A complete gap-free diploid genome in Saccharum complex and the genomic footprints of evolution in the highly polyploid Saccharum genus
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Published:2023-03-30
Issue:4
Volume:9
Page:554-571
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ISSN:2055-0278
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Container-title:Nature Plants
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language:en
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Short-container-title:Nat. Plants
Author:
Wang Tianyou, Wang Baiyu, Hua Xiuting, Tang HaibaoORCID, Zhang Zeyu, Gao Ruiting, Qi Yiying, Zhang Qing, Wang Gang, Yu Zehuai, Huang Yongji, Zhang Zhe, Mei Jing, Wang Yuhao, Zhang Yixing, Li Yihan, Meng Xue, Wang Yongjun, Pan Haoran, Chen Shuqi, Li Zhen, Shi Huihong, Liu Xinlong, Deng Zuhu, Chen Baoshan, Zhang Muqing, Gu LianfengORCID, Wang JianpingORCID, Ming RayORCID, Yao WeiORCID, Zhang JisenORCID
Publisher
Springer Science and Business Media LLC
Reference101 articles.
1. Talukdar, D., Verma, D. K., Malik, K., Mohapatra, B. & Yulianto, R. in Sugarcane Biotechnology: Challenges and Prospects (ed. Mohan, C.) 123–137 (Springer, 2017). 2. D'Hont, A., Lu, Y., Feldmann, P. & Glaszmann, J.-C. Cytoplasmic diversity in sugar cane revealed by heterogous probes. Sugar Cane 1, 12–15 (1993). 3. Lu, Y. et al. Relationships among ancestral species of sugarcane revealed with RFLP using single copy maize nuclear probes. Euphytica 78, 7–18 (1994). 4. Daniels, J. & Roach, B. T. in Developments in Crop Science Vol. 11 (ed. Heinz, D.) 7–84 (Elsevier, 1987). 5. Brandes, E. Origin, dispersal and use in breeding of the Melanesian garden sugarcane and their derivatives, Saccharum officinarum L. Proc. Int. Soc. Sugar Cane Technol. 9, 709–750 (1956).
Cited by
18 articles.
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