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1.
棉铃虫Helicoverpa armigera(Hübner)是转Bt基因棉花(Bt棉)最重要的靶标害虫之一。害虫对Bt棉的抗性问题是Bt棉产业持续健康发展的最主要威胁。规避行为可以减少害虫与Bt棉的接触而降低生理抗性选择压力。在本研究中,通过比较棉铃虫对Bt棉与常规棉的行为反应评估了棉铃虫对Bt棉的行为规避能力。产卵选择结果显示,棉铃虫成虫在Bt棉上的落卵量显著低于常规棉。幼虫实验结果显示,棉铃虫初孵幼虫在Bt棉植株上的居留时间显著短于在常规棉上的居留时间。无选择条件下,1龄幼虫在对Bt棉叶的取食空洞数以及总取食量均显著低于常规棉叶。综合以上的结果,认为棉铃虫对Bt棉具有一定的行为规避能力,这可能是延缓棉铃虫对Bt棉产生抗性的因素之一。本研究能够帮助有效地预测靶标害虫对Bt作物的抗性风险。  相似文献   

2.
汪飞  徐静  封红兵  张青文 《昆虫知识》2003,40(2):131-135
棉铃虫Helicoverpaarmigera高龄幼虫取食转Bt基因棉花组织后 ,化蛹率、羽化率、蛹重、体长均有显著下降 ,在转Bt基因棉花上棉铃虫的取食行为也受到较大的影响 ,表现为取食次数明显减少、吐丝下垂次数明显增加 ;无论是转Bt基因棉花还是常规棉花 ,棉铃虫 3龄幼虫主要分布于繁殖器官上 ,在转Bt基因棉花各繁殖器官上的分布概率为 :花 >棉铃 >棉蕾 ,常规棉花上分布概率为 :棉蕾 >棉铃 >花 ;棉铃虫高龄幼虫取食转Bt基因棉花各组织 ,成虫羽化后产卵量、卵孵化率均有明显下降 ;在较低的棉铃虫虫口密度下 ,转Bt基因棉花对棉铃虫有一定的产卵排趋性。  相似文献   

3.
在棉铃虫HelicoverpaarmigeraH櫣bner人工饲料中分别添加转Bt基因棉叶粉和常规棉叶粉饲喂幼虫,经滞育诱导后,发现2个处理间棉铃虫蛹的滞育率相似,2个处理间滞育蛹的自由水和结合水含量没有差异;但取食含Bt棉叶粉人工饲料的棉铃虫滞育蛹的过冷却点和结冰点显著高于对照组,蛹重及与抗寒性有关的脂肪和糖原含量均显著低于对照组。  相似文献   

4.
抗Bt棉棉铃虫幼虫Bt受体氨肽酶N(APN2)基因克隆   总被引:7,自引:0,他引:7  
通过对Bt棉抗性和敏感棉铃虫幼虫中肠氨肽酶N的克隆和测序 ,鉴定了氨肽酶N基因家族的 1个成员Haapn2 ,其cDNA序列具有 3209个核苷酸 ,含有 3096bp的开放阅读框 ,编码产生1032个氨基酸的蛋白质。其推定氨基酸序列具有锌结合模体HEXXHX18E ,N-末端具有 1 7个氨基酸的疏水性信号序列 ,C-末端还具有 2 2个氨基酸的糖基磷酯酰肌醇 (GPI)添加信号肽。比对抗性和敏感棉铃虫cDNA的开放阅读框 ,抗性品系的开放阅读框中 ,有 5 7个点突变 ,共导致了 1 5个氨基酸的改变 ,其中 2个突变 (谷氨酰胺137→谷氨酸、缬氨酸137→苏氨酸 )位于Cry1A毒素结合区域 ,可能与棉铃虫对转Bt基因棉产生抗性有关。报道的氨肽酶cDNA序列已提交GenBank ,AY346383和AY2 795 35分别是Bt抗性和敏感品系的Haapn2。  相似文献   

