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1.
Abstract: Feeding behaviour of Helicoverpa armigera Hübner (Lep.; Noctuidae) larvae on non‐transgenic Bacillus thuringiensis (Bt) cotton (Gossypium hirsutum L.), Zhong 30, and transgenic cowpea trypsin inhibitor (CpTI)‐Bt cotton, SGK 321, and non‐transgenic cotton, Shiyuan 321, was investigated in both choice tests and no‐choice tests. The results of choice tests suggested that neonates have the ability to detect and avoid transgenic cotton. In the choice tests of neonates with both transgenic and non‐transgenic cotton leaves, a significantly greater proportion of larvae and higher consumption were observed on non‐transgenic cotton than on the transgenic Bt or CpTI‐Bt cotton. In the choice tests with leaves of two transgenic cotton lines, the proportion of neonates on leaf discs of the two lines was not significantly different, but there was significantly higher consumption on CpTI‐Bt transgenic cotton than that on Bt transgenic cotton. In addition, significantly more neonates were found away from the leaf discs, lower consumption and higher mortality were achieved in the choice test with two transgenic cotton leaves than in the choice tests containing non‐transgenic cotton leaves. Leaves and buds were examined in choice tests of fourth instars. It appeared that fourth instars were found in equal numbers on transgenic and non‐transgenic cotton, except when larvae were exposed to leaves for 3 h. However, the total consumption on transgenic cotton was lower than that of the non‐transgenic cotton, so fourth instars may still have the capacity to detect transgenic cotton and reduce feeding on it, although they showed no preference on either transgenic or non‐transgenic cotton. More larvae were found off diet in the treatments with leaves than that of buds, and the number of injured leaf discs by per fourth instar was significantly higher than that of buds in choice tests, suggesting that leaf is a less preferred organ for H. armigera larvae, elicited more larval movements. Similarly, in no‐choice tests of fifth instars, significantly fewer feeding time and more moving time occurred on leaf than that of bud, boll and petal. When cotton line was considered, compared with non‐transgenic cotton, significantly lower feeding time and higher resting time occurred on the two transgenic cottons. Overall, H. armigera larvae have the ability to detect the transgenic Bt and CpTI‐Bt cottons or the less preferred organs and selectively feed more on the non‐transgenic cotton or the preferred organs, especially the neonates, which have a high capacity for avoiding transgenic cotton.  相似文献   

2.
Recently, several invasive mealybugs (Hemiptera: Pseudococcidae) have rapidly spread to Asia and have become a serious threat to the production of cotton including transgenic cotton. Thus far, studies have mainly focused on the effects of mealybugs on non-transgenic cotton, without fully considering their effects on transgenic cotton and trophic interactions. Therefore, investigating the potential effects of mealybugs on transgenic cotton and their key natural enemies is vitally important. A first study on the effects of transgenic cotton on a non-target mealybug, Ferrisia virgata (Cockerell) (Hemiptera: Pseudococcidae) was performed by comparing its development, survival and body weight on transgenic cotton leaves expressing Cry1Ac (Bt toxin) + CpTI (Cowpea Trypsin Inhibitor) with those on its near-isogenic non-transgenic line. Furthermore, the development, survival, body weight, fecundity, adult longevity and feeding preference of the mealybug predator Cryptolaemus montrouzieri Mulsant (Coleoptera: Coccinellidae) was assessed when fed F. virgata maintained on transgenic cotton. In order to investigate potential transfer of Cry1Ac and CpTI proteins via the food chain, protein levels in cotton leaves, mealybugs and ladybirds were quantified. Experimental results showed that F. virgata could infest this bivalent transgenic cotton. No significant differences were observed in the physiological parameters of the predator C. montrouzieri offered F. virgata reared on transgenic cotton or its near-isogenic line. Cry1Ac and CpTI proteins were detected in transgenic cotton leaves, but no detectable levels of both proteins were present in the mealybug or its predator when reared on transgenic cotton leaves. Our bioassays indicated that transgenic cotton poses a negligible risk to the predatory coccinellid C. montrouzieri via its prey, the mealybug F. virgata.  相似文献   

