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Identifying Genetic Signatures of Natural Selection Using Pooled Population Sequencing in Picea abies

机译:利用云杉的合并种群测序鉴定自然选择的遗传特征

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摘要

The joint inference of selection and past demography remain a costly and demanding task. We used next generation sequencing of two pools of 48 Norway spruce mother trees, one corresponding to the Fennoscandian domain, and the other to the Alpine domain, to assess nucleotide polymorphism at 88 nuclear genes. These genes are candidate genes for phenological traits, and most belong to the photoperiod pathway. Estimates of population genetic summary statistics from the pooled data are similar to previous estimates, suggesting that pooled sequencing is reliable. The nonsynonymous SNPs tended to have both lower frequency differences and lower FST values between the two domains than silent ones. These results suggest the presence of purifying selection. The divergence between the two domains based on synonymous changes was around 5 million yr, a time similar to a recent phylogenetic estimate of 6 million yr, but much larger than earlier estimates based on isozymes. Two approaches, one of them novel and that considers both FST and difference in allele frequencies between the two domains, were used to identify SNPs potentially under diversifying selection. SNPs from around 20 genes were detected, including genes previously identified as main target for selection, such as PaPRR3 and PaGI.
机译:选择和过去人口统计学的联合推论仍然是一项昂贵而艰巨的任务。我们使用下一代测序技术对48个挪威云杉母树的两个库进行了测序,一个库对应于Fennoscandian域,另一库对应于Alpine域,以评估88个核基因的核苷酸多态性。这些基因是物候性状的候选基因,并且大多数属于光周期途径。从汇总数据中得出的群体遗传总结统计数据的估算值与之前的估算值相似,表明汇总测序是可靠的。非同义SNP往往在两个域之间比无声SNP具有更低的频率差和更低的FST值。这些结果表明存在纯化选择。基于同义变化的两个域之间的差异大约为500万年,这个时间与最近的系统发育估计600万年相似,但是比基于同工酶的早期估计大得多。两种方法,其中一种是新颖的,同时考虑了FST和两个结构域之间的等位基因频率差异,被用来识别可能在多样化选择下的SNP。检测到来自大约20个基因的SNP,包括先前被鉴定为主要选择目标的基因,例如PaPRR3和PaGI。

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