5.
2000年7月中旬和8月中旬, 分别测定了采自田间的转CpTI-Bt基因双价抗虫棉(SGK321, 以下简称CpTI-Bt棉)和转Bt基因抗虫棉(中30,以下简称Bt棉)对棉铃虫Helicoverpa armigera幼虫存活、生长的影响。结果表明:7月中旬两种转基因抗虫棉抗虫效果均较好,尤其是CpTI-Bt棉棉叶和花瓣对4龄幼虫3天内致死率为92%以上;8月中旬两种转基因棉的抗虫活性均明显降低,且Bt棉的杀虫活性显著低于CpTI-Bt棉,其幼虫死亡率与对照受体棉中16的死亡率之间无显著差异,仅显著抑制了幼虫的生长;石远321(SGK321受体品系)的花瓣具有一定的抗虫活性,可显著降低取食幼虫的体重,甚至造成部分幼虫死亡; CpTI-Bt棉中,花瓣和棉叶的抗虫性明显高于蕾和铃心。对5龄幼虫取食棉铃1日后的营养指标测定结果显示: 两种转基因抗虫棉处理的幼虫相对生长率和相对取食量均显著低于石远321,但两者之间无显著差异; CpTI-Bt棉处理的幼虫近似消化率显著低于石远321和Bt棉,但其食物利用率显著高于石远321和Bt棉。  相似文献   

6.
湖北棉区转Bt基因棉对棉铃虫的控制作用   总被引:6,自引:2,他引:6  
2000-2001年通过田间系统调查,表明转Bt基因棉(品种为GK19)在湖北江汉平原棉区对棉铃虫抗性稳定。试验设3个处理:转Bt基因棉化防田(使用化学农药控制害虫)、转Bt基因棉自控田(依靠天敌控制害虫)及常规棉对照田(利用综合防治措施控制害虫)。从棉铃虫的第2代到第5代整个发生期内,即使在不进行化学防治的情况下,棉铃虫在Bt棉田的发生量也保持在极低的水平(最高百株虫量为12头)。室内饲养结果表明,转Bt基因棉对棉铃虫的生长发育(幼虫体重、蛹重)有较为明显的影响,使6龄幼虫体重减少25.6%,蛹重减少18.2%。棉铃虫幼虫取食转Bt基因棉组织后,发育迟缓,相对于常规棉喂养的整个发育历期延长17 d,使棉铃虫在田间的危害减少至少一个世代。另外,接虫试验表明,棉铃虫幼虫在常规棉上的取食时间是转Bt基因棉株上的6.1倍,极大地减轻了棉铃虫的危害程度。  相似文献   

7.
李娜  翟保平  吴孔明 《生态学报》2004,24(7):1566-1569
波动性不对称 (Fluctuating asymm etry,FA)是指相对于生物两侧对称发育的一种细微的随机偏离 ,通常用来指示生物在外界环境压力下发育的稳定性程度。 2 0 0 2年在我国北方棉区 1 3个具有 1~ 5 a转 Bt基因棉种植史的市、县采集了棉铃虫上灯蛾 ,测定了各点成虫后足腿节的波动性不对称 (Fluctuating asymmetry,FA)。结果表明 ,1 2个采集地的棉铃虫后足腿节均表现出 FA;相关性分析发现 ,各采集点的 FA值与 Bt棉的种植年代间存在着显著的负相关关系 (r=- 0 .77) ,显示出棉铃虫自然种群对 Bt棉的适应性随着 Bt棉种植时间延长而渐增的趋势。讨论了棉铃虫对 Bt棉的适应以及 FA作为棉铃虫田间种群对 Bt棉早期抗性监测指标的可能性  相似文献   