3.
Compositional studies comparing transgenic with non-transgenic counterpart plants are almost universally required by governmental regulatory bodies. In the present study, two T2 transgenic cotton lines containing chitinase (Line 11/57) and Bt lines (Line 61) were compared with non-transgenic counterpart. To do this, biochemical characteristics of leaves and seeds, including amino acids, fatty acids, carbohydrates, anions, and cations contents of the studied lines were analyzed using GC/MS, high-performance liquid chromatography (HPLC), and ion chromatography (IC) analyzers, respectively. polymerase chain reaction (PCR) and Western blot analyses confirmed the presence and expression of Chi and Bt genes in the studied transgenic lines. Although, compositional analysis of leaves contents confirmed no significant differences between transgenic and non-transgenic counterpart lines, but it was shown that glucose content of chitinase lines, fructose content of transgenic lines (Bt and chitinase) and asparagine and glutamine of chitinase lines were significantly higher than the non-transgenic counterpart plants. Both the transgenic lines (Bt and chitinase) showed significant decrease in the amounts of sodium in comparison to the non-transgenic counterpart plants. The experiments on the seeds showed that histidine, isoleucine, leucine, and phenylalanine contents of all transgenic and non-transgenic lines were the same, whereas other amino acids were significantly increased in the transgenic lines. Surprisingly, it was observed that the concentrations of stearic acid, myristic acid, oleic acid, and linoleic acid in the chitinase line were significantly different than those of non-transgenic counterpart plants, but these components were the same in both Bt line and its non-transgenic counterpart. It seems that more changes observed in the seed contents than leaves is via this point that seeds are known as metabolites storage organs, so they show greater changes in the metabolites contents comparing to the leaves.  相似文献   

4.
Bt毒素在转基因棉花与土壤系统中的分布   总被引:2,自引:2,他引:2  
研究了转Bt基因棉花与土壤系统中Bt毒素的分布.结果表明,两种转Bt基因棉花地上部(叶片、茎秆)的毒素表达量(103.5~134.1 ng·g-1)显著高于地下部分(根系)(44.7~21.2 ng·g-1),土壤中Bt毒素总量可通过转基因棉花地上部分秸秆的处理得到控制;Bt毒素在转Bt基因棉花根系分泌物中的含量极低,如果控制Bt毒素的其它导入来源,将显著降低转Bt基因作物释放中因Bt毒素导入而引发的对土壤生态系统的扰动.  相似文献   

5.
Abstract.  1. Transgenic crops have shown great promise for the control of target pest insects, but in some cases they can also influence non-target species. This study investigated the impact of Bt and Bt+CpTI transgenic cottons on the non-target cotton aphid, Aphis gossypii Glover, by comparing life-table parameters, feeding behaviour, and the fluctuating asymmetry of morphological traits of aphids reared on transgenic cotton and those on untransformed control plants.
2. Aphids on the Bt+CpTI cotton showed a shorter reproductive duration and maximum lifespan, lower survival rates and potential maximum fecundity, and an earlier occurrence of peak daily mortality in the first or second generation. However, the aphid population soon developed fitness and overcame the negative effect in the second or third generation. The aphids on the Bt cotton had significantly longer reproductive durations in the first generation, higher survival rates in the third generation, and apparently larger potential maximum fecundity in all three generations.
3. The percentages of accumulated duration of feeding waveforms E1 and E2 were significantly lower in aphids on the Bt+CpTI cotton than in those on the Bt or control cotton, whereas the frequencies of moving and finding feeding sites, and probe behaviour were significantly higher.
4. Fluctuating asymmetry in three morphological characters of aphids reared on transgenic and control cotton was detected. The fluctuating asymmetry value of the third segment of antenna in aphids on Bt+CpTI cotton was significantly higher than that of aphids on Bt or control cotton. Based on the fluctuating asymmetry value, the stress of cotton on the aphids could be ranked as Bt+CpTI cotton > Bt cotton > control cotton.  相似文献   

