苏云金芽孢杆菌毒素在大豆栽培中防治毛虫和臭虫的作用方式和特异性。

ISRN Microbiology Pub Date : 2014-01-20 eCollection Date: 2014-01-01 DOI:10.1155/2014/135675
Rogério Schünemann, Neiva Knaak, Lidia Mariana Fiuza
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引用次数: 110

摘要

苏云金芽孢杆菌(Bacillus thuringiensis, Bt)产生的三角洲内毒素具有毒性,可以用作生物农药,也是构建抗虫转基因植物的基因来源。在巴西,引进具有杀虫特性的Bt大豆来对付大豆的主要害虫——蚕豆毛虫,已被视为管理这些农业生态系统的一个有前途的工具。然而,在这个国家的不同地区,这种文化中臭虫数量的增加,对现有的转基因植物不敏感,需要使用破坏环境的化学品。人们对Bt对半翅目昆虫的实际毒性知之甚少,因为这些昆虫有吸吮口器,这妨碍了用含有这种细菌毒素的人工饲料进行毒性测定。近年来对不同半角虫肠道细胞毒性的研究表明,三角洲内毒素的作用机制具有易感性,这为大豆害虫的防治提供了有益的指导。本文综述了近年来Bt在大豆主要有害生物——黄豆角蛾生物防治中的选择、应用和作用方式的研究进展,并对Bt防治黄豆角蛾的研究进展进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

Mode of Action and Specificity of Bacillus thuringiensis Toxins in the Control of Caterpillars and Stink Bugs in Soybean Culture.

Mode of Action and Specificity of Bacillus thuringiensis Toxins in the Control of Caterpillars and Stink Bugs in Soybean Culture.

Mode of Action and Specificity of Bacillus thuringiensis Toxins in the Control of Caterpillars and Stink Bugs in Soybean Culture.

Mode of Action and Specificity of Bacillus thuringiensis Toxins in the Control of Caterpillars and Stink Bugs in Soybean Culture.

The bacterium Bacillus thuringiensis (Bt) produces delta-endotoxins that possess toxic properties and can be used as biopesticides, as well as a source of genes for the construction of transgenic plants resistant to insects. In Brazil, the introduction of Bt soybean with insecticidal properties to the velvetbean caterpillar, the main insect pest of soybean, has been seen a promising tool in the management of these agroecosystems. However, the increase in stink bug populations in this culture, in various regions of the country, which are not susceptible to the existing genetically modified plants, requires application of chemicals that damage the environment. Little is known about the actual toxicity of Bt to Hemiptera, since these insects present sucking mouthparts, which hamper toxicity assays with artificial diets containing toxins of this bacterium. In recent studies of cytotoxicity with the gut of different hemipterans, susceptibility in the mechanism of action of delta-endotoxins has been demonstrated, which can generate promising subsidies for the control of these insect pests in soybean. This paper aims to review the studies related to the selection, application and mode of action of Bt in the biological control of the major pest of soybean, Anticarsia gemmatalis, and an analysis of advances in research on the use of Bt for control hemipterans.

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