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Novel resistance to Cydia pomonella granulovirus (CpGV) in codling moth shows autosomal and dominant inheritance and confers cross-resistance to different CpGV genome groups

机译:到苹果蠹蛾颗粒体病毒(CpGV)新颖性在苹果蠹蛾示出了常染色体显性遗传和和赋予对不同基因组组交叉耐药CpGV

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摘要

Commercial Cydia pomonella granulovirus (CpGV) products have been successfully applied to control codling moth (CM) in organic and integrated fruit production for more than 30 years. Since 2005, resistance against the widely used isolate CpGV-M has been reported from different countries in Europe. The inheritance of this so-called type I resistance is dominant and linked to the Z chromosome. Recently, a second form (type II) of CpGV resistance in CM was reported from a field population (NRW-WE) in Germany. Type II resistance confers reduced susceptibility not only to CpGV-M but to most known CpGV isolates and it does not follow the previously described Z-linked inheritance of type I resistance. To further analyze type II resistance, two CM strains, termed CpR5M and CpR5S, were generated from parental NRW-WE by repeated mass crosses and selection using the two isolates CpGV-M and CpGV-S, respectively. Both CpR5M and CpR5S were considered to be genetically homogeneous for the presence of the resistance allele(s). By crossing and backcrossing experiments with a susceptible CM strain, followed by resistance testing of the offspring, an autosomal dominant inheritance of resistance was elucidated. In addition, cross-resistance to CpGV-M and CpGV-S was detected in both strains, CpR5M and CpR5S. To test the hypothesis that the autosomal inheritance of type II resistance was caused by a large interchromosomal rearrangement involving the Z chromosome, making type I resistance appear to be autosomal in these strains; fluorescence in situ hybridization with bacterial artificial chromosome probes (BAC-FISH) was used to physically map the Z chromosomes of different CM strains. Conserved synteny of the Z-linked genes in CpR5M and other CM strains rejects this hypothesis and argues for a novel genetic and functional mode of resistance in CM populations with type II resistance.
机译:商用Cydia pomonella granulovirus(CpGV)产品已成功应用于控制有机和综合水果生产中的苹果mo蛾(CM)。自2005年以来,欧洲不同国家/地区都报告了对广泛使用的分离CpGV-M的耐药性。这种所谓的I型抗性的遗传是显性的,并且与Z染色体相关。最近,从德国的一个野外种群(NRW-WE)报道了CM中CpGV抗性的第二种形式(II型)。 II型抗性不仅降低了对CpGV-M的敏感性,而且降低了对大多数已知CpGV分离株的敏感性,并且不遵循先前描述的I型抗性的Z连锁遗传。为了进一步分析II型抗性,通过重复的质量杂交并分别使用两个分离株CpGV-M和CpGV-S从亲本NRW-WE产生了两个称为CpR5M和CpR5S的CM菌株。对于抗性等位基因的存在,CpR5M和CpR5S都被认为在遗传上是同质的。通过对易感CM菌株进行杂交和回交实验,然后对后代进行抗性测试,阐明了抗性的常染色体显性遗传。另外,在两个菌株CpR5M和CpR5S中均检测到对CpGV-M和CpGV-S的交叉抗性。为了检验以下假设:II型抗性的常染色体遗传是由涉及Z染色体的较大的染色体间重排引起的,使得这些菌株中I型抗性似乎是常染色体的。使用细菌人工染色体探针(BAC-FISH)进行荧光原位杂交,以物理方式绘制不同CM菌株的Z染色体图。 CpR5M和其他CM菌株中Z连锁基因的保守同位拒绝了这一假设,并为具有II型抗性的CM人群提出了一种新颖的抗性遗传和功能模式。

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