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Adaptation to enemy shifts: rapid resistance evolution to local Vibrio spp. in invasive Pacific oysters

机译:适应敌人的转变:对当地弧菌的快速抵抗力进化。在入侵太平洋牡蛎中

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摘要

One hypothesis for the success of invasive species is reduced pathogen burden, resulting from a release from infections or high immunological fitness of invaders. Despite strong selection exerted on the host, the evolutionary response of invaders to newly acquired pathogens has rarely been considered. The two independent and genetically distinct invasions of the Pacific oyster Crassostrea gigas into the North Sea represent an ideal model system to study fast evolutionary responses of invasive populations. By exposing both invasion sources to ubiquitous and phylogenetically diverse pathogens (Vibrio spp.), we demonstrate that within a few generations hosts adapted to newly encountered pathogen communities. However, local adaptation only became apparent in selective environments, i.e. at elevated temperatures reflecting patterns of disease outbreaks in natural populations. Resistance against sympatric and allopatric Vibrio spp. strains was dominantly inherited in crosses between both invasion sources, resulting in an overall higher resistance of admixed individuals than pure lines. Therefore, we suggest that a simple genetic resistance mechanism of the host is matched to a common virulence mechanism shared by local Vibrio strains. This combination might have facilitated a fast evolutionary response that can explain another dimension of why invasive species can be so successful in newly invaded ranges.
机译:入侵物种成功的一个假说是减少了病原体的负担,这是由于感染的释放或入侵者的免疫学适应性强。尽管在宿主上施加了强大的选择,但很少考虑入侵者对新获得的病原体的进化反应。太平洋牡蛎Crassostrea gigas对北海的两次独立且遗传上不同的入侵代表了研究入侵种群快速进化反应的理想模型系统。通过将两种入侵源暴露于普遍存在的和系统发育多样的病原体(弧菌属),我们证明了在几代之内,宿主就适应了新遇到的病原体群落。然而,局部适应仅在选择性环境中才变得明显,即在升高的温度下反映自然人群中疾病暴发的模式。抵抗同胞和异源弧菌。菌株主要在两个入侵源之间的杂交中遗传,导致混合个体的整体抗性高于纯品系。因此,我们建议宿主的简单遗传抗性机制与本地弧菌菌株共享的常见毒力机制相匹配。这种结合可能促进了快速的进化反应,这可以解释为什么入侵物种在新近入侵的范围内如此成功的另一个方面。

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