Inheritance of Cry2Ab2 resistance in two Helicoverpa zea(Lepidoptera: Noctuidae) populations resistant to single- and dual-Bacillus thuringiensis proteins.

IF 3.6 3区 生物学 Q1 ZOOLOGY Journal of invertebrate pathology Pub Date : 2024-11-16 DOI:10.1016/j.jip.2024.108237
Fangneng Huang, Wenbo Yu, Graham P Head, Ying Niu, Caroline Sakunoa, Shucong Lin, Tiago Silva, Bhavana Patla
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Abstract

Cry2Ab2 is a Bacillus thuringiensis (Bt) protein that has been pyramided with Cry1A.105 in transgenic maize and Cry1Ac in cotton to control some major lepidopteran pests including the corn earworm/bollworm, Helicoverpa zea (Boddie). However, the widespread occurrence of resistance of this pest to the pyramided Cry1A/Cry2A crops in the southern region of the United State has become a threat to the sustainability of the technology. In this study, multiple genetic crosses and backcrosses were developed to characterize the inheritance of Cry2Ab2 resistance in two H. zea populations resistant to the single protein, Cry2Ab2 (RR2Ab) and the dual proteins in Bt maize, Cry1A.105/Cry2Ab2 (RRVT2P). Diet-overlay bioassays with F1 hybrids from reciprocal crosses between a susceptible and the resistant populations showed that the Cry2Ab2 resistance in both RR2Ab and RRVT2P was inherited autosomally and non-recessively. Segregation tests in F2 and backcrossed generations indicated that the resistance was likely controlled by more than one locus. The effective dominance levels of the resistance estimated at each of three discriminating concentrations were similar between RR2Ab and RRVT2P, ranging from incompletely dominant to incompletely recessive. The similar inheritance observed in RR2Ab and RRVT2P suggests that the Cry2Ab2 resistance is independent from the Cry1A.105 resistance. The non-recessive inheritance of the resistance could be an important factor causing the widespread resistance of this insect to the Cry1A/Cry2A crops in the southern region. Implications of the observed inheritance properties in Bt crop resistance management are discussed.

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两个对苏云金杆菌单蛋白和双蛋白抗性的 Helicoverpa zea(鳞翅目:夜蛾科)种群的 Cry2Ab2 抗性遗传。
Cry2Ab2 是苏云金芽孢杆菌(Bt)的一种蛋白质,它与转基因玉米中的 Cry1A.105 和棉花中的 Cry1Ac 成金字塔结构,用于控制一些主要的鳞翅目害虫,包括玉米穗虫/棉铃虫 Helicoverpa zea (Boddie)。然而,在美国南部地区,这种害虫对金字塔形的 Cry1A/Cry2A 作物普遍产生抗性,对该技术的可持续性构成了威胁。在这项研究中,我们进行了多次遗传杂交和回交,以确定两个对单一蛋白 Cry2Ab2(RR2Ab)和 Bt 玉米中的双蛋白 Cry1A.105/Cry2Ab2 (RRVT2P)具有抗性的 H. zea 群体中 Cry2Ab2 抗性的遗传特征。用易感群体和抗性群体互交产生的 F1 代杂交种进行的饮食覆盖生物测定表明,RR2Ab 和 RRVT2P 中的 Cry2Ab2 抗性都是常染色体遗传,没有后代。F2 代和回交代的分离测试表明,抗性可能受一个以上的基因座控制。RR2Ab 和 RRVT2P 在三个鉴别浓度下估计的抗性有效显性水平相似,从不完全显性到不完全隐性不等。在 RR2Ab 和 RRVT2P 中观察到的相似遗传表明,Cry2Ab2 抗性独立于 Cry1A.105 抗性。抗性的非继代遗传可能是导致该昆虫对南方地区的 Cry1A/Cry2A 作物产生广泛抗性的一个重要因素。本文讨论了观察到的遗传特性对 Bt 作物抗性管理的影响。
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来源期刊
CiteScore
6.10
自引率
5.90%
发文量
94
审稿时长
1 months
期刊介绍: The Journal of Invertebrate Pathology presents original research articles and notes on the induction and pathogenesis of diseases of invertebrates, including the suppression of diseases in beneficial species, and the use of diseases in controlling undesirable species. In addition, the journal publishes the results of physiological, morphological, genetic, immunological and ecological studies as related to the etiologic agents of diseases of invertebrates. The Journal of Invertebrate Pathology is the adopted journal of the Society for Invertebrate Pathology, and is available to SIP members at a special reduced price.
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