Whole-genome sequencing and analysis of two azaleas, Rhododendron ripense and Rhododendron kiyosumense.

Kenta Shirasawa, Nobuo Kobayashi, Akira Nakatsuka, Hideya Ohta, Sachiko Isobe
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引用次数: 8

Abstract

To enhance the genomics and genetics of azalea, the whole-genome sequences of two species of Rhododendron were determined and analysed in this study: Rhododendron ripense, the cytoplasmic donor and ancestral species of large-flowered and evergreen azalea cultivars; and Rhododendron kiyosumense, a native of Chiba prefecture (Japan) seldomly bred and cultivated. A chromosome-level genome sequence assembly of R. ripense was constructed by single-molecule real-time sequencing and genetic mapping, while the genome sequence of R. kiyosumense was assembled using the single-tube long fragment read sequencing technology. The R. ripense genome assembly contained 319 contigs (506.7 Mb; N50 length: 2.5 Mb) and was assigned to the genetic map to establish 13 pseudomolecule sequences. On the other hand, the genome of R. kiyosumense was assembled into 32,308 contigs (601.9 Mb; N50 length: 245.7 kb). A total of 34,606 genes were predicted in the R. ripense genome, while 35,785 flower and 48,041 leaf transcript isoforms were identified in R. kiyosumense through Iso-Seq analysis. Overall, the genome sequence information generated in this study enhances our understanding of genome evolution in the Ericales and reveals the phylogenetic relationship of closely related species. This information will also facilitate the development of phenotypically attractive azalea cultivars.

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两种杜鹃花的全基因组测序与分析:成熟杜鹃花(Rhododendron ripense)和清水杜鹃花(Rhododendron kiyosumense)。
为了加强杜鹃花的基因组学和遗传学研究,本研究对杜鹃花两种植物的全基因组序列进行了测定和分析:一种是杜鹃花的细胞质供体和祖种——成熟杜鹃花;清生杜鹃(Rhododendron kiyosumense),原产于千叶县(日本),很少繁殖和栽培。采用单分子实时测序和遗传作图技术,构建了成熟鼠的染色体水平基因组序列组装;采用单管长片段读取测序技术,构建了清生鼠的染色体水平基因组序列组装。成熟鼠基因组共包含319个contigs (506.7 Mb;N50长度:2.5 Mb),并分配到遗传图谱中,建立13个伪分子序列。另一方面,清生河鼠的基因组被组装成32308个contigs (601.9 Mb;N50长度:245.7 kb)。通过Iso-Seq分析,共预测到34606个成熟红豆基因组基因,同时在清生红豆中鉴定到35785个花转录异构体和48041个叶转录异构体。总的来说,本研究中产生的基因组序列信息增强了我们对埃里卡莱斯基因组进化的理解,揭示了近缘物种的系统发育关系。这些信息也将有助于开发具有表型吸引力的杜鹃花品种。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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