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首页> 外文期刊>Journal of Invertebrate Pathology >Inheritance of resistance to Bacillus thuringiensis Cry1Ab protein in the sugarcane borer (Lepidoptera: Crambidae)
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Inheritance of resistance to Bacillus thuringiensis Cry1Ab protein in the sugarcane borer (Lepidoptera: Crambidae)

机译:甘蔗蛀虫中对苏云金芽孢杆菌Cry1Ab蛋白抗性的遗传(鳞翅目:Cra科)

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摘要

Inheritance traits of a Cry1Ab-resistant strain of the sugarcane borer, Diatraea saccharalis (F.) were analyzed using various genetic crosses. Reciprocal parental crosses between Cry1Ab-susceptible and Cry1Ab-resistant populations, F sub(1) by F sub(1) crosses, and backcrosses of F sub(1) with the Cry1Ab-resistant population were successfully completed. Larval mortality of the parental and cross-populations were assayed on Cry1Ab diet and Bacillus thuringiensis (Bt)-corn leaf tissue. Maternal effects and sex linkage were examined by comparing the larval mortality between the two F sub(1) populations. Dominance levels of resistance were measured by comparing the larval mortality of the Cry1Ab-resistant, -susceptible, and -heterozygous populations. Number of genes associated with the resistance was evaluated by fitting the observed mortality of F sub(2) and backcross populations with a Mendelian monogenic inheritance model. Cry1Ab resistance in D. saccharalis was likely inherited as a single or a few tightly linked autosomal genes. The resistance was incompletely recessive on Bt corn leaf tissue, while the effective dominance levels (D sub(M) sub(L)) of resistance increased as Cry1Ab concentrations decreased with Cry1Ab-treated diet. D sub(M) sub(L) estimated based on larval mortality on intact Bt corn plants reported in a previous study ranged from 0.08 to 0.26. This variability in D sub(M) sub(L) levels of Cry1Ab resistance in D. saccharalis suggests that Bt corn hybrids must express a sufficient dose of Bt proteins to make the resistance genes functionally recessive. Thus, Bt resistant heterozygous individuals can be killed as desired in the ''high /dose refuge'' resistance management strategy for Bt corn.
机译:使用多种遗传杂交方法分析了抗Cry1Ab甘蔗蛀虫Diatraea saccharalis(F.)的遗传特性。 Cry1Ab易感人群和Cry1Ab耐药人群之间的亲本杂交,F sub(1)与F sub(1)杂交以及F sub(1)与Cry1Ab抗性群体的回交已成功完成。在Cry1Ab饮食和苏云金芽孢杆菌(Bt)-玉米叶组织上测定了亲本和跨种群的幼虫死亡率。通过比较两个F sub(1)种群之间的幼虫死亡率,检查了产妇效应和性别联系。通过比较耐Cry1Ab,易感和杂合子种群的幼虫死亡率来衡量耐药的优势水平。通过使用孟德尔单基因遗传模型拟合观察到的F sub(2)和回交种群的死亡率来评估与抗性相关的基因数量。糖衣藻的Cry1Ab抗性可能是作为单个或几个紧密相连的常染色体基因遗传的。抗性在Bt玉米叶片组织上不完全隐性,而抗性的有效优势水平(D sub(M)sub(L))随Cry1Ab处理饮食的Cry1Ab浓度降低而增加。根据先前研究中报告的完整Bt玉米植株幼虫死亡率估算的D sub(M)sub(L)为0.08至0.26。糖衣藻中Cry1Ab抗药性的D sub(M)sub(L)水平的这种可变性表明,Bt玉米杂交种必须表达足够剂量的Bt蛋白,以使抗性基因功能隐性。因此,可以在Bt玉米的“高/剂量避难所”抗性管理策略中根据需要杀死Bt抗性杂合个体。

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