共查询到19条相似文献,搜索用时 93 毫秒
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植物抗虫基因工程为防治农业害虫提供了一条崭新途径。本文对植物抗虫基因工程近年来所取得的某些研究进展,包括目前已发现和利用的抗虫基因、提高抗虫基因在植物体内表达的方法以及防止或延缓害虫产生抗性的策略等方面进行了综合评述,并对植物抗虫基因工程中有待解决的问题和发展前景提出了自己的看法。 相似文献
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植物抗虫基因工程研究进展 总被引:21,自引:0,他引:21
植物抗虫基因工程为防治农业害虫提供了一条崭新途径。本文对植物抗虫基因工程近年来所取得的某些研究进展,包括目前已发现和利用的抗虫基因、提高抗虫基因在植物体内表达的方法以及防止或延缓害虫产生抗性的策略等方面进行了综合评述,并对植物抗虫基因工程中有待解决的问题和发展前提提出了自己的看法。 相似文献
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植物抗早基因工程研究进展 总被引:23,自引:1,他引:22
从植物抗虫基因工程的研究历史出发,论述了第一代抗虫基因、第二代抗虫基因,重点介绍了B.t.杀虫晶体蛋白基因、胆固醇氧化酶基因和营养杀虫蛋白基因,并对植物抗虫基因工程中所遇到的问题和解决办法进行了探讨。 相似文献
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抗虫转基因植物的研究进展及前景 总被引:45,自引:0,他引:45
虫害对农业生产的危害日益严重。目前对害虫的防治主要依赖于化学药物,但化学药物的副作用不容忽视。利用植物基因工程获得抗虫转基因植物是更具前景的途径。目前主要利用的抗虫基因是苏云金杆菌的δ-内毒素基因和植物来源的抗虫基因(如蛋白酶抑制剂基因、淀粉酶抑制剂基因、凝集素基因等),各种抗虫基因在转基因应用中各有其优缺点,如苏云金杆菌δ-内毒素基因是植物中表达水平低。随着抗虫转基因植物在大田中的应用,昆虫的抗 相似文献
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抗虫转基因植物的研究进展及前景 总被引:4,自引:0,他引:4
谢先芝 《中国生物工程杂志》1999,19(6):47-52
虫害对农业生产的危害日益严重。目前对害虫的防治主要依赖于化学药物,但化学药物的副作用不容忽视。利用植物基因工程获得抗虫转基因植物是更具前景的途径。目前主要利用的抗虫基因是苏云金杆菌的δ-内毒素基因和植物来源的抗虫基因(如蛋白酶抑制剂基因、淀粉酶抑制剂基因、凝集素基因等),各种抗虫基因在转基因应用中各有其优缺点,如苏云金杆菌δ-内毒素基因在植物中表达水平低。随着抗虫转基因植物在大田中的应用,昆虫的抗性或适应性问题也随之产生,这将是转基因植物发展道路上又一挑战。 相似文献
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蛋白酶抑制剂及其在抗虫基因工程中的应用 总被引:41,自引:0,他引:41
蛋白酶抑制剂可以抑制昆虫的生长和发育,近年来在抗虫基因工程得广泛的应用。本文综述了蛋白酶抑制剂及其抗虫性,蛋白酶抑制剂转基因植物的研究概况,同时探讨了蛋白酶抑制剂在抗虫基因工程中的利用前景、存在问题和解决途径。 相似文献
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水稻抗虫基因工程研究进展 总被引:6,自引:0,他引:6
近年来,随着植物基因工程的发展,水稻抗虫转化研究工作进展迅速,一批极具应用潜力的抗虫品系初露端倪。综述了目前国内外水稻抗虫基因工程取得的进展。结合植物抗虫基因工程的研究成果,对目前水稻抗虫基因工程中存在的一些问题提出了相关的对策,其中主要讨论提高外源基因表达效率的途径。 相似文献
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苏云金杆菌是一类非常重要的昆虫病原体,它能产生特异性的杀虫结晶蛋白,对农业上和生物医学上的许多有害的昆虫有毒杀作用,这些害虫包括鳞翅目、双翅目、鞘翅目、膜翅目、螨类和线虫。近三十年来,以苏云金杆菌为基础的生物杀虫剂已在世界范围内商业化用于防治重要经济作物的害虫。近年来有关Bt基因的遗传、分子生物学和基因工程已取得显著进展。本文对苏云金杆菌杀虫晶体蛋白基因的分类和杀虫机理及用该类基因构建的工程转基因植物研究状况作一简要综述,同时对Bt基因工程存在的潜在问题和解决途径作了简单的探讨。 相似文献
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Between myth and reality: genetically modified maize,an example of a sizeable scientific controversy
Maize is a major crop plant with essential agronomical interests and a model plant for genetic studies. With the development of plant genetic engineering technology, many transgenic strains of this monocotyledonous plant have been produced over the past decade. In particular, field-cultivated insect-resistant Bt-maize hybrids are at the centre of an intense debate between scientists and organizations recalcitrant to genetically modified organisms (GMOs). This debate, which addresses both safety and ethical aspects, has raised questions about the impact of genetically modified (GM) crops on the biodiversity of traditional landraces and on the environment. Here, we review some of the key points of maize genetic history as well as the methods used to stably transform this cereal. We describe the genetically engineered Bt-maizes available for field cultivation and we investigate the controversial reports on their impacts on non-target insects such as the monarch butterfly and on the flow of transgenes into Mexican maize landraces. 相似文献