6.
Transgenic cotton (Cossypium hirsutum L.) varieties, adapted to China, have been bred that express two genes for resistance to insects, the CrylAc gene from Bacillus thuringiensis (Berliner) (Bt), and a trypsin inhibitor gene from cowpea (CpTI). Effectiveness of the double gene modification in conferring resistance to cotton bollworm, Helicoverpa armigera (Hübner) (Lepidoptera: Noctuidae), was studied in laboratory and field experiments. In each experiment, performance of Bt+CpTI cotton was compared with Bt cotton and to a conventional nontransgenic variety. Larval survival was lower on both types of transgenic variety, compared with the conventional cotton. Survival of first-, second-, and third-stage larvae was lower on Bt+CpTI cotton than on Bt cotton. Plant structures differed in level of resistance, and these differences were similar on Bt and Bt + CpTI cotton. Likewise, seasonal trends in level of resistance in different plant structures were similar in Bt and Bt+CpTI cotton. Both types of transgenic cotton interfered with development of sixth-stage larvae to adults, and no offspring was produced by H. armigera that fed on Bt or Bt+CpTI cotton from the sixth stage onward. First-, second-, and third-stage larvae spent significantly less time feeding on transgenic cotton than on conventional cotton, and the reduction in feeding time was significantly greater on Bt+CpTI cotton than on Bt cotton. Food conversion efficiency was lower on transgenic varieties than on conventional cotton, but there was no significant difference between Bt and Bt+CpTI cotton. In 3-yr field experimentation, bollworm densities were greatly suppressed on transgenic as compared with conventional cotton, but no significant differences between Bt and Bt+CpTI cotton were found. Overall, the results from laboratory work indicate that introduction of the CpTI gene in Bt cotton raises some components of resistance in cotton against H. armigera, but enhanced control of H. armigera under field conditions, due to expression of the CpTI gene, was not demonstrated.  相似文献   

7.
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   

8.
沈文静  刘来盘  方志翔  张莉  刘标 《昆虫学报》2021,64(10):1187-1195
【目的】转Bt基因棉花和转Bt基因杨树在我国已推广使用。本研究的目的是调查和分析不同转基因杨棉复合系统内地上节肢动物群落多样性变化,为转基因杨树大规模应用提供生态安全方面的数据。【方法】2019年4-10月,在河北任丘采取欧洲黑杨Populus nigra林下种植转基因棉花Gossypium hirsutum的模式,设置转基因杨树 转基因棉花(复合生态系统1)和非转基因杨树-转基因棉花(复合生态系统2)两种杨棉复合系统,调查杨树和棉花地上部植株节肢动物种类和个体数量,比较节肢动物各功能群的物种数量和个体数量以及香农指数、优势集中性指数、均匀度指数等群落多样性指数,并测定了转基因杨树和棉花叶片Bt蛋白含量。【结果】复合生态系统1中转基因杨树和棉花各自植株上鳞翅目种群累计个体数均显著低于复合生态系统2相应植株上的个体数量。转基因杨树上叶甲类累计个体数量显著高于非转基因杨树上的,寄生蜂类累计个体数量则显著低于非转基因杨树上的。在6月5日、6月21日和9月7日的调查中,转基因杨树上的节肢动物群落香农指数显著高于非转基因杨树上的。除鳞翅目害虫外,2个复合系统中棉株上节肢动物各功能群累计个体数量无显著性差异,香农指数、优势集中性指数和均匀度指数随时间变化的趋势基本一致且同一调查时间无显著性差异,仅在8月17调查中复合生态系统1中棉株上节肢动物香农指数显著高于复合生态系统2棉株上的。将杨树和棉花上节肢动物各类群累计数量相加作为系统整体,复合生态系统1和复合生态系统2在香农指数、优势集中性指数和均匀度指数数值上无显著差异。在调查后期,2个复合系统中节肢动物种群均向杨树叶片聚集。转基因棉花叶片Bt蛋白含量在各调查期均显著高于转基因杨树叶片的。【结论】转基因杨树对靶标害虫种群数量有较好的控制作用,对同系统内棉花上鳞翅目害虫数量亦有协同控制作用。转基因杨棉复合系统中地上节肢动物群落结构稳定,对系统内棉花地上部节肢动物群落多样性无显著影响。靶标害虫对转Bt基因杨树的抗性发展需持续监测。  相似文献   

