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1.
筛选对靶标害虫高效的Bt杀虫蛋白、评价蛋白组合对靶标害虫的杀虫作用,对于转基因抗虫新品种的研发具有重要的指导意义。本文采用人工饲料混合法评价了Cry1Ab、Cry1Fa、Cry1Ca、Cry1Ba、Cry2Aa、Vip3Aa11、Vip3Aa20、Vip3Aa19共8种Bt杀虫蛋白对亚洲玉米螟的毒力;同时评估了Cry1Ab/Vip3Aa19、Cry1Fa/Vip3Aa19混合蛋白对亚洲玉米螟的杀虫作用,筛选出毒力最佳的组合比例。结果表明:Cry1Ab、Cry1Fa、Cry2Aa对亚洲玉米螟的LC50在0.24~0.72μg/g之间,其中Cry1Ab的毒力最强,显著高于Cry1Fa和Cry2Aa蛋白,Cry1Fa与Cry2Aa毒力无显著性差异。Cry1Ca、Cry1Ba、Vip3Aa11、Vip3Aa20、Vip3Aa19对亚洲玉米螟的LC50均大于50μg/g。当Cry1Ab/Vip3Aa19、Cry1Fa/Vip3Aa19混合比例为1∶1时,增效作用最强,增效因子分别为3.18和1.58。本研究结果为多价转基因玉米的研发提供了重要依据。  相似文献   

2.
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   

3.
对黏虫具有杀虫活性的Bt蛋白筛选及分析   总被引:1,自引:0,他引:1  
为筛选对黏虫[Mythimna separata(Walker)]具有毒杀作用的苏云金芽胞杆菌杀虫蛋白,本研究提取Cry1类、Cry2类、Cry9类及Vip3A类等11种蛋白,通过人工饲料喂毒方法对黏虫进行生物活性测定。结果表明,Cry1Ac、Cry1Ab、Cry2Ab、Cry1Be及Cry1Bb蛋白对黏虫具有杀虫活性,其致死中浓度依次为5.09、17.71、26.75、27.42及43.93μg/g;Cry9Aa、Cry9Eb、Cry9Ee蛋白对黏虫生长具有抑制作用,其浓度为10μg/g时的体重抑制率分别为78.4%、79.0%、86.9%,浓度为100μg/g时的体重抑制率分别为92.8%、95.7%、96.7%;Cry1Ba、Cry1Ca和Vip3Aa蛋白对黏虫无显著活性。本研究为黏虫的生物防治奠定了基础,并为抗虫转基因作物的研究提供优良的候选基因。  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.
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   

6.
Cry9Ee是近年来发现的对亚洲玉米螟Ostrinia furnacalis(Guenée)等害虫具有高毒力的蛋白,具有良好的应用前景。为了明确亚洲玉米螟对Cry9Ee和Cry1Ab蛋白是否存在交互抗性,本文首先分别表达、活化、纯化了Cry9Ee和Cry1Ab蛋白,进而对敏感和Cry1Ab抗性亚洲玉米螟进行生物活性测定;随后对2种蛋白在敏感亚洲玉米螟中肠刷状缘膜囊泡(brush border membrane vesicles,简称BBMVs)上的结合进行分析比较。生物活性测定结果表明,Cry9Ee和Cry1Ab蛋白的活性片段对敏感亚洲玉米螟的LC50分别为3.04和0.89 μg/g;而Cry9Ee活性片段在5.00 μg/g的浓度下,对Cry1Ab蛋白抗性亚洲玉米螟致死率高达96%,与对敏感种群活性相当。竞争结合试验表明,Cry9Ee和Cry1Ab两种蛋白间不存在竞争结合,推测它们在亚洲玉米螟中肠上存在不同的受体。综合生物活性测定及体外结合试验两方面结果得出结论:亚洲玉米螟对Cry9Ee与Cry1Ab蛋白不存在交互抗性。cry9Ee基因可以作为理想的候选基因,用于我国新一代转基因抗虫玉米的研制,为延缓和克服亚洲玉米螟对转基因抗虫玉米抗性的产生提供重要保证。  相似文献   

7.
为评估草地贪夜蛾Spodoptera frugiperda对国产Bt玉米的抗性风险,基于抗性风险分析模型对草地贪夜蛾在3种Bt玉米和2种庇护所条件下的抗性时间进行预测分析。结果显示,无论是采用种子混合庇护所还是结构化庇护所,草地贪夜蛾对Cry1Ab+Vip3Aa-玉米的抗性时间均远长于对Vip3Aa-玉米和Cry1Ab-玉米的抗性时间。在Bt与非Bt植株之间存在异花授粉和幼虫转移的条件下,采用种子混合庇护所的抗性时间较采用结构化庇护所的抗性时间大大缩短。以采用Cry1Ab+Vip3Aa-玉米和比例为0.20的庇护所为例,当异花授粉Bt显性度为0.5、幼虫转移概率为0.95时,采用结构化庇护所的抗性时间超过200代,而采用种子混合庇护所的抗性时间只有59代。结果表明,草地贪夜蛾对Cry1Ab-玉米的抗性风险远大于对Cry1Ab+Vip3Aa-玉米的抗性风险,而种子混合庇护所条件下的抗性风险远大于结构化庇护所条件下的抗性风险。  相似文献   

