Application of genome-wide insertion/deletion markers on genetic structure analysis and identity signature of Malus accessions

Springer Science and Business Media LLC - Tập 20 - Trang 1-13 - 2020
Peihua Cong1, Ruiting Chen2,3, Ting Wu2, Yi Wang2, Xuefeng Xu2, Wei Li2, Xi Zhang2, Fei Shen4,2, Zhenhai Han2, Jun Luo5, Yuan Gao1, Xuan Wang2, Xinzhong Zhang2, Changpeng Qiu2, Kun Wang1, Lili Yang5
1Research Institute of Pomology, Chinese Academy of Agricultural Science, Xingcheng, China
2College of Horticulture, China Agricultural University, Beijing, China
3Present Address: Shaanxi Haisheng Fruit Industry Development Co., Ltd., Xian, China
4Beijing Agro-Biotechnology Research Center, Beijing Academy of Agriculture and Forestry Sciences, Beijing, China
5College of Information and Electrical Engineering, China Agricultural University, Beijing, China

Tóm tắt

Apple (Malus ssp.), one of the most important temperate fruit crops, has a long cultivation history and is economically important. To identify the genetic relationships among the apple germplasm accessions, whole-genome structural variants identified between M. domestica cultivars ‘Jonathan’ and ‘Golden Delicious’ were used. A total of 25,924 insertions and deletions (InDels) were obtained, from which 102 InDel markers were developed. Using the InDel markers, we found that 942 (75.3%) of the 1251 Malus accessions from 35 species exhibited a unique identity signature due to their distinct genotype combinations. The 102 InDel markers could distinguish 16.7–71.4% of the 331 bud sports derived from ‘Fuji’, ‘Red Delicious’, ‘Gala’, ‘Golden Delicious’, and other cultivars. Five distinct genetic patterns were found in 1002 diploid accessions based on 78 bi-allele InDel markers. Genetic structure analysis indicated that M. domestica showed higher genetic diversity than the other species. Malus underwent a relatively high level of wild-to-crop or crop-to-wild gene flow. M. sieversii was closely related to both M. domestica and cultivated Chinese cultivars. The identity signatures of Malus accessions can be used to determine distinctness, uniformity, and stability. The results of this study may also provide better insight into the genetic relationships among Malus species.

Từ khóa

#Plant Sciences #Agriculture #Tree Biology

Tài liệu tham khảo