9.
转基因棉花对棉铃虫天敌寄生率的影响   总被引:15,自引:0,他引:15  
采用分期接虫、分期回收法研究常规棉与转基因棉花品种 (系 )上棉铃虫寄生性天敌在不同棉花品种上的寄生作用。结果表明 ,无论是第 2代棉铃虫发生期间还是第 3 ,4代棉铃虫发生期间 ,无论是棉铃虫卵期还是幼虫期 ,转基因棉花品种 (系 )的棉铃虫卵、幼虫寄生率均显著低于常规棉花品种上的寄生率。棉铃虫卵期寄生蜂主要是拟澳洲赤眼蜂 ,幼虫寄生蜂为棉铃虫齿唇姬蜂等。由此看出转基因棉对棉铃虫寄生性天敌存在非亲和性。  相似文献   

10.
为深入理解肿腿蜂雌性抚育的行为学特征, 在室内连续观察了雌性管氏肿腿蜂Sclerodermus guani对子代幼虫的转移行为, 旨在明确雌蜂在子代蜂幼虫发育到哪一阶段时启动转移行为, 以及幼虫转移行为是否有节律。以黄粉虫Tenebrio militor蛹期在24 h内的蛹体为寄主, 根据子代蜂幼虫发育进程将其划分为低龄幼虫(1-2龄)、 高龄幼虫(3-4龄)、 老熟幼虫(自然脱落)和吐丝幼虫(开始吐丝结茧)等4个时期, 采取人工剥离(早期幼虫)或自然脱离(晚期幼虫)的方法处理子代蜂幼虫, 观察雌蜂对所表现出的行为反应; 然后以子代蜂高龄幼虫为对象, 连续观察雌蜂的30次幼虫转移行为过程。结果表明: 雌蜂对所有发育时期子代蜂幼虫均用触角拍打进行探测; 但不转移低龄幼虫, 只转移其他阶段幼虫, 转移老熟幼虫和吐丝幼虫的瞬间概率分别是转移高龄幼虫的4.09倍和7.69倍。雌蜂转移高龄、 老熟和吐丝幼虫的比例分别为96%, 100%和100%, 没有显著差异(P≥0.05); 对高龄幼虫、 老熟幼虫和吐丝幼虫转移耗时平均分别为27.96, 34.04和32.49 s, 没有显著差异(P≥0.05); 平均转移距离依次为4.19, 7.18和 9.43 mm, 对吐丝幼虫的转移距离显著大于高龄幼虫(P<0.05), 但在高龄和老熟幼虫之间没有显著差异(P≥0.05)。对雌蜂连续30次幼虫转移行为的趋势和节律分析表明: 幼虫转移前探测的幼虫数总体上随幼虫转移次序增加而减少, 在间隔1次和2次之间存在显著自相关, 幼虫转移耗时在间隔1次之间存在显著自相关, 但幼虫转移距离未表现出明显的节律。本研究结果说明, 管氏肿腿蜂雌性抚育中的幼虫转移行为只在子代蜂幼虫发育到较高龄期时启动, 且幼虫转移中的某些行为特征具有节律性。  相似文献   

