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苏云金芽孢杆菌保护植物防治害虫的安全性及优势

Safety and advantages of Bacillus thuringiensis-protected plants to control insect pests.

作者信息

Betz F S, Hammond B G, Fuchs R L

机构信息

Jellinek, Schwartz and Connolly, Washington, DC, USA.

出版信息

Regul Toxicol Pharmacol. 2000 Oct;32(2):156-73. doi: 10.1006/rtph.2000.1426.

Abstract

Plants modified to express insecticidal proteins from Bacillus thuringiensis (referred to as Bt-protected plants) provide a safe and highly effective method of insect control. Bt-protected corn, cotton, and potato were introduced into the United States in 1995/1996 and grown on a total of approximately 10 million acres in 1997, 20 million acres in 1998, and 29 million acres globally in 1999. The extremely rapid adoption of these Bt-protected crops demonstrates the outstanding grower satisfaction of the performance and value of these products. These crops provide highly effective control of major insect pests such as the European corn borer, southwestern corn borer, tobacco budworm, cotton bollworm, pink bollworm, and Colorado potato beetle and reduce reliance on conventional chemical pesticides. They have provided notably higher yields in cotton and corn. The estimated total net savings to the grower using Bt-protected cotton in the United States was approximately $92 million in 1998. Other benefits of these crops include reduced levels of the fungal toxin fumonisin in corn and the opportunity for supplemental pest control by beneficial insects due to the reduced use of broad-spectrum insecticides. Insect resistance management plans are being implemented to ensure the prolonged effectiveness of these products. Extensive testing of Bt-protected crops has been conducted which establishes the safety of these products to humans, animals, and the environment. Acute, subchronic, and chronic toxicology studies conducted over the past 40 years establish the safety of the microbial Bt products, including their expressed insecticidal (Cry) proteins, which are fully approved for marketing. Mammalian toxicology and digestive fate studies, which have been conducted with the proteins produced in the currently approved Bt-protected plant products, have confirmed that these Cry proteins are nontoxic to humans and pose no significant concern for allergenicity. Food and feed derived from Bt-protected crops which have been fully approved by regulatory agencies have been shown to be substantially equivalent to the food and feed derived from conventional crops. Nontarget organisms exposed to high levels of Cry protein are virtually unaffected, except for certain insects that are closely related to the target pests. Because the Cry protein is contained within the plant (in microgram quantities), the potential for exposure to farm workers and nontarget organisms is extremely low. The Cry proteins produced in Bt-protected crops have been shown to rapidly degrade when crop residue is incorporated into the soil. Thus the environmental impact of these crops is negligible. The human and environmental safety of Bt-protected crops is further supported by the long history of safe use for Bt microbial pesticides around the world.

摘要

经改造以表达来自苏云金芽孢杆菌的杀虫蛋白的植物(称为Bt保护植物)提供了一种安全且高效的虫害防治方法。Bt保护的玉米、棉花和马铃薯于1995/1996年引入美国,1997年种植面积总计约1000万英亩,1998年为2000万英亩,1999年全球种植面积达2900万英亩。这些Bt保护作物的迅速采用表明种植者对这些产品的性能和价值极为满意。这些作物能高效防治欧洲玉米螟、西南玉米螟、烟草夜蛾、棉铃虫、粉红棉铃虫和科罗拉多马铃薯甲虫等主要害虫,并减少对传统化学农药的依赖。它们在棉花和玉米上显著提高了产量。据估计,1998年美国种植者使用Bt保护棉花的总净节省约为9200万美元。这些作物的其他益处包括玉米中真菌毒素伏马菌素含量降低,以及由于广谱杀虫剂使用减少,有益昆虫有机会进行补充性害虫防治。正在实施抗虫管理计划以确保这些产品的长期有效性。已对Bt保护作物进行了广泛测试,确定了这些产品对人类、动物和环境的安全性。过去40年进行的急性、亚慢性和慢性毒理学研究确定了微生物Bt产品的安全性,包括其表达的杀虫(Cry)蛋白,这些产品已完全获批上市。对目前获批的Bt保护植物产品中产生的蛋白进行的哺乳动物毒理学和消化命运研究证实,这些Cry蛋白对人类无毒,也不存在明显的致敏性问题。经监管机构完全批准的Bt保护作物衍生的食品和饲料已被证明与传统作物衍生的食品和饲料基本等同。除了某些与目标害虫密切相关的昆虫外,接触高水平Cry蛋白的非靶标生物几乎不受影响。由于Cry蛋白存在于植物中(含量为微克级),农场工人和非靶标生物接触到的可能性极低。已证明Bt保护作物中产生的Cry蛋白在作物残茬融入土壤时会迅速降解。因此,这些作物对环境的影响可忽略不计。世界各地对Bt微生物农药的长期安全使用历史进一步证明了Bt保护作物对人类和环境的安全性。

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