參考文獻:
[1] Song J M, Guan Z, Hu J, et al. Eight high-quality genomes reveal pan-genome architecture and ecotype differentiation of Brassica napus[J]. Nature plants, 2020, 6(1): 34-45.
[2] Liu Y, Du H, Li P, et al. Pan-genome of wild and cultivated soybeans[J]. Cell, 2020, 182(1): 162-176. e13.
[3] Alonge M, Wang X, Benoit M, et al. Major impacts of widespread structural variation on gene expression and crop improvement in tomato[J]. Cell, 2020, 182(1): 145-161. e23.
[4] Jebb D, Huang Z, Pippel M, et al. Six reference-quality genomes reveal evolution of bat adaptations[J]. Nature, 2020, 583(7817): 578-584.
[5] Jia N, Wang J, Shi W, et al. Large-scale comparative analyses of tick genomes elucidate their genetic diversity and vector capacities[J]. Cell, 2020, 182(5): 1328-1340. e13.
[6] Sun C, Huang J, Wang Y, et al. Genus-wide characterization of bumblebee genomes provides insights into their evolution and variation in ecological and behavioral traits[J]. Molecular biology and evolution, 2020: msaa240.
[7] Mamidi S, Healey A, Huang P, et al. A genome resource for green millet Setaria viridis enables discovery of agronomically valuable loci[J]. Nature biotechnology, 2020, 38(10): 1203-1210.
[8] Walkowiak S, Gao L, Monat C, et al. Multiple wheat genomes reveal global variation in modern breeding[J]. Nature, 2020: 1-7.
[9] Jayakodi M, Padmarasu S, Haberer G, et al. The barley pan-genome reveals the hidden legacy of mutation breeding[J]. Nature, 2020: 1-6.
[10] Sun X, Jiao C, Schwaninger H, et al. Phased diploid genome assemblies and pan-genomes provide insights into the genetic history of apple domestication[J]. Nature Genetics, 2020: 1-10.