8.
简述了苏云金杆菌Bacillus thuringiensisBt)毒素的作用方式及杀虫机理,分析了Bt棉种植过程中面临的生态风险。综述了昆虫对Bt毒素的抗性机理、监测方法及治理策略方面的研究进展。棉铃虫对Bt棉的抗性可能主要与中肠上皮细胞膜上的特异性结合受体中结合位点的改变有关。在多种抗性治理策略中,庇护所策略被公认为是目前最有效的并已广泛采用的抗性治理措施。应针对Bt棉在我国的种植情况,在棉铃虫还未在田间表现出抗性以前,制定合理的抗性预防、治理措施。  相似文献   

9.
棉铃虫对转Bt基因抗虫棉花的抗性机制及治理   总被引:2,自引:0,他引:2       下载免费PDF全文
棉铃虫是危害棉花最严重的害虫之一. 作为生物技术产品, 转Bt杀虫基因棉花产生的Cry毒素对棉铃虫有高效毒杀作用. Bt棉花已在世界范围内商业化种植, 通过有效控制棉铃虫种群数量, 而显著减少了化学农药的用量. 尽管没有发现棉铃虫田间种群对Bt棉花产生高水平抗性, 但室内持续筛选已培育出多个高水平抗性品系, 表明存在棉铃虫对Bt棉花产生抗性的风险. 鉴于棉铃虫对Bt棉花产生抗性可能对Bt棉花利用价值的影响, 国内外近10年来对此进行了系统深入地研究. 本文综述了棉铃虫对Bt棉花抗性的生物化学和分子机制、抗性治理与监测技术的最新研究进展, 并分析了中国、澳大利亚和印度等国家棉铃虫对Bt棉花的抗性治理策略.  相似文献   

10.
赵建周  卢美光 《昆虫学报》1998,41(4):354-358
以我国培育的转Bt基因棉花(简称Bt棉)为材料,系统测定了Bt棉叶片对棉铃虫 Helicoverpa armigera(Hubner)不同龄期幼虫的杀虫活性和抑制生长的作用。结果表明,Bt棉的杀虫活性随着龄期的增大而趋于降低,其中处理3d只对1龄幼虫有较高效果;从1~4龄开始连续取食Bt棉后均不能化蛹,5龄幼虫则能正常化蛹。3龄幼虫取食Bt棉叶3d后的体重与初始体重之比为0.94,而取食常规棉叶的相应比值为5.48,对幼虫生长的抑制作用明显。在28℃条件下用Bt棉饲养棉铃虫1~3龄幼虫3d,对幼虫的致死率显著高于25℃处理,对3龄幼虫抑制生长的作用也显著提高。研究结果可为确定棉铃虫对Bt棉的抗性监测与治理技术以及Bt棉的田间应用技术提供依据。  相似文献   

11.
利用室内生物测定法和田间调查法研究双价抗虫棉及其杂交F1代不同生育期主茎功能叶和花铃期不同组织器官的抗虫性。结果表明:双价抗虫棉及其杂交F1代的抗虫性变化规律与B t基因棉的抗虫性变化规律相近,为生育前期(苗期、蕾期)抗性强,生育后期(花铃期、吐絮期)抗性弱,在花铃期为:棉铃>棉蕾>花>棉叶,且差异极显著。与B t基因棉相比,生育前期双价抗虫棉及其杂交F1代的抗虫性略弱,但差异不显著;生育后期双价抗虫棉及其杂交F1代的抗虫性显著强于B t基因棉。  相似文献   

12.
Transgenic cotton that produces insecticidal proteins from Bacillus thuringiensis (Bt), often referred to as Bt cotton, is widely grown in many countries. Bt cotton with a single cry1A gene and stacked also with cry2A gene has provided satisfactory protection against the damage by the lepidopteran bollworms, especially the cotton bollworm, Helicoverpa armigera (Hübner) which is considered as a key pest. The baseline susceptibility of the larvae of H. armigera to Cry1Ac and other toxins carried out in many countries has provided a basis for monitoring resistance. There is no evidence of development of field-level resistance in H. armigera leading to the failure of Bt cotton crop anywhere in the world, despite the fact that Bt cotton was grown on the largest ever area of 12.1 million hectares in 2006 and its cumulative cultivation over the last 11 years has surpassed the annual cotton area in the world. Nevertheless, the Bt resistance management has become a necessity to sustain Bt cotton and other transgenic crops in view of potential of the target insects to evolve Cry toxin resistance.  相似文献   

