A chromosome-level genome assembly provides insights into Cornus wilsoniana evolution, oil biosynthesis, and floral bud development

Author:

He Zhenxiang1,Chao Haoyu12,Zhou Xinkai1,Ni Qingyang2,Hu Yueming2,Yu Ranran1,Wang Minghuai3,Li Changzhu4,Chen Jingzhen4,Chen Yunzhu4,Chen Yong5,Cui Chunyi6,Zhang Liangbo47,Chen Ming2,Chen Dijun1

Affiliation:

1. Nanjing University State Key Laboratory of Pharmaceutical Biotechnology, School of Life Sciences, , Nanjing 210023 , China

2. Zhejiang University Department of Bioinformatics, College of Life Sciences, , Hangzhou 310058 , China

3. Forest Protection Department, Guangdong Academy of Forestry , Guangzhou 510520 , China

4. Hunan Academy of Forestry State Key Laboratory of Utilization of Woody Oil Resource, , Changsha 410004 , China

5. Xishan Forest Farm, Dazu District , Chongqing 402360 , China

6. Longshan Forest Farm , Lechang 512221 , China

7. Hunan Horticultural Research Institute , Hunan Academy of Agricultural Sciences, Changsha 410125 , China

Abstract

Abstract Cornus wilsoniana W. is a woody oil plant with high oil content and strong hypolipidemic effects, making it a valuable species for medicinal, landscaping, and ecological purposes in China. To advance genetic research on this species, we employed PacBio together with Hi-C data to create a draft genome assembly for C. wilsoniana. Based on an 11-chromosome anchored chromosome-level assembly, the estimated genome size was determined to be 843.51 Mb. The N50 contig size and N50 scaffold size were calculated to be 4.49 and 78.00 Mb, respectively. Furthermore, 30 474 protein-coding genes were annotated. Comparative genomics analysis revealed that C. wilsoniana diverged from its closest species ~12.46 million years ago (Mya). Furthermore, the divergence between Cornaceae and Nyssaceae occurred >62.22 Mya. We also found evidence of whole-genome duplication events and whole-genome triplication γ, occurring at ~44.90 and 115.86 Mya. We further inferred the origins of chromosomes, which sheds light on the complex evolutionary history of the karyotype of C. wilsoniana. Through transcriptional and metabolic analysis, we identified two FAD2 homologous genes that may play a crucial role in controlling the oleic to linoleic acid ratio. We further investigated the correlation between metabolites and genes and identified 33 MADS-TF homologous genes that may affect flower morphology in C. wilsoniana. Overall, this study lays the groundwork for future research aimed at identifying the genetic basis of crucial traits in C. wilsoniana.

Funder

Jiangsu Collaborative Innovation Center for Modern Crop Production and Collaborative Innovation Center for Modern Crop Production co-sponsored by province and ministry

Hunan Province Key Research and Development Program Project

Foundation of State Key Laboratory of Utilization of Woody Oil Resource

National Natural Science Foundation of China

Publisher

Oxford University Press (OUP)

Subject

Horticulture,Plant Science,Genetics,Biochemistry,Biotechnology

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