Comparative population genomics reveals convergent and divergent selection in the apricot–peach–plum–mei complex

Author:

Yang Xuanwen1234,Su Ying35,Huang Siyang3,Hou Qiandong1,Wei Pengcheng2,Hao Yani36,Huang Jiaqi37,Xiao Hua3ORCID,Ma Zhiyao3ORCID,Xu Xiaodong3,Wang Xu3,Cao Shuo34,Cao Xuejing3,Zhang Mengyan3,Wen Xiaopeng1,Ma Yuhua8,Peng Yanling3,Zhou Yongfeng39ORCID,Cao Ke2,Qiao Guang1

Affiliation:

1. Guizhou University Key Laboratory of Plant Resource Conservation and Germplasm Innovation in Mountainous Region (Ministry of Education), Institute of Agro-bioengineering/College of Life Sciences, , Guiyang 550025, China

2. Chinese Academy of Agricultural Science National Key Laboratory for Germplasm Innovation & Utilization of Horticultural Crops, Zhengzhou Fruit Research Institute, , Zhengzhou 450009, China

3. Chinese Academy of Agricultural Sciences National Key Laboratory of Tropical Crop Breeding, Shenzhen Branch, Guangdong Laboratory of Lingnan Modern Agriculture, Key Laboratory of Synthetic Biology, Ministry of Agriculture and Rural Affairs, Agricultural Genomics Institute at Shenzhen, , Shenzhen 518120, China

4. Huazhong Agricultural University College of Horticulture and Forestry Sciences, , Wuhan 430070, China

5. Xinjiang University Xinjiang Key Laboratory of Biological Resources and Genetic Engineering, College of Life Science and Technology, , Xinjiang, Urumqi 830046, China

6. Suzhou Medical College of Soochow University Department of Bioinformatics, School of Biology and Basic Medical Sciences, , Suzhou 215123, China

7. Wuhan University College of Life Sciences, , Wuhan 430072, China

8. Guizhou Academy of Agricultural Sciences Institute of Pomology Science, , Guiyang 550006, China

9. Chinese Academy of Tropical Agricultural Sciences National Key Laboratory of Tropical Crop Breeding, Tropical Crops Genetic Resources Institute, , Haikou 570100, China

Abstract

Abstract The economically significant genus Prunus includes fruit and nut crops that have been domesticated for shared and specific agronomic traits; however, the genomic signals of convergent and divergent selection have not been elucidated. In this study, we aimed to detect genomic signatures of convergent and divergent selection by conducting comparative population genomic analyses of the apricot–peach–plum–mei (APPM) complex, utilizing a haplotype-resolved telomere-to-telomere (T2T) genome assembly and population resequencing data. The haplotype-resolved T2T reference genome for the plum cultivar was assembled through HiFi and Hi-C reads, resulting in two haplotypes 251.25 and 251.29 Mb in size, respectively. Comparative genomics reveals a chromosomal translocation of ~1.17 Mb in the apricot genomes compared with peach, plum, and mei. Notably, the translocation involves the D locus, significantly impacting titratable acidity (TA), pH, and sugar content. Population genetic analysis detected substantial gene flow between plum and apricot, with introgression regions enriched in post-embryonic development and pollen germination processes. Comparative population genetic analyses revealed convergent selection for stress tolerance, flower development, and fruit ripening, along with divergent selection shaping specific crop, such as somatic embryogenesis in plum, pollen germination in mei, and hormone regulation in peach. Notably, selective sweeps on chromosome 7 coincide with a chromosomal collinearity from the comparative genomics, impacting key fruit-softening genes such as PG, regulated by ERF and RMA1H1. Overall, this study provides insights into the genetic diversity, evolutionary history, and domestication of the APPM complex, offering valuable implications for genetic studies and breeding programs of Prunus crops.

Funder

National Natural Science Fund for Excellent Young Scientists Fund Program

National Guidance Foundation for Local Science and Technology Development of China

Guizhou Provincial Science and Technology Projects of China

Publisher

Oxford University Press (OUP)

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