8.
水稻白叶枯病抗性杂种优势   总被引:2,自引:0,他引:2  
 本试验采用双列式杂交方法,观察了以IR26、IR36等为代表的抗性品种的杂交优势。结果表明:杂交组合F1代在分蘖末期抗性无优势,穗期抗性优势明显;F2代两期鉴定正负向均有优势;F1和F2代均表现出正负向完全显性,部份显性,少数组合无显性。其中大都属于部份显性。优势指数分析也证明,对抗性亲本,优势指数d ≥ 1;对感病亲本,优势指数d<1。抗感品种杂交,其子代的抗性一般界于双亲值之间。这种优势可依亲本的抗性进行预测。  相似文献   

9.
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   

10.
筛选对靶标害虫高效、低毒的Bt蛋白对未来开发新型Bt生物杀虫剂、转基因抗虫植物新品种等具有重要意义。我们在室内测定了Cry2Ab4、Cry2Ah1、Cry1Ca7及Vip3Aa11四种Bt蛋白对棉铃虫、甜菜夜蛾、斜纹夜蛾、黏虫、玉米螟、二化螟的杀虫效果。结果表明,Cry2Ab4杀虫谱广、对六种鳞翅目的重要害虫都具有很高的杀虫效果,尤其是对棉铃虫、甜菜夜蛾、斜纹夜蛾和玉米螟的毒力效果显著;Cry2Ah1对斜纹夜蛾、甜菜夜蛾具有很好的致死作用,对棉铃虫、玉米螟和二化螟也具有较好的杀虫效果,但对黏虫只有明显的体重抑制作用、致死效果不明显;Cry1Ca7对甜菜夜蛾和斜纹夜蛾有明显的防治效果,其次对棉铃虫、二化螟也有较好的杀虫作用,但对玉米螟毒力效果较差,对黏虫没有毒力作用;Vip3Aa11对甜菜夜蛾和斜纹夜蛾的防治效果好,对玉米螟、棉铃虫和二化螟有较好的防治效果,但对黏虫没有毒力作用。  相似文献   

11.
A greater number of, and more varied, modes of resistance have evolved in weeds than in other pests because the usage of herbicides is far more extensive than the usage of other pesticides, and because weed seed output is so great. The discovery and development of selective herbicides are more problematic than those of insecticides and fungicides, as these must only differentiate between plant and insect or pathogen. Herbicides are typically selective between plants, meaning that before deployment there are already some crops possessing natural herbicide resistance that weeds could evolve. The concepts of the evolution of resistance and the mechanisms of delaying resistance have evolved as nature has continually evolved new types of resistance. Major gene target‐site mutations were the first types to evolve, with initial consideration devoted mainly to them, but slowly ‘creeping’ resistance, gradually accruing increasing levels of resistance, has become a major force owing to an incremental accumulation of genetic changes in weed populations. Weeds have evolved mechanisms unknown even in antibiotic as well as other drug and pesticide resistances. It is even possible that cases of epigenetic ‘remembered’ resistances may have appeared. Copyright © 2009 Society of Chemical Industry  相似文献   

12.
A transgenic Phytophthora infestans strain that constitutively produces and secretes -glucuronidase (GUS) was used in detached leaf assays to quantify the levels of resistance to late blight in potato cultivars Surprise, Irene, Pimpernel, Alpha and Bintje. Four days after inoculation levels of GUS activity were determined in infected leaves. Significant differences between the various cultivars were observed. Discrimination between resistant and susceptible cultivars was possible based solely on levels of GUS activity. Regression analysis revealed a positive correlation between in planta GUS levels and field resistance expressed as Area under Disease Progress Curve (ADPC).  相似文献   

13.
西花蓟马抗药性研究进展   总被引:5,自引:0,他引:5  
西花蓟马是世界范围内蔬菜和花卉上的重要害虫之一,使用化学药剂是防治西花蓟马的主要手段,目前西花蓟马已对有机氯、有机磷、氨基甲酸酯、拟除虫菊酯、阿维菌素和多杀菌素等多种杀虫剂产生了抗药性。本文从抗药性现状、抗性机制和抗性治理等几个方面介绍了国内外有关西花蓟马抗药性的研究进展。  相似文献   

14.
Since the 1950s, pesticide resistance has been identified in many species. This paper considers the role of resistance action groups and notes that they were all formed in response to resistance problems occurring. Data now exist on the strategies which are most effective and the paper aims to bring together information from the fields of weeds, pests and diseases. Pesticide mixtures, sequences or rotations have been demonstrated as having a clear role in resistance management strategies. Resistance management would be improved if there was agreement on uniform test methodology and interpretation of results. The industry must work together to agree what constitutes an anti-resistance strategy, whether this is for prevention or cure, and to ensure that this is then included within regulatory frameworks. Future developments such as patch treatment, biotechnology and biocontrol are discussed. It is concluded that, to date, there has been little discussion between specialists in the field of resistance to herbicides, fungicides or insecticides and it is clear there are significant advantages to be had from more interaction. ©1997 SCI  相似文献   

