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ABCC 转运蛋白介导昆虫对多种 Bt 毒素的抗性,这是通过大量分离群体分析揭示的。

ABCC transporters mediate insect resistance to multiple Bt toxins revealed by bulk segregant analysis.

机构信息

Department of Genetics, Universitat de València, Dr Moliner 50, 46100 Burjassot, Spain.

出版信息

BMC Biol. 2014 Jun 9;12:46. doi: 10.1186/1741-7007-12-46.

Abstract

BACKGROUND

Relatively recent evidence indicates that ABCC2 transporters play a main role in the mode of action of Bacillus thuringiensis (Bt) Cry1A-type proteins. Mapping of major Cry1A resistance genes has linked resistance to the ABCC2 locus in Heliothis virescens, Plutella xylostella, Trichoplusia ni and Bombyx mori, and mutations in this gene have been found in three of these Bt-resistant strains.

RESULTS

We have used a colony of Spodoptera exigua (Xen-R) highly resistant to a Bt commercial bioinsecticide to identify regions in the S. exigua genome containing loci for major resistance genes by using bulk segregant analysis (BSA). Results reveal a region containing three genes from the ABCC family (ABBC1, ABBC2 and ABBC3) and a mutation in one of them (ABBC2) as responsible for the resistance of S. exigua to the Bt commercial product and to its key Spodoptera-active ingredients, Cry1Ca. In contrast to all previously described mutations in ABCC2 genes that directly or indirectly affect the extracellular domains of the membrane protein, the ABCC2 mutation found in S. exigua affects an intracellular domain involved in ATP binding. Functional analyses of ABBC2 and ABBC3 support the role of both proteins in the mode of action of Bt toxins in S. exigua. Partial silencing of these genes with dsRNA decreased the susceptibility of wild type larvae to both Cry1Ac and Cry1Ca. In addition, reduction of ABBC2 and ABBC3 expression negatively affected some fitness components and induced up-regulation of arylphorin and repat5, genes that respond to Bt intoxication and that are found constitutively up-regulated in the Xen-R strain.

CONCLUSIONS

The current results show the involvement of different members of the ABCC family in the mode of action of B. thuringiensis proteins and expand the role of the ABCC2 transporter in B. thuringiensis resistance beyond the Cry1A family of proteins to include Cry1Ca.

摘要

背景

最近的证据表明,ABCC2 转运蛋白在苏云金芽孢杆菌(Bt)Cry1A 型蛋白的作用模式中起着主要作用。主要 Cry1A 抗性基因的定位已将抗性与 Heliothis virescens、Plutella xylostella、Trichoplusia ni 和 Bombyx mori 的 ABCC2 基因座联系起来,并且在这三个 Bt 抗性品系中发现了该基因的突变。

结果

我们使用对 Bt 商业生物杀虫剂高度抗性的 Spodoptera exigua(Xen-R)品系,通过大量分离分析(BSA)来鉴定 S. exigua 基因组中包含主要抗性基因座的区域。结果显示,一个包含 ABCC 家族三个基因(ABBC1、ABBC2 和 ABBC3)的区域和其中一个基因(ABBC2)的突变是 S. exigua 对 Bt 商业产品及其关键鳞翅目活性成分 Cry1Ca 抗性的原因。与 ABCC2 基因中直接或间接影响膜蛋白细胞外结构域的所有先前描述的突变相反,在 S. exigua 中发现的 ABCC2 突变影响了参与 ATP 结合的细胞内结构域。ABBC2 和 ABBC3 的功能分析支持这两种蛋白质在 S. exigua 中 Bt 毒素作用模式中的作用。用 dsRNA 部分沉默这些基因降低了野生型幼虫对 Cry1Ac 和 Cry1Ca 的敏感性。此外,ABBC2 和 ABBC3 表达的减少对一些适合度成分产生负面影响,并诱导了 arylphorin 和 repat5 的上调,这两个基因对 Bt 中毒有反应,并且在 Xen-R 品系中组成性地上调。

结论

目前的结果表明,ABCC 家族的不同成员参与了 B. thuringiensis 蛋白的作用模式,并将 ABCC2 转运蛋白在 B. thuringiensis 抗性中的作用扩展到 Cry1A 蛋白家族之外,包括 Cry1Ca。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aed6/4071345/93d56d7c6771/1741-7007-12-46-1.jpg

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