Mismatch between lab-generated and field-evolved resistance to transgenic Bt crops in Helicoverpa zea

Cry1Ac公司 苏云金杆菌 生物 美洲棉铃虫 转基因玉米 铃夜蛾属 遗传学 转基因作物 基因 有害生物分析 抗性(生态学) 转基因 生物技术 农学 夜蛾科 植物 细菌
作者
Andrew W. Legan,Carson W. Allan,Zoe N. Jensen,Benjamin A. Degain,Fei Yang,David L. Kerns,Kyle M. Benowitz,Jeffrey A. Fabrick,Xianchun Li,Yves Carrière,Luciano M. Matzkin,Bruce E. Tabashnik
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:121 (47)
标识
DOI:10.1073/pnas.2416091121
摘要

Transgenic crops producing crystalline (Cry) proteins from the bacterium Bacillus thuringiensis (Bt) have been used extensively to control some major crop pests. However, many populations of the noctuid moth Helicoverpa zea , one of the most important crop pests in the United States, have evolved practical resistance to several Cry proteins including Cry1Ac. Although mutations in single genes that confer resistance to Cry proteins have been identified in lab-selected and gene-edited strains of H. zea and other lepidopteran pests, the genetic basis of field-evolved resistance to Cry proteins in H. zea has remained elusive. We used a genomic approach to analyze the genetic basis of field-evolved resistance to Cry1Ac in 937 H. zea derived from 17 sites in seven states of the southern United States. We found evidence for extensive gene flow among all populations studied. Field-evolved resistance was not associated with mutations in 20 single candidate genes previously implicated in resistance or susceptibility to Cry proteins in H. zea or other lepidopterans. Instead, resistance in field samples was associated with increased copy number of a cluster of nine trypsin genes. However, trypsin gene amplification occurred in a susceptible sample and not in all resistant samples, implying that this amplification does not always confer resistance and mutations in other genes also contribute to field-evolved resistance to Cry1Ac in H. zea . The mismatch between lab-generated and field-evolved resistance in H. zea is unlike other cases of Bt resistance and reflects challenges for managing this pest.

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