15.
蔬菜蚜虫抗药性现状及抗性治理策略   总被引:4,自引:0,他引:4  
蚜虫是为害蔬菜作物的一类重要害虫,如不防治会给蔬菜生产造成重大经济损失。长期以来主要依靠使用农药防治蔬菜蚜虫,但由于化学农药的不合理使用,蔬菜蚜虫对有机磷、拟除虫菊酯、氨基甲酸酯、新烟碱等多种类型的杀虫药剂均产生了不同程度的抗性。本文对常见的蔬菜蚜虫的抗药性现状、抗药性机理以及治理策略进行了论述,以期为该类害虫的可持续控制提供参考。  相似文献   

16.
稻瘟病是危害水稻三大病害之首,水稻稻瘟病诱导抗病性具有持久性、广谱性、安全性、系统性等而对未来水稻稻瘟病的防治发挥巨大的作用。综述近年来国内外水稻诱导抗瘟性的研究进展,对生物及非生物诱导因子和诱导机理的三个方面进行了介绍,并提出对现在一些研究不足以及未来的发展方向。  相似文献   

17.
植物病原菌对杀菌剂多药抗性的发生现状   总被引:1,自引:0,他引:1  
近年来, 随着杀菌剂在农作物病害田间防治中的大量使用, 植物病原菌的多药抗性(multidrug resistance, MDR)现象发生越来越普遍。本文综述了在草坪币斑病、灰霉病、小麦叶枯病和苹果青霉病等病害防治中, 病原菌对杀菌剂多药抗性发生的情况。以及在紫外诱导和杀菌剂离体驯化下, 致病疫霉Phytophthora infestans、立枯丝核菌Rhizoctonia solani、指状青霉Penicillium digitatum的多药抗性发生情况。分析了导致植物病原菌多药抗性产生的外排转运蛋白过表达、解毒酶代谢和靶标位点变化等相关机制, 并在此基础上提出了多药抗性预防和治理的策略, 以期为田间杀菌剂的高效利用, 延缓药剂的抗性风险提供科学参考。  相似文献   

18.
BACKGROUND: Bromus rigidus is a common weed species that has increased in cropping fields owing to limited control options. During a random field survey in Western Australia, six B. rigidus populations that had survived in‐crop weed control programmes were collected. The study aimed to determine the resistance profile of these six populations. RESULTS: Based on dose–response studies, all six B. rigidus populations had a low‐level resistance to sulfosulfuron and sulfometuron (both sulfonylurea herbicides) while remaining susceptible to herbicides with other modes of action. ALS in vitro activity assays revealed no differences in enzyme sensitivity between susceptible and resistant populations, while the use of malathion (a cytochrome P450 inhibitor) in combination with sulfosulfuron caused the resistant populations to behave like the susceptible population. CONCLUSION: This study established that these six B. rigidus populations have a low‐level resistance to the ALS‐inhibiting sulfonylurea herbicides, but are able to be controlled by other herbicide modes of action. The low‐level, malathion‐reversible resistance, together with a sensitive ALS, strongly suggest that a non‐target‐site enhanced metabolism is the mechanism of resistance. Copyright © 2012 Society of Chemical Industry  相似文献   

19.
Resistance to fungicides is an evolutionary process resulting from the selection of advantageous genotypes in naturally diverse populations. Seven fungicide modes of action are authorised to control grey mould caused by Botrytis cinerea on grapevine in France, and five of them have encountered specific resistance, with variable frequencies in populations and possible consequences for field fungicide efficacy. Moreover, multidrug resistance is caused by fungicide efflux and allows a weak resistance towards six unrelated modes of action. Here, a review is given of the fungicide resistance status of B. cinerea in France, particularly in the vineyards of Champagne, which are the most affected. Recently developed resistance and recent findings concerning the associated resistance mechanisms are focused upon in particular. Finally, antiresistance strategies are presented, and examples of managed resistance are discussed in a more general manner with the aim of extending this knowledge to other crops and countries undergoing similar resistance problems. © 2013 Society of Chemical Industry  相似文献   

20.
嘧菌酯在我国登记情况以及抗性研究现状   总被引:1,自引:0,他引:1  
嘧菌酯是先正达公司于1997年上市的甲氧基丙烯酸酯类杀菌剂,它具有广谱、高效、安全的特点,自上市以来占有较大的市场份额。随着国外产品专利保护到期,我国掀起一阵注册热潮。但由于其作用为点单一,在使用过程中抗性问题日益严重。本文对嘧菌酯近年来登记情况、抗性发展研究状况、抗性产生机制以及治理措施进行了简要论述。希望为以后嘧菌酯的登记注册以及合理使用提供全面客观的依据。  相似文献   

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