11.
With the wide adoption of transgenic Bacillus thuringiensis (Bt) cotton, the incidence of bollworm has reduced significantly, but secondary pests such as cotton spider mites have become serious problems in Bt cotton fields. The objective of the present study was to investigate the underlying mechanism of increased incidence of secondary pests in Bt cotton. Two transgenic cotton varieties, sGK321 and Bt-C12, and their non-transformed counterparts, SY321 and C12, were used to study differences in the incidence of spider mites in relation to secondary metabolites. Plants of each cotton cultivar were infested with five female adult spider mites and then isolated. Leaf samples with a pair of adult mites of the same age were transferred individually into Petri dishes for examination of egg laying and duration of development stages. The number of spider mites on Bt-C12 and sGK321 was more than that on C12 and SY321. The cotton spider mites feeding on Bt-C12 laid significantly more eggs than those feeding on C12; those feeding on sGK321 laid significantly more eggs than those feeding on SY321. The generation time of spider mites feeding on Bt-C12 was greatly reduced relative to those feeding on C12. Also, the generation time of mites feeding on sGK321 was shorter than those feeding on SY321. Gossypol and tannin contents in leaves of Bt-C12 were substantially lower than those in C12, and the contents in leaves of sGK321 were significantly lower than those in leaves of SY321. The occurrence of spider mites was more serious on Bt than non-Bt cotton, and the fitness of the mites on Bt cotton was higher than on non-Bt cotton. Reductions in gossypol and tannin contents in Bt cotton decreased the generation time and increased the number of eggs of cotton spider mites.  相似文献   

12.
棉大卷叶螟Sylepta derogata Fabricius为近年来长江流域棉花中后期的一种重要害虫。在其危害盛期测定了8种转基因棉叶片Bt毒蛋白的含量与受害程度,在此基础上就转基因棉对棉大卷叶螟的抗虫性采用不同抗性指标相结合的方法进行了综合评估,同时对转基因棉对棉大卷叶螟的抗虫效果与毒蛋白含量的相关性进行分析。结果表明:各转基因棉品种的不同部位叶片的毒蛋白含量呈现顶叶最高,功能叶次之,老叶含量最低的趋势。抗蚜8017和SGK321 2个转基因棉品种的棉叶毒蛋白表达量相对较低,平均值在120μg/g以下,对棉大卷叶螟的抗性级别均为中抗。其它供试转基因棉棉叶毒蛋白表达量均值在150μg/g以上,抗性级别也均为高抗,而非转基因棉泗棉3号与石远321对棉大卷叶螟不具抗性。转基因棉对棉大卷叶螟的抗性水平与毒蛋白含量呈正相关。  相似文献   

13.
刘海荷  李瑞莲  陈金湘 《生态学报》2006,26(8):2510-2515
为了比较杂交棉不同品种、不同世代棉花叶片营养元素含量的差异,于2003、2004年以Bt抗虫杂交棉NZ62、H64、H16的杂交种一代、二代和三代为材料,在湖南长沙进行了研究。田间试验在湖南农业大学试验基地进行,采用随机区组试验,设4次重复,4行区,小区面积13.4m^2。分别于棉花盛花期、吐絮期两个时期,在每个试验小区连续取10株棉株的倒数第4叶和倒数第2叶,测定棉叶的全量N、P、K、B、Cu、Zn、Fe、和Mn的含量。研究结果表明:不同品种花铃期养分含量除P以外均存在显著差异,且变化趋势基本一致,均以NZ62含量最高,H16次之,H64最低,差异达显著水平(P〈5%)。吐絮期不同品种叶片的N、P、K和B含量均不存在显著差异,而Cu、Zn、Mn营养含量均存在显著差异,NZ62比H16和H64高;不同世代花铃期F1棉株叶片的N、K、Cu、Zn、Fe、Mn和B的含量显著高于F2、F3(P〈5%),而F2、B的含量变化基本一致,F1代棉株对营养元素的吸收与F2、F3代棉株相比具有显著的杂种优势。F2、F3代优势衰退与其叶片营养元素含量减少相符合。但吐絮期不同世代之间没有显著差异。相关分析表明,花铃期棉花叶片含N量、含K量与子棉产量和皮棉产量有显著相关(P〈5%),而吐絮期的这两个元素的含量与棉花产量无显著相关(P〉5%)。无论是花铃期还是吐絮期,B元素的含量与子棉、皮棉产量的相关均达到极显著水平(P〈1%)。  相似文献   

