was Cry1Ac to control Heliothis virescens (tobacco budworm). Cry1Ab was applied to corn to control Ostrinia nubilalis (European corn borer). Since these insects have developed resistance to Cry1Ac and Cry1Ab, new Bt proteins are required to overcome the resistance. In order to protect corn furthermore, it is desired to control Diabrotica virgifera (Western corn rootworm), Helicoverpa zea (corn earworm) and Spodoptera frugiperda (fall armyworm). Recently, many new Bt insecticidal proteins have been discovered, but most of them require protein engineering to meet the high activity standard for commercialization. The engineering process for higher activity necessary for Bt crops is called optimization. The seed industry has been optimizing Bt insecticidal proteins to improve their insecticidal activity. In this review, several optimization projects, which have led to substantial activity increases of Bt insecticidal proteins, are described.  相似文献   

13.
目前对转苏云金芽胞杆菌Bacillus thuringiensis(Bt)的研究发现,液泡型ATP酶(Vacuolar-type proton ATPase,V-ATPase)可能是Bt的一类新型受体。我们前期通过构建棉铃虫的中肠酵母文库筛选Cry1Ac的结合蛋白发现棉铃虫V-ATPase亚基B(V-ATPase B)可以与Cry1Ac结合。为明确V-ATPase B在Cry1Ac毒力和昆虫对Cry1Ac抗性机制中的作用,本研究首先采用实时荧光定量PCR技术分析了该基因在抗感Cry1Ac棉铃虫幼虫中及其受到Cry1Ac诱导时的基因表达情况;通过Ligand blot进一步地证实了其与Cry1Ac的结合特性;并通过在Sf9细胞中表达V-ATPase B的试验验证了其功能。结果表明V-ATPase B在抗性品系及受到Cry1Ac诱导时均下调表达,Ligand blot证实了V-ATPase B与Cry1Ac特异性结合;并且在昆虫细胞内过表达该基因,会增强Cry1Ac的细胞毒力。研究结果表明棉铃虫V-ATPase B是Cry1Ac的功能受体,并有可能通过降低基因表达来参与棉铃虫对Cry1Ac的抗性形成。  相似文献   

14.
Since 1996, transgenic Bacillus thuringiensis(Bt) cotton has been commercially grown in numerous countries in an effort to stem the losses caused by key lepidopteran pests. However, the development of pest resistance to Bt toxins has jeopardized the continued utilization of Bt cotton. As a strategy designed to circumvent the development of resistance, Bt cotton varieties expressing two or more toxins targeting the same pest have been introduced. Nevertheless, from the perspective of long-term planting of Bt cotton, the potential risk of cross-resistance to these Bt toxins is a threat that cannot be ignored. In this paper, we review current research(including that based on the analysis of protein binding sites and resistance genes) on the resistance of cotton bollworm(Helicoverpa armigera) to the Bt toxins Cry1 Ac and Cry2 Ab and the interrelationship between these toxins. On the basis of existing evidence, we assume that the actions of Cry1 Ac and Cry2 Ab against cotton bollworm are not completely independent, and then propose the "resistance-associated gene mutation potential hypothesis". Although the mechanisms underlying the resistance of pests to Bt toxins are yet to be comprehensively elucidated, this hypothesis could undoubtedly have important implications for adopting "pyramid" strategy in the future. Further research is recommended to devise strategies to retard the development of H. armigera resistance to Bt cotton, either using different Bt toxins or their various combinations.  相似文献   

15.
为明确转cry1Ab+cry1C双价抗虫水稻对二化螟的抗性及其杀虫蛋白的时空表达,本研究采用离体水稻组织生测法系统评价了cry1Ab、cry1C、正交cry1Ab+cry1C和反交cry1C+cry1Ab 4种抗虫水稻品系对二化螟的杀虫效果,并用ELISA方法测定了Cry1Ab、Cry1C蛋白在各个抗虫水稻品系中的表达情况。结果显示,二化螟在不同生育期的4种转基因抗虫水稻上取食的叶面积显著低于非转基因对照亲本明恢63。4个转基因抗虫水稻品系在生长前期(苗期、分蘖和拔节期)对二化螟表现极高的杀虫效果,生长后期(孕穗期和成熟期)杀虫效果有所下降。两双价抗虫水稻杀虫效果最好,其次为转cry1Abcry1C水稻。Bt蛋白表达水平随着抗虫水稻生育期的变化而变化,且差异显著;Cry1Ab的蛋白表达量在水稻整个生长期均显著高于Cry1C。Cry1Ab蛋白在单价抗虫水稻叶片和茎杆中均表现出随生育期先升高后下降的趋势,但在双价抗虫水稻中表现出随生育期逐渐下降的趋势。Cry1C蛋白在单、双价抗虫水稻的叶片组织中均表现出逐渐升高的趋势。与单价抗虫水稻相比,双价抗虫水稻中的Cry1Ab、Cry1C的蛋白表达水平并没有表现出显著的降低。因此,双价抗虫水稻不仅能高效防治害虫,还能延缓害虫抗性,在生产上表现出良好的应用前景。该研究结果可望为转Bt基因抗虫作物的环境安全评价提供科学数据和理论依据。  相似文献   

16.
Evolution of resistance by pests is the greatest threat to the continuous success of theBacillus thuringiensis (Bt) toxins used in conventional sprays or in transgenic plants. The most common mechanism of insect resistance to Bt is reduced binding of toxins to target sites in the brush border membrane of the larval mid-gut. In this paper, binding experiments were performed with three 125I-Cry1A toxins and the brush border membrane vesicles from Cry1Ac resistant or susceptible strains of Helicoverpa armigera. The homologous competition test showed that there was no significant difference in Cry1Ac-binding affinity, but the concentration of Cry1Ac-binding sites dramatically decreased in the resistant strain (Rt decreased from 5.87 ± 1.40 to 2.23 ± 0.80). The heterologous competition test showed that there were three Cry1Ac-binding sites in the susceptible strain. Among them, site 1 bound with all three Cry1A toxins, site 2 bound with both Cry1Ab and Cry1Ac, and site 3 only bound with Cry1Ac. In the Cry1Ac resistant strain, the binding capability of site 1 with Cry1Ab decreased and site 2 did not bind with Cry1Ac. It is suggested that the absence of one binding site is responsible for H. armigera resistance to Cry1Ac. This result also showed that the resistance fitted the “mode 1” pattern of Bt resistance described previously.  相似文献   

17.
苏云金芽孢杆菌cry基因在大肠杆菌中表达产物和生物活性   总被引:4,自引:0,他引:4  
研究了几种Bt cry基因于大肠杆菌(Escherichia coli)中表达产物在pH 10.0的50mmol/L碳酸钠和20mmol/L乙醇胺溶解液中的溶解性 ,发现同样的Cry蛋白在碳酸钠中的溶解度大于乙醇胺。通过胰蛋白酶消化 ,明确Cry1Ca7、Cry1Ia8酶解产物为 38kD多肽 ;Cry1Ie1、Cry1Cb2、Cry2Ab4酶解产物为 41kD多肽 ;Cry1Ac酶解产物为60kD多肽。采用FPLC层析方法对 6种原毒素及其酶解后得到的毒素多肽进行了分离纯化 ,比较了原毒素和毒素的杀虫活性的差异。其结果表明 ,Cry1Ac的原毒素和毒素对棉铃虫初孵幼虫的校正死亡率均为 100% ,Cry2Ab4的原毒素的毒力高于其酶解毒素。  相似文献   

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