Cheng, L.; Li, M.; Han, Q.; Qiao, Z.; Hao, Y.; Balbuena, T.S.; Zhao, Y.
Phylogenomics Resolves the Phylogeny of Theaceae by Using Low-Copy and Multi-Copy Nuclear Gene Makers and Uncovers a Fast Radiation Event Contributing to Tea Plants Diversity. Biology 2022, 11, 1007.
https://doi.org/10.3390/biology11071007
AMA Style
Cheng L, Li M, Han Q, Qiao Z, Hao Y, Balbuena TS, Zhao Y.
Phylogenomics Resolves the Phylogeny of Theaceae by Using Low-Copy and Multi-Copy Nuclear Gene Makers and Uncovers a Fast Radiation Event Contributing to Tea Plants Diversity. Biology. 2022; 11(7):1007.
https://doi.org/10.3390/biology11071007
Chicago/Turabian Style
Cheng, Lin, Mengge Li, Qunwei Han, Zhen Qiao, Yanlin Hao, Tiago Santana Balbuena, and Yiyong Zhao.
2022. "Phylogenomics Resolves the Phylogeny of Theaceae by Using Low-Copy and Multi-Copy Nuclear Gene Makers and Uncovers a Fast Radiation Event Contributing to Tea Plants Diversity" Biology 11, no. 7: 1007.
https://doi.org/10.3390/biology11071007
APA Style
Cheng, L., Li, M., Han, Q., Qiao, Z., Hao, Y., Balbuena, T. S., & Zhao, Y.
(2022). Phylogenomics Resolves the Phylogeny of Theaceae by Using Low-Copy and Multi-Copy Nuclear Gene Makers and Uncovers a Fast Radiation Event Contributing to Tea Plants Diversity. Biology, 11(7), 1007.
https://doi.org/10.3390/biology11071007