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Research Article | Open Access

Chromosome-level genome assembly provides insights into the genetic diversity, evolution, and flower development of Prunus conradinae

Songtao Jiu1Muhammad Aamir Manzoor1Baozheng Chen2Yan Xu1Muhammad Abdullah1Xinyu Zhang1Zhengxin Lv1Jijun Zhu3Jun Cao1Xunju Liu1Jiyuan Wang1Ruie Liu1Shiping Wang1Yang Dong2( )Caixi Zhang1( )
Department of Plant Science, School of Agriculture and Biology, Shanghai Jiao Tong University, Shanghai, China
Province Key Laboratory, Biological Big Data College, Yunnan Agricultural University, Kunming, China
Shanghai Botanical Garden, Shanghai, People’s Republic of China
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Abstract

Prunus conradinae, a valuable flowering cherry belonging to the Rosaceae family subgenus Cerasus and endemic to China, has high economic and ornamental value. However, a high-quality P. conradinae genome is unavailable, which hinders our understanding of its genetic relationships and phylogenesis, and ultimately, the possibility of mining of key genes for important traits. Herein, we have successfully assembled a chromosome-scale P. conradinae genome, identifying 31,134 protein-coding genes, with 98.22% of them functionally annotated. Furthermore, we determined that repetitive sequences constitute 46.23% of the genome. Structural variation detection revealed some syntenic regions, inversions, translocations, and duplications, highlighting the genetic diversity and complexity of Cerasus. Phylogenetic analysis demonstrated that P. conradinae is most closely related to P. campanulata, from which it diverged ~ 19.1 million years ago (Mya). P. avium diverged earlier than P. cerasus and P. conradinae. Similar to the other Prunus species, P. conradinae underwent a common whole-genome duplication event at ~ 138.60 Mya. Furthermore, 79 MADS-box members were identified in P. conradinae, accompanied by the expansion of the SHORT VEGETATIVE PHASE subfamily. Our findings shed light on the complex genetic relationships, and genome evolution of P. conradinae and will facilitate research on the molecular breeding and functions of key genes related to important horticultural and economic characteristics of subgenus Cerasus.

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Molecular Horticulture
Article number: 25

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Cite this article:
Jiu S, Manzoor MA, Chen B, et al. Chromosome-level genome assembly provides insights into the genetic diversity, evolution, and flower development of Prunus conradinae. Molecular Horticulture, 2024, 4(2): 25. https://doi.org/10.1186/s43897-024-00101-7

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Received: 02 April 2024
Accepted: 21 May 2024
Published: 19 June 2024
© The Author(s) 2024.

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