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Genetic Variation Affecting Host–Parasite Interactions: Different Genes Affect Different Aspects of Sigma Virus Replication and Transmission in Drosophila melanogaster

机译:遗传变异影响宿主-寄生虫的相互作用:不同的基因影响果蝇中Sigma病毒复制和传播的不同方面。

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摘要

In natural populations, genetic variation affects resistance to disease. Knowing how much variation exists, and understanding the genetic architecture of this variation, is important for medicine, for agriculture, and for understanding evolutionary processes. To investigate the extent and nature of genetic variation affecting resistance to pathogens, we are studying a tractable model system: Drosophila melanogaster and its natural pathogen the vertically transmitted sigma virus. We show that considerable genetic variation affects transmission of the virus from parent to offspring. However, maternal and paternal transmission of the virus is affected by different genes. Maternal transmission is a simple Mendelian trait: most of the genetic variation is explained by a polymorphism in ref(2)P, a gene already well known to affect resistance to sigma. In contrast, there is considerable genetic variation in paternal transmission that cannot be explained by ref(2)P and is caused by other loci on chromosome 2. Furthermore, we found no genetic correlation between paternal transmission of the virus and resistance to infection by the sigma virus following injection. This suggests that different loci affect viral replication and paternal transmission.
机译:在自然种群中,遗传变异会影响对疾病的抵抗力。知道存在多少变异,并了解这种变异的遗传结构,对于医学,农业以及理解进化过程都很重要。为了研究影响对病原体抗性的遗传变异的程度和性质,我们正在研究一个易于处理的模型系统:果蝇果蝇及其天然病原体垂直传播的西格玛病毒。我们表明,相当大的遗传变异影响病毒从父母到后代的传播。但是,病毒的母体和父体传播受到不同基因的影响。产妇传播是一种简单的孟德尔性状:大多数遗传变异是由ref(2)P的多态性解释的,ref(2)P是一种众所周知的影响σ抗性的基因。相比之下,父系传播中存在大量遗传变异,这不能由ref(2)P解释,并且是由2号染色体上的其他基因座引起的。此外,我们发现病毒的父系传播与抗性之间的遗传相关性注射后的sigma病毒。这表明不同的基因座影响病毒复制和父本传播。

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