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Comparative genomics and phylogenetic discordance of cultivated tomato and close wild relatives

机译:栽培番茄与野生近缘种的比较基因组学和系统发育差异

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摘要

>Background. Studies of ancestry are difficult in the tomato because it crosses with many wild relatives and species in the tomato clade that have diverged very recently. As a result, the phylogeny in relation to its closest relatives remains uncertain. By using the coding sequence from Solanum lycopersicum, S. galapagense, S. pimpinellifolium, S. corneliomuelleri, and S. tuberosum and the genomic sequence from S. lycopersicum ‘Heinz’, an heirloom line, S. lycopersicum ‘Yellow Pear’, and two of cultivated tomato’s closest relatives, S. galapagense and S. pimpinellifolium, we have aimed to resolve the phylogenies of these closely related species as well as identify phylogenetic discordance in the reference cultivated tomato.>Results. Divergence date estimates suggest that the divergence of S. lycopersicum, S. galapagense, and S. pimpinellifolium happened less than 0.5 MYA. Phylogenies based on 8,857 coding sequences support grouping of S. lycopersicum and S. galapagense, although two secondary trees are also highly represented. A total of 25 genes in our analysis had sites with evidence of positive selection along the S. lycopersicum lineage. Whole genome phylogenies showed that while incongruence is prevalent in genomic comparisons between these genotypes, likely as a result of introgression and incomplete lineage sorting, a primary phylogenetic history was strongly supported.>Conclusions. Based on analysis of these genotypes, S. galapagense appears to be closely related to S. lycopersicum, suggesting they had a common ancestor prior to the arrival of an S. galapagense ancestor to the Galápagos Islands, but after divergence of the sequenced S. pimpinellifolium. Genes showing selection along the S. lycopersicum lineage may be important in domestication or selection occurring post-domestication. Further analysis of intraspecific data in these species will help to establish the evolutionary history of cultivated tomato. The use of an heirloom line is helpful in deducing true phylogenetic information of S. lycopersicum and identifying regions of introgression from wild species.
机译:>背景。在番茄中很难进行血统研究,因为它与许多最近分化的番茄进化枝中的野生近缘种和物种相交。结果,相对于其近亲的系统发育仍不确定。通过使用来自茄属茄科,加拉帕金森菌,平果链霉菌,S.corneliomuelleri和马铃薯的编码序列以及来自传粉系S.lycopersicum'Heinz'的基因组序列,S。lycopersicum'Yellow Pear'和栽培番茄的两个近亲S. galapagense和S. pimpinellifolium,我们旨在解决这些密切相关物种的系统发育,并确定参照栽培番茄的系统发育不一致性。>结果。估计表明,S。lycopersicum,S。galapagense和S. pimpinellifolium的发散小于0.5 MYA。基于8,857个编码序列的系统发育支持番茄链球菌和加拉帕尔链球菌的分组,尽管两个次生树也得到了高度体现。在我们的分析中,总共有25个基因的位点沿番茄链球菌谱系具有阳性选择的证据。全基因组系统发育表明,尽管在这些基因型之间的基因组比较中普遍存在不一致,这很可能是由于基因渗入和谱系分类不完全的结果,但强烈支持了主要的系统发育史。>结论。。基于对这些基因型的分析,S。galapagense似乎与 S密切相关。 lycopersicum ,表明它们在 S到来之前就有共同的祖先。 galapagense 的祖先到加拉帕戈斯群岛,但在顺序排列的 S分歧之后。薄荷草。显示沿 S选择的基因。 lycopersicum 谱系对于驯化或驯养后发生的选择可能很重要。对这些物种的种内数据进行进一步分析将有助于建立栽培番茄的进化史。使用传家宝系有助于推断 S的真实系统发育信息。 lycopersicum 并确定野生物种的渗入区域。

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