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Exploiting natural variation to identify insect-resistance genes 总被引:1,自引:0,他引:1
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Insect-resistant transgenic plants in a multi-trophic context 总被引:15,自引:0,他引:15
So far, genetic engineering of plants in the context of insect pest control has involved insertion of genes that code for toxins, and may be characterized as the incorporation of biopesticides into classical plant breeding. In the context of pesticide usage in pest control, natural enemies of herbivores have received increasing attention, because carnivorous arthropods are an important component of insect pest control. However, in plant breeding programmes, natural enemies of herbivores have largely been ignored, although there are many examples that show that plant breeding affects the effectiveness of biological control. Negative influences of modified plant characteristics on carnivorous arthropods may induce population growth of new, even more harmful pest species that had no pest status prior to the pesticide treatment. Sustainable pest management will only be possible when negative effects on non-target, beneficial arthropods are minimized. In this review, we summarize the effects of insect-resistant crops and insect-resistant transgenic crops, especially Bt crops, from a food web perspective. As food web components, we distinguish target herbivores, non-target herbivores, pollinators, parasitoids and predators. Below-ground organisms such as Collembola, nematodes and earthworms should also be included in risk assessment studies, but have received little attention. The toxins produced in Bt plants retain their toxicity when bound to the soil, so accumulation of these toxins is likely to occur. Earthworms ingest the bound toxins but are not affected by them. However, earthworms may function as intermediaries through which the toxins are passed on to other trophic levels. In studies where effects of insect-resistant (Bt) plants on natural enemies were considered, positive, negative and no effects have been found. So far, most studies have concentrated on natural enemies of target herbivores. However, Bt toxins are structurally rearranged when they bind to midgut receptors, so that they are likely to lose their toxicity inside target herbivores. What happens to the toxins in non-target herbivores, and whether these herbivores may act as intermediaries through which the toxins may be passed on to the natural enemies, remains to be studied. 相似文献
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以具高抗虫性的转抗虫基因‘74l杨’及在此基础上转入了发根农杆菌融质粒T-DNA株系的组培苗为材料,研究了转基因株系BtCrylAc抗虫基因和发根基因的表达及其对NaCI胁迫的反应。结果表明,转入Ri质粒T-DNA上的rol基因后,导致苗木根系数目增加,根系长度减小,IAA和GA含量显著提高,抗虫BtCrylAc基因编码的毒蛋白的表达量降低;随着NaCI胁迫强度的增加,苗高、根系数量、叶绿素含量及IAA、GA含量逐步降低,而根系的长度加大,Bt毒蛋白含量显著提高,表明NaCI胁迫使转基因杨外源Bt毒蛋白基因的表达增强,而发根农杆菌.Ri质粒T-DNA的表达下降。 相似文献