Haplotype-resolved genome assembly for tetraploid Chinese cherry (Prunus pseudocerasus) offers insights into fruit firmness

Author:

Jiu Songtao1,Lv Zhengxin1,Liu Moyang1,Xu Yan1,Chen Baozheng2,Dong Xiao2,Zhang Xinyu1,Cao Jun1,Manzoor Muhammad Aamir1,Xia Mingxu3,Li Fangdong4,Li Hongwen5,Chen Lijuan5,Zhang Xu4,Wang Shiping1,Dong Yang2,Zhang Caixi1

Affiliation:

1. Shanghai Jiao Tong University Department of Plant Science, School of Agriculture and Biology, , Shanghai, 200240, China

2. Yunnan Agricultural University Province Key Laboratory, Biological Big Data College, , Kunming, Yunnan, 650201, China

3. Shanghai Jiao Tong University School of Materials Science and Engineering, , Shanghai, 200240, China

4. Yantai Academy of Agricultural Sciences , Yantai, Shandong, 265500, China

5. Sichuan Academy of Agricultural Sciences Horticulture Research Institute, , Chengdu, Sichuan, 610066, China

Abstract

Abstract Chinese cherry (Prunus pseudocerasus) holds considerable importance as one of the primary stone fruit crops in China. However, artificially improving its traits and genetic analysis are challenging due to lack of high-quality genomic resources, which mainly result from difficulties associated with resolving its tetraploid and highly heterozygous genome. Herein, we assembled a chromosome-level, haplotype-resolved genome of the cultivar ‘Zhuji Duanbing’, comprising 993.69 Mb assembled into 32 pseudochromosomes using PacBio HiFi, Oxford Nanopore, and Hi-C. Intra-haplotype comparative analyses revealed extensive intra-genomic sequence and expression consistency. Phylogenetic and comparative genomic analyses demonstrated that P. pseudocerasus was a stable autotetraploid species, closely related to wild P. pusilliflora, with the two diverging ~18.34 million years ago. Similar to other Prunus species, P. pseudocerasus underwent a common whole-genome duplication event that occurred ~139.96 million years ago. Because of its low fruit firmness, P. pseudocerasus is unsuitable for long-distance transportation, thereby restricting its rapid development throughout China. At the ripe fruit stage, P. pseudocerasus cv. ‘Zhuji Duanbing’ was significantly less firm than P. avium cv. ‘Heizhenzhu’. The difference in firmness is attributed to the degree of alteration in pectin, cellulose, and hemicellulose contents. In addition, comparative transcriptomic analyses identified GalAK-like and Stv1, two genes involved in pectin biosynthesis, which potentially caused the difference in firmness between ‘Zhuji Duanbing’ and ‘Heizhenzhu’. Transient transformations of PpsGalAK-like and PpsStv1 increase protopectin content and thereby enhance fruit firmness. Our study lays a solid foundation for functional genomic studies and the enhancement of important horticultural traits in Chinese cherries.

Funder

Natural Science Foundation of Shanghai

China Agriculture Research System

Publisher

Oxford University Press (OUP)

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