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High-quality assembly of the reference genome for scarlet sage, Salvia splendens, an economically important ornamental plant

机译:猩红鼠尾草(Salvia splendens)的参考基因组的高质量组装,一种重要的观赏植物

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Background Salvia splendens Ker-Gawler, scarlet or tropical sage, is a tender herbaceous perennial widely introduced and seen in public gardens all over the world. With few molecular resources, breeding is still restricted to traditional phenotypic selection, and the genetic mechanisms underlying phenotypic variation remain unknown. Hence, a high-quality reference genome will be very valuable for marker-assisted breeding, genome editing, and molecular genetics. Findings We generated 66 Gb and 37 Gb of raw DNA sequences, respectively, from whole-genome sequencing of a largely homozygous scarlet sage inbred line using Pacific Biosciences (PacBio) single-molecule real-time and Illumina HiSeq sequencing platforms. The PacBio de novo assembly yielded a final genome with a scaffold N50 size of 3.12 Mb and a total length of 808 Mb. The repetitive sequences identified accounted for 57.52% of the genome sequence, and 54,008 protein-coding genes were predicted collectively with ab initio and homology-based gene prediction from the masked genome. The divergence time between S. splendens and Salvia miltiorrhiza was estimated at 28.21 million years ago (Mya). Moreover, 3,797 species-specific genes and 1,187 expanded gene families were identified for the scarlet sage genome. Conclusions We provide the first genome sequence and gene annotation for the scarlet sage. The availability of these resources will be of great importance for further breeding strategies, genome editing, and comparative genomics among related species.
机译:背景Salvia splendens Ker-Gawler,猩红色或热带鼠尾草,是一种多年生的嫩草本多年生植物,在世界各地的公共花园中广泛使用。由于分子资源很少,育种仍然仅限于传统的表型选择,而表型变异的遗传机制仍然未知。因此,高质量的参考基因组对于标记辅助育种,基因组编辑和分子遗传学将非常有价值。结果我们使用Pacific Biosciences(PacBio)单分子实时和Illumina HiSeq测序平台,通过对一个纯合的猩红鼠尾草近交系的全基因组测序,分别生成了66 Gb和37 Gb的原始DNA序列。 PacBio de novo组装产生的最终基因组的支架N50大小为3.12 Mb,总长度为808 Mb。鉴定出的重复序列占基因组序列的57.52%,并且从被掩盖的基因组通过从头算和基于同源性的基因预测共同预测了54,008个蛋白质编码基因。 S. splendens和Salvia miltiorrhiza之间的发散时间估计为2821万年前(Mya)。此外,为猩红鼠尾草基因组鉴定了3,797个物种特异性基因和1,187个扩展基因家族。结论我们为猩红鼠尾草提供了第一个基因组序列和基因注释。这些资源的可用性对于进一步的育种策略,基因组编辑以及相关物种之间的比较基因组学至关重要。

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