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Parasite-host fitness trade-offs change with parasite identity: Genotype-specific interactions in a plant-pathogen system

机译:寄生虫-宿主适应性的取舍随着寄生虫身份的变化而变化:植物-病原体系统中基因型特异性相互作用

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Simultaneous effects of host and parasite in determining quantitative traits of infection have long been neglected in theoretical and experimental investigations of host-parasite coevolution with the notable exception of gene-for-gene resistance studies. A cross-infection experiment, using five lines of the plant Arabidopsis thaliana and two strains of its oomycete pathogen Hyaloperonospora parasitica, revealed that three traits traditionally considered those of the parasite (number of infected leaves, transmission success, and time until 50% transmission), differed among specific combinations of host and parasite lines, being determined by the two protagonists of the infection. However, the two parasite strains did not differ significantly for most measured phenotypic traits of the infection. Globally, transmission increased with increasing virulence among the different host-parasite combinations, as assumed by most models of evolution of virulence. Surprisingly, however, there was no general relationship between parasite and host fitness, estimated respectively as transmission and seed production. Only one of the two strains showed the expected significant negative genetic correlation between these two variables. Our results thus highlight the importance of taking into account both host and parasite genetic variation because their interaction can lead to unexpected evolutionary outcomes.
机译:在宿主和寄生虫协同进化的理论和实验研究中,宿主和寄生虫对确定感染数量特征的同时影响一直被忽视,但基因对基因的抗药性研究除外。交叉感染实验使用五株拟南芥植物株和两株卵菌病原体Hyaloperonospora parasitica进行了交叉感染实验,结果表明,传统上认为这三个特征是寄生虫的特征(感染叶片的数量,传播成功和传播至50%的时间)感染的两个主角决定了宿主和寄生虫系的特定组合之间的差异。但是,两种寄生虫菌株在大多数检测到的表型性状上没有显着差异。在全球范围内,传播的途径随着宿主宿主-寄生虫组合之间毒力的增加而增加,正如大多数毒力进化模型所假定的那样。然而,令人惊讶的是,寄生虫和寄主适应性之间没有一般的关系,分别通过传播和种子产量来估计。两个菌株中只有一个显示出这两个变量之间预期的显着负遗传相关性。因此,我们的结果强调了同时考虑宿主和寄生虫遗传变异的重要性,因为它们的相互作用可能导致意外的进化结果。

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