13.
The effects of transgenic Bt cotton on the overwintering generation of the cotton bollworm, Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae), are unknown. We hypothesized that a Bt cotton diet may adversely affect fitness of this generation and examined fresh weight, lipids, glycogens, low-molecular-weight sugars and SCPs (supercooling points) of pupae, as well as survival of larvae, diapausing pupae and adult emergence in comparison with controls. Field and laboratory experiments showed that larvae fed on Bt cotton had a decreased pupation rate, and fewer entered diapause and emerged as adults compared with larvae fed non-Bt cotton. Furthermore, larvae fed Bt cotton had reduced pupal weight, glycogen content and trehalose levels both in diapausing and in non-diapausing pupae, and only diapausing pupae had an increased SCP compared to controls. The SCPs of diapausing pupae reared on Bt cotton were significantly higher than those reared on non-Bt cotton. The trehalose levels of diapausing pupae reared on Bt cotton were significantly lower than those of larvae reared on non-Bt cotton. Thus, these results suggest that a Bt cotton diet weakens the preparedness of cotton bollworm for overwintering and reduces survival of the overwintering generation, which will in turn reduce the density of the first generation in the following year. Effects of transgenic Bt cotton on the overwintering generation of cotton bollworm appear to have significantly contributed to the suppression of cotton bollworm observed throughout northern China in the past decade.  相似文献   

14.
Helicoverpa armigera (Hübner), the major target pest of transgenic Bacillus thuringiensis (Bt) cotton, remains susceptible to Bt cotton in China at present. Behavioural avoidance by ovipositing females might lead to reduced exposure to Bt cotton and minimize selection for physiological resistance. We examined the behavioural responses of H. armigera to Bt and non‐Bt cottons to determine whether behavioural avoidance to Bt cotton may be present. In oviposition choice tests, the number of eggs on non‐Bt cotton plants was significantly higher than on Bt cotton plants. Similarly, in no‐choice tests, Bt cotton plants attracted significantly fewer eggs compared with non‐Bt cotton plants. H. armigera neonates showed higher dispersal and lower establishment on Bt cotton than on non‐Bt cotton. First instars were found to feed consistently on non‐Bt cotton leaves, creating large feeding holes, but only produced tiny feeding holes on Bt cotton leaves. The H. armigera population used in this study showed avoidance of oviposition and feeding on Bt cotton. Our results provide important insights into one possible mechanism underlying the durability of Bt cotton resistance and may be useful for improving strategies to sustain the effectiveness of Bt crops.  相似文献   

15.
There is no conclusive evidence that Helicoverpa spp. (Lepidoptera: Noctuidae) in Australia have evolved significant levels of resistance to Bollgard II® cotton (which expresses two Bt toxin genes, cry1Ac and cry2Ab). However, there is evidence of surviving larvae on Bollgard II cotton in the field. The distribution and survival of early‐instar Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae) larvae were examined on whole Bollgard II and non‐Bt cotton plants in greenhouse bioassays. The expression of Cry toxins in various parts of Bollgard II plants was compared to the survival of larvae in those locations. Only 1% of larvae survived after 6 days on greenhouse‐grown Bollgard II plants compared to 31% on non‐Bt cotton plants. Overall, and across all time intervals, more larvae survived on reproductive parts (squares, flowers, and bolls) than on vegetative parts (leaves, stems, and petioles) on Bollgard II plants. The concentration of Cry1Ac toxin did not differ between plant structures, whereas Cry2Ab toxin differed significantly, but there was no relationship between the level of expression and the location of larvae. This study provides no evidence that lower expression of Cry toxins in the reproductive parts of plants explains the survival of H. armigera larvae on Bollgard II cotton.  相似文献   