14.
采用微波消解法处理旱芹根、茎、叶,并用火焰原子吸收法测定其中的Na、K、Ca、Mg、Fe、Mn、Zn、Cu 8种金属元素的含量。结果表明:旱芹中富含人体必需的Na、K、Mg、Fe、Ca等元素,各元素在不同部位含量有一定差异。Fe元素在旱芹根中含量为883.57μg.g-1,明显高于茎和叶;Ca、Zn和Mn元素在旱芹叶中的含量分别为11 103.74,214.04,88.07μg.g-1,明显高于茎和根;K、Na和Mg元素在旱芹茎中的含量高于根和叶中,Cu元素含量在各部位差异不大。方法的加标回收率为96.8%~105.8%,相对标准偏差(RSD)≤3.36%。  相似文献   

15.
鼎湖山南亚热带常绿阔叶林植物营养元素含量分配格局研究   总被引:37,自引:0,他引:37  
在鼎湖山南亚热带常绿阔叶林中,植物叶片营养元素含量为N 0.946%-2.535%,P 0.030-0.127%,K 0.614%-1.833%,Ca 0.442%-1.995%,Mg 0.024%-0.188%。叶片各营养养元素间相关性较差,仅P与Mg及Mg与K之间存在显著的线性相关。叶片N元素平均含量在各层中的序列为:乔木Ⅲ〉乔木Ⅱ〉乔木Ⅰ〉灌木〉藤本〉草本;其它营养元素浓度随层次分配的规律性  相似文献   

16.
转基因棉种植对土壤水解酶活性的影响   总被引:10,自引:1,他引:9  
转Bt基因棉和转Bt+cpTI基因棉种植面积不断扩大,它们种植后杀虫晶体蛋白在土壤中的残留特性及对土壤水解酶活性的影响是环境风险评价的重要组成部分,本文采用盆栽实验的方法对此进行了初步研究。结果表明,转基因棉出苗后生长到30天时可向土壤中释放Bt杀虫晶体蛋白,而双抗棉种植时CpTI杀虫晶体蛋白的释放量与品种有关;转基因棉出苗后30天时,与等价基因系非转基因棉(各对照)相比,转Bt基因棉(“中30”)和双抗棉A(转Bt+CpTI棉“中41”)的种植并未使脲酶、蛋白酶和磷酸单脂酶活性发生显著变化,而双抗棉B(转Bt+CpTI棉“双抗321”)的种植使土壤磷酸单脂酶活性显著下降。从杀虫晶体蛋白的释放和对酶活性的影响来看,双抗棉A的种植对土壤的生物活性扰动更小。  相似文献   

17.
How the photosynthetic characteristics of insect-resistant transgenic cotton (Gossypium hirsutum L.) respond to light or whether this genetic transformation could result in unintended effects on their photosynthetic and physiological processes is not well known. Two experiments were conducted to investigate the shapes of net photosynthetic rate (P N), stomatal conductance (g s), apparent light use efficiency (LUEapp) and water use efficiency (WUE) light-response curves for single leaves of Bt (Bacillus thuringiensis) and Bt+CpTI (cowpea trypsin inhibitor) transgenic cotton plants and their non-transgenic counterparts, respectively. Results showed that the significant difference in response of P N and WUE to light between transgenic cotton and non-transgenic cotton occured but not always throughout the growing season or in different experiments or for all transgenic cotton lines. It was highly dependent on growth stage, culture condition and variety, but no obvious difference between any transgenic cotton and non-transgenic cotton in the shapes of g s and LUEapp light-response curves was observed in two experiments at different growth stages. In the field experiments, transgenic Bt+CpTI cotton was less sensitive to response of P N to high irradiance at the boll-opening stage. In pot experiments, WUE light-response curves of both Bt transgenic cotton and Bt+CpTI transgenic cotton progressively decreased whereas non-transgenic cotton slowly reached a maximum at high irradiance at boll-opening stage. We supposed that culture environment could affect the photosynthesis of transgenic cotton both directly and indirectly through influencing either foreign genes expression or growth and physiological processes.  相似文献   

