
解传帅,博士,含弘研究员。主要关注动物多倍化的遗传、演化与适应机制,为理解和利用多倍化奠定理论基础。研究方向:1)全基因组加倍与再二倍化的演化规律与发生机制;2)多倍体动物的染色体配对、分离和遗传规律;3)动物适应和维持多倍体状态的机制。
邮箱:chuanshuaixie@swu.edu.cn
教育经历
2013年9月-2017年6月,华中农业大学,生命科学学院,学士
2017年9月-2023年12月,华中农业大学,生命科学学院,博士
工作经历
2024年1月-2026年7月,西部(重庆)科学城种质创制大科学中心,博士后
2026年8月至今,西南大学,生命科学学院,含弘研究员
科研项目
国家自然科学基金青年科学基金项目(C类),2027-2029,主持
代表论文
1.Xie, C.#, Ma, Z.#, Zhou, C.#, Ma, K.#, Wang, H., Wu, J., Zhou, Y., Lu, Y., Ji, D., Gu, X., Meyer, A.*, Liu, H.*, Xu, L.* (2026). Chromosomal fusions trigger rediploidization of autopolyploid genomes. Nature.
2.Xie, C.#, Li, Y.#, Zhou, Y.#, Cui, Y., Wang, H., Xu, L.*, & Liu, H.* (2026). Haplotype-resolved chromosome-level genome assembly of Schizothorax davidi. Scientific Data.
3.Xie, C., Luo, J., & Xu, L.* (2026). Snow carps as an emerging model for polyploid genome evolution. Zoological Research.
4.Dai, D.#,Xie, C.#, Zhou, Y., Bo, D., Zhang, S., Mao, S., Liao, Y.,... Zheng, J.*, Peng, D.*, Sun, M.* (2023). Unzipped chromosome-level genomes reveal allopolyploid nematode origin pattern as unreduced gamete hybridization. Nature Communications
5.Ma, Z., Gao, H.,Xie, C., Ji, D., Lu, Y., Wang, H., Cui, Y., Sassi, F. M. C., Yuan, D., Liu, H.*, Xu, L.*(2026). Moderate introgression in a single individual genome is sufficient to mislead phylogenomic inference of Triplophysa. Molecular Phylogenetics and Evolution
6.Wang, Z.#, Gao, Y.#,Xie, C., Xu, L.*, & Kong, L.* (2025). The haplotype-resolved and near telomere-to-telomere genome assembly for Hypsebarbus vernayi. Scientific Data
7.Zhu, Z., Bo, D.,Xie, C., Dai, D., Peng, D., Sun, M., Zheng, J*. (2025). Integrative multi-omics analysis reveals the translational landscape of the plant-parasitic nematode Meloidogyne incognita. Communications Biology
8.Qiang, Y., Fan, J.,Xie, C., Yan, L., Song, X., Zhang, N., Lin, Y., Xiong, J.,... Li,F.* (2024). KDM5C-mediated recruitment of BRD4 to chromatin regulates enhancer activation and BET inhibitor sensitivity. Cancer Research
9.Wang, X., Guo, Z., Dai, D.,Xie, C., Zhao, Z., Zheng, J., Sun, M.*, Peng, D*. (2024). High-resolution transcriptome datasets during embryogenesis of plant-parasitic nematodes. Scientific Data
10.Zheng, Z., Zhang, Y., Liu, Z., Dong, Z.,Xie, C., Bravo, