Bourgeois Yann, Roulin Anne C, Müller Kristina, Ebert Dieter
Zoological Institute, Basel University, Vesalgasse 1, 4051, Basel, Switzerland.
Institute of Plant and Microbial Biology, Zollikerstrasse 107, 8008, Zürich, Switzerland.
Evolution. 2017 Apr;71(4):1106-1113. doi: 10.1111/evo.13209. Epub 2017 Mar 17.
Because parasitism is thought to play a major role in shaping host genomes, it has been predicted that genomic regions associated with resistance to parasites should stand out in genome scans, revealing signals of selection above the genomic background. To test whether parasitism is indeed such a major factor in host evolution and to better understand host-parasite interaction at the molecular level, we studied genome-wide polymorphisms in 97 genotypes of the planktonic crustacean Daphnia magna originating from three localities across Europe. Daphnia magna is known to coevolve with the bacterial pathogen Pasteuria ramosa for which host genotypes (clonal lines) are either resistant or susceptible. Using association mapping, we identified two genomic regions involved in resistance to P. ramosa, one of which was already known from a previous QTL analysis. We then performed a naïve genome scan to test for signatures of positive selection and found that the two regions identified with the association mapping further stood out as outliers. Several other regions with evidence for selection were also found, but no link between these regions and phenotypic variation could be established. Our results are consistent with the hypothesis that parasitism is driving host genome evolution.
由于寄生现象被认为在塑造宿主基因组方面发挥着重要作用,因此据预测,与寄生虫抗性相关的基因组区域在基因组扫描中应格外突出,从而揭示出高于基因组背景的选择信号。为了检验寄生现象是否确实是宿主进化中的一个主要因素,并在分子水平上更好地理解宿主与寄生虫的相互作用,我们研究了来自欧洲三个地区的97种浮游甲壳动物大型溞基因型的全基因组多态性。已知大型溞与细菌病原体罗氏巴氏杆菌共同进化,宿主基因型(克隆系)对该病原体要么具有抗性,要么易感。通过关联作图,我们确定了两个与抗罗氏巴氏杆菌有关的基因组区域,其中一个区域在之前的数量性状位点分析中就已为人所知。然后,我们进行了一次简单的基因组扫描以检测正选择信号,结果发现通过关联作图确定的这两个区域作为异常值进一步凸显出来。还发现了其他几个有选择证据的区域,但这些区域与表型变异之间无法建立联系。我们的结果与寄生现象驱动宿主基因组进化这一假设相符。