18.
【目的】研究取食转Bt+CpTI基因棉花的棉蚜Aphis gossypii Glover对普通草蛉Chrysopa carnea Stephens生长发育及繁殖力的影响,为转Bt基因抗虫棉花的推广和应用提供理论支持。【方法】普通草蛉取食转Bt+CpTI棉花SKG321和对照品种石远321棉花上的棉蚜后,对普通草蛉生长发育情况进行研究,并对其幼虫、蛹的存活率和成虫的羽化率及产卵量进行分析。【结果】取食转Bt+CpTI棉花上的棉蚜对普通草蛉的各龄幼虫发育历期、蛹期和产卵前期无不利影响;处理与对照间各龄幼虫存活率、蛹的存活率和成虫羽化率之间没有显著差异;取食转Bt+CpTI棉花上棉蚜的普通草蛉单雌日产卵量与对照相比没有减少,而25 d内的单雌总产卵量与对照相比差异亦不显著。【结论】取食转Bt+CpTI棉花上的棉蚜对普通草蛉的生长发育及繁殖力无负面影响。  相似文献   

19.
通过田间调查、室内网罩盆栽苗测定选择性等方法,考察了常规棉(泗棉3号,石远321)、杂交抗虫棉(辽棉19号,鲁棉研18号)、转单价基因抗虫棉(国抗12号,中棉所32)和转双价抗虫棉(SGK321,中棉所41)4种类型8个品种棉花上棉蚜的适生性及种群动态。结果表明: 棉蚜在各棉花品种上的种群动态有明显差异(P<0.05),单株蚜量以转单价基因抗虫棉中棉32上最高,常规棉泗棉3号上最低,分别为297.81头/株和76.88头/株。棉蚜对4种类型棉花品种的选择性有明显差异(P<0.05),其中对转单价基因抗虫棉有很强的选择性。根据棉蚜实验种群的参数判断,其在不同品种棉花上的生长发育、存活及繁殖存在显著差异: 若虫发育历期常规棉石远321上最长(6.46天),双价棉中棉所41上最短(5.75天); 存活率转单价基因抗虫棉中棉32上最高(88.21%),双价棉SGK321上最低(76.46%); 单雌产蚜量杂交抗虫棉辽棉19上最大(44.48头),双价棉SGK321上最小(33.51头); 内禀增长率转单价基因抗虫棉中棉32上最高(0.3695),双价棉中棉所41上最低(0.3389)。综合评价,棉蚜的生存和繁殖适合性在转单价基因抗虫棉上最高,在双价棉上最低。  相似文献   

20.
为了明确棉铃虫Helicoverpa armigera(Hübner)取食转双价基因(Bt+CpTI)棉叶以及取食一段时间转基因棉叶后,再取食常规棉叶,对棉铃虫取食量、体重增长量及中肠羧酸酯酶活性的影响,本研究分别用转双价基因棉叶和常规棉叶饲喂4龄棉铃虫幼虫5 d,比较考察了棉铃虫的取食量、体重增长量及中肠羧酸酯酶的活性;另外分别考察了棉铃虫取食转基因棉叶1 d及3 d后再取食常规棉叶,其中肠羧酸酯酶的变化。结果表明,持续取食常规棉花叶片5 d的棉铃虫,其中肠羧酸酯酶的活性持续升高;而持续取食转基因棉叶5 d的棉铃虫,其中肠羧酸酯酶的活性先升高后降低。取食转基因棉花叶片1 d后,取食常规棉叶的棉铃虫,其中肠羧酸酯酶的活性,随着换取常规棉叶时间的延长,活性逐渐降低;而棉铃虫在取食3 d转基因棉叶后再取食常规棉叶,其中肠羧酸酯酶活性却一直保持较高。可见,棉铃虫在取食转基因棉花后,其羧酸酯酶活性可以被诱导,这应与棉铃虫对转基因棉的抗性及防御性有一定关系。  相似文献   

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