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ABCC2 基因突变导致草地贪夜蛾对 Cry1Fa 和 Cry1A.105 杀虫蛋白产生抗性。

Mutational disruption of the ABCC2 gene in fall armyworm, Spodoptera frugiperda, confers resistance to the Cry1Fa and Cry1A.105 insecticidal proteins.

机构信息

Monsanto Company, Chesterfield, Missouri, USA.

Monsanto Company, Cambridge, Massachusetts, USA.

出版信息

Sci Rep. 2018 May 8;8(1):7255. doi: 10.1038/s41598-018-25491-9.

Abstract

The use of Bt proteins in crops has revolutionized insect pest management by offering effective season-long control. However, field-evolved resistance to Bt proteins threatens their utility and durability. A recent example is field-evolved resistance to Cry1Fa and Cry1A.105 in fall armyworm (Spodoptera frugiperda). This resistance has been detected in Puerto Rico, mainland USA, and Brazil. A S. frugiperda population with suspected resistance to Cry1Fa was sampled from a maize field in Puerto Rico and used to develop a resistant lab colony. The colony demonstrated resistance to Cry1Fa and partial cross-resistance to Cry1A.105 in diet bioassays. Using genetic crosses and proteomics, we show that this resistance is due to loss-of-function mutations in the ABCC2 gene. We characterize two novel mutant alleles from Puerto Rico. We also find that these alleles are absent in a broad screen of partially resistant Brazilian populations. These findings confirm that ABCC2 is a receptor for Cry1Fa and Cry1A.105 in S. frugiperda, and lay the groundwork for genetically enabled resistance management in this species, with the caution that there may be several distinct ABCC2 resistances alleles in nature.

摘要

Bt 蛋白在作物中的使用通过提供有效的季节性长效控制,彻底改变了害虫管理。然而,田间进化出对 Bt 蛋白的抗性威胁到它们的效用和持久性。最近的一个例子是秋粘虫(Spodoptera frugiperda)对 Cry1Fa 和 Cry1A.105 的田间进化抗性。这种抗性已在波多黎各、美国大陆和巴西检测到。从波多黎各的一个玉米田中采集了一个疑似对 Cry1Fa 具有抗性的 S. frugiperda 种群,并用于建立一个抗性实验室群体。该群体在饮食生物测定中表现出对 Cry1Fa 的抗性和对 Cry1A.105 的部分交叉抗性。通过遗传杂交和蛋白质组学,我们表明这种抗性是由于 ABCC2 基因的功能丧失突变引起的。我们从波多黎各鉴定了两个新的突变等位基因。我们还发现这些等位基因在广泛的部分抗性巴西种群中不存在。这些发现证实了 ABCC2 是 S. frugiperda 中 Cry1Fa 和 Cry1A.105 的受体,并为该物种的遗传抗性管理奠定了基础,但需要注意的是,自然界中可能存在几种不同的 ABCC2 抗性等位基因。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3e7e/5940765/6a88ab0ae731/41598_2018_25491_Fig1_HTML.jpg

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