Davik Jahn, Røen Dag, Lysøe Erik, Buti Matteo, Rossman Simeon, Alsheikh Muath, Aiden Erez Lieberman, Dudchenko Olga, Sargent Daniel James
Department of Molecular Plant Biology, Norwegian Institute of Bioeconomy Research, Ås, Norway.
Graminor Breeding Ltd., Ås, Norway.
PLoS One. 2022 Mar 16;17(3):e0265096. doi: 10.1371/journal.pone.0265096. eCollection 2022.
Rubus idaeus L. (red raspberry), is a perennial woody plant species of the Rosaceae family that is widely cultivated in the temperate regions of world and is thus an economically important soft fruit species. It is prized for its flavour and aroma, as well as a high content of healthful compounds such as vitamins and antioxidants. Breeding programs exist globally for red raspberry, but variety development is a long and challenging process. Genomic and molecular tools for red raspberry are valuable resources for breeding. Here, a chromosome-length genome sequence assembly and related gene predictions for the red raspberry cultivar 'Anitra' are presented, comprising PacBio long read sequencing scaffolded using Hi-C sequence data. The assembled genome sequence totalled 291.7 Mbp, with 247.5 Mbp (84.8%) incorporated into seven sequencing scaffolds with an average length of 35.4 Mbp. A total of 39,448 protein-coding genes were predicted, 75% of which were functionally annotated. The seven chromosome scaffolds were anchored to a previously published genetic linkage map with a high degree of synteny and comparisons to genomes of closely related species within the Rosoideae revealed chromosome-scale rearrangements that have occurred over relatively short evolutionary periods. A chromosome-level genomic sequence of R. idaeus will be a valuable resource for the knowledge of its genome structure and function in red raspberry and will be a useful and important resource for researchers and plant breeders.
树莓(Rubus idaeus L.),是蔷薇科的一种多年生木本植物,在世界温带地区广泛种植,是一种具有重要经济价值的软果品种。它因其风味和香气,以及高含量的有益化合物如维生素和抗氧化剂而备受珍视。全球都有针对红树莓的育种计划,但品种培育是一个漫长且具有挑战性的过程。红树莓的基因组和分子工具是育种的宝贵资源。在此,我们展示了红树莓品种‘阿尼特拉’的染色体水平基因组序列组装及相关基因预测,该组装使用了基于Hi-C序列数据搭建的PacBio长读长测序。组装后的基因组序列总计291.7 Mbp,其中247.5 Mbp(84.8%)整合到7个测序支架中,平均长度为35.4 Mbp。共预测出39,448个蛋白质编码基因,其中75%进行了功能注释。这7个染色体支架以高度的共线性锚定到先前发表的遗传连锁图谱上,与蔷薇亚科内近缘物种的基因组比较揭示了在相对较短的进化时期内发生的染色体尺度重排。树莓的染色体水平基因组序列对于了解其在红树莓中的基因组结构和功能将是一个宝贵资源,对于研究人员和植物育种者来说将是一个有用且重要的资源。