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监测大面积区域内害虫对苏云金芽孢杆菌的敏感性:当涉及两个国家时如何获取最佳信息。

Monitoring Bacillus thuringiensis-susceptibility in insect pests that occur in large geographies: how to get the best information when two countries are involved.

作者信息

Blanco Carlos A, Perera Omaththage P, Boykin Debbie, Abel Craig, Gore Jeff, Matten Sharlene R, Ramírez-Sagahon Juan C, Terán-Vargas Antonio P

机构信息

United States Department of Agriculture, Agricultural Research Service, Southern Insect Management Research Unit, 141 Experiment Station Road, Stoneville, MS 38776, USA.

出版信息

J Invertebr Pathol. 2007 Jul;95(3):201-7. doi: 10.1016/j.jip.2007.03.009. Epub 2007 Mar 27.

Abstract

The adoption of cotton producing insecticidal proteins of Bacillus thuringiensis, commonly referred to as Bt cotton, around the world has proven to be beneficial for growers and the environment. The effectiveness of this important genetically-modified crop can be jeopardized by the development of resistance to Bt cotton by pests it is meant to control, with the possibility that this phenomenon could develop in one country and spread to another by means of insect migration. To preserve the effectiveness of this agricultural biotechnology, regulatory agencies have developed plans to mitigate the development of resistance, and research institutions constantly monitor for shifts in Bt-susceptibility in important pests. If Bt-resistance is detected, this finding needs to be corroborated by an independent laboratory according to current regulatory requirements; a process that presents numerous challenges. We investigated the biological activity of Bt-incorporated diet on Helicoverpa virescens L. after it was stored for several days at different temperatures. Diet stored up to nine days at different temperatures (-14 to 27 degrees C) produced the same biological effect on H. virescens as freshly-prepared diet. Elevating the temperature of Bt stock solution to 76 degrees C as compared to 26 degrees C yielded significantly higher reading of apparent Cry1Ac concentration from MVP II, but not enough to elicit a significant biological response when these stock solutions were incorporated into insect artificial diet. These findings are important particularly when the confirmation of resistance is done at a distant location, such as Mexico, or when diet is shared between laboratories, and must be stored for later use, as in the case of international collaboration.

摘要

苏云金芽孢杆菌棉花杀虫蛋白(通常称为Bt棉花)在全球的采用已证明对种植者和环境有益。这种重要的转基因作物的有效性可能会受到其旨在控制的害虫对Bt棉花产生抗性的影响,这种现象有可能在一个国家出现,并通过昆虫迁徙传播到另一个国家。为了保持这种农业生物技术的有效性,监管机构已制定计划来减轻抗性的发展,研究机构也在不断监测重要害虫对Bt敏感性的变化。如果检测到Bt抗性,这一发现需要根据当前监管要求由独立实验室进行证实;这一过程面临诸多挑战。我们研究了添加Bt的饲料在不同温度下储存数天后对绿铃虫的生物活性。在不同温度(-14至27摄氏度)下储存长达九天的饲料对绿铃虫产生的生物效应与新鲜制备的饲料相同。将Bt储备溶液的温度从26摄氏度提高到76摄氏度,MVP II的表观Cry1Ac浓度读数显著更高,但当将这些储备溶液掺入昆虫人工饲料中时,不足以引发显著的生物反应。这些发现尤为重要,特别是当在遥远的地方(如墨西哥)进行抗性确认时,或者当饲料在实验室之间共享且必须储存以供后续使用时,就像国际合作的情况一样。

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