16.
转基因抗虫棉种植面积变化对花生田棉铃虫种群影响   总被引:1,自引:0,他引:1  
【目的】棉铃虫Helicoverpa armigera(Hübner)是花生田主要害虫之一。转基因抗虫棉全面推广后,棉铃虫种群(包括棉田、花生田、玉米田)得到有效控制。近年,随着转基因抗虫棉种植面积逐年下降,花生田棉铃虫种群呈现逐年上升趋势。【方法】本文通过调查山东省花生主产区(非棉区)龙口、招远、莱阳、文登四个县级市花生田棉铃虫成虫、卵量、幼虫量等的发生情况,分析了棉铃虫发生面积及种群数量15年(2000—2014年)的变化规律,并重点分析了主要影响因素。【结果】结果表明:花生棉铃虫发生面积受棉花种植面积影响较大,二者呈显著负相关性;花生田棉铃虫累计诱蛾量总体呈下降趋势,但与棉花种植面积相关性不显著;棉铃虫卵量、虫量与抗虫棉种植面积呈显著负相关性。【结论】所以,转基因抗虫棉种植面积减少是导致花生田棉铃虫种群数量上升的主要因素。另外,近年玉米田棉铃虫发生面积也呈逐年上升趋势,与抗虫棉种植面积呈显著负相关。所以,随转基因抗虫棉种植面积的下降,若不采取有效措施,棉铃虫种群可能会出现大发生趋势。  相似文献   

17.
The cotton bollworm, Helicoverpa armigera, is one of the most important insect pests in cotton growing regions of China. Transgenic cotton that expresses a gene derived from the bacterium Bacillus thuringiensis (Bt) has been deployed for combating cotton bollworm since 1997. Natural refugees derived from the mixed planting system consisting of cotton, corn, soybean, vegetables, peanut and others on single-family farms of a small scale were used for delaying the evolution of resistance to Bt cotton. Susceptibility of H. armigera field populations to the Bt insecticidal protein Cry1Ac was monitored from 1997 to 2006. The results indicate that the field populations are still susceptible to Cry1Ac, and monitoring indication no apparent shifts in susceptibility in field populations of this important pest.  相似文献   

18.
在我国Bt棉主要以Cry1Ab或Cry1Ac为主,其他新型Bt基因未被转入棉花中用来控制害虫,然而大面积种植单价Bt基因的棉花,将可能会大大增加靶标害虫对该类型Bt棉花抗性频率,因此研究其他新型Bt蛋白对靶标害虫的控制作用显得十分必要。采用蛋白混入人工饲料的生物测定方法,在室内测定了6种Bt蛋白对棉铃虫初孵幼虫的毒力,比较了浓度为1.0μg· g-1时不同Bt蛋白对棉铃虫幼虫生长发育的影响。毒力测定结果表明,不同Bt蛋白对棉铃虫初孵幼虫的毒力不同,LC50值由低到高依次为Cry1Ab 0.065μg· g-1、Cry1Ac 0.074μg· g-1、Cry2Ab 0.133μg· g-1、Cry2Aa 11.670μg· g-1、Cry1Ah 13.010μg· g-1和Cry1Ca>20μg· g-1。生长发育测定结果表明,Cry1Ab和Cry1Ac对棉铃虫幼虫的生长发育影响最大,Cry2Ab次之;Cry1Ah和Cry2Aa对1龄幼虫的校正死亡率和体重抑制率差别不大,但对2龄幼虫的差异较大,Cry1Ah处理2龄幼虫后体重和生长发育参数与Cry2Ab接近,而Cry1Ca对棉铃虫幼虫生长发育几乎没影响。Cry1Ah、Cry2Aa和Cry2Ab的毒力不如Cry1Ac和Cry1Ab,但仍可以作为控制棉铃虫幼虫的替代策略。  相似文献   

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