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Genome Sequence of Jaltomata Addresses Rapid Reproductive Trait Evolution and Enhances Comparative Genomics in the Hyper-Diverse Solanaceae

机译:Jaltomata的基因组序列解决了快速繁殖性状的进化并增强了超茄科的比较基因组学。

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摘要

Within the economically important plant family Solanaceae, Jaltomata is a rapidly evolving genus that has extensive diversity in flower size and shape, as well as fruit and nectar color, among its ∼80 species. Here, we report the whole-genome sequencing, assembly, and annotation, of one representative species (Jaltomata sinuosa) from this genus. Combining PacBio long reads (25×) and Illumina short reads (148×) achieved an assembly of ∼1.45 Gb, spanning ∼96% of the estimated genome. Ninety-six percent of curated single-copy orthologs in plants were detected in the assembly, supporting a high level of completeness of the genome. Similar to other Solanaceous species, repetitive elements made up a large fraction (∼80%) of the genome, with the most recently active element, Gypsy, expanding across the genome in the last 1–2 Myr. Computational gene prediction, in conjunction with a merged transcriptome data set from 11 tissues, identified 34,725 protein-coding genes. Comparative phylogenetic analyses with six other sequenced Solanaceae species determined that Jaltomata is most likely sister to Solanum, although a large fraction of gene trees supported a conflicting bipartition consistent with substantial introgression between Jaltomata and Capsicum after these species split. We also identified gene family dynamics specific to Jaltomata, including expansion of gene families potentially involved in novel reproductive trait development, and loss of gene families that accompanied the loss of self-incompatibility. This high-quality genome will facilitate studies of phenotypic diversification in this rapidly radiating group and provide a new point of comparison for broader analyses of genomic evolution across the Solanaceae.
机译:在具有重要经济意义的茄科植物中,Jaltomata是一个快速进化的属,在其约80种中,花的大小和形状以及果实和花蜜的颜色具有广泛的多样性。在这里,我们报告了该属的一个代表性物种(Jaltomata sinuosa)的全基因组测序,装配和注释。将PacBio的长读(25倍)和Illumina的短读(148倍)相结合,可实现约1.45 Gb的组装,覆盖了估计基因组的约96%。在装配中检测到百分之九十六的植物经过整理的单拷贝直系同源物,支持了高水平的基因组完整性。与其他茄科物种相似,重复元素构成了基因组的很大一部分(约80%),而最近活跃的元素吉普赛人则在最近的1-2 Myr中遍及整个基因组。计算基因预测与来自11个组织的合并的转录组数据集相结合,确定了34,725个蛋白质编码基因。与其他六种排序的茄科物种进行的系统进化分析比较确定,贾塔玛塔很可能是茄科的姊妹,尽管大部分基因树支持一个相互矛盾的分裂,与这些物种分裂后贾塔玛塔和辣椒的大量渗入相一致。我们还确定了特定于贾尔莫塔的基因家族动态,包括可能与新的生殖性状发展有关的基因家族的扩展,以及伴随自我不相容性丧失的基因家族的丧失。这种高质量的基因组将有助于在这个迅速辐射的人群中进行表型多样化的研究,并为比较茄科的基因组进化提供了新的比较点。

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