Article
Pan-genome and haplotype map of cassava cultivars and wild ancestors provide insights into its adaptive evolution and domestication.
Molecular plant - 2 Jun 2025
Xia Zhiqiang, Du Zhenglin, Zhou Xincheng, Jiang Sirong, Zhu Tingting, Wang Le, Chen Fei, Carvalho Luiz, Zou Meiling, Becerra Lopez-Lavalle Luis Augusto, Zhang Xiaofei, Xu Liangye, Wang Zhenyu, Chen Meili, Guo Xin, Wang Shujuan, Li Mengtao, Li Yuanchao, Wang Haiyan, Liu Shisheng, Bao Yuting, Zhao Long, Zhang Chenji, Xiao Jianjia, Guo Fengguang, Shen Xu, Li Haozheng, Lu Cheng, Qiao Fei, Ceballos Hernan, Yan Huabing, Qin Xiaochun, Ma Ling, Zhang Huaifang, He Shuang, Zhao Wenming, Wan Yinglang, Chen Yinhua, Huang Dongyi, Li Kaimian, Liu Bin, Peng Ming, Zhang Weixiong, Møller Birger Lindberg, Chen Xin, Luo Ming-Cheng, Xiao Jingfa, Wang Wenquan
Abstract excerpt
Cassava is a highly resilient tropical crop that produces large, starchy storage roots and high biomass. However, how did cassava's remarkable environmental adaptability and key economic traits evolve from its wild species remain unclear. In this study, we obtained near complete telomere-to-telomere genome assemblies and their haplotype forms for the cultivar AM560, the wild ancestors FLA4047 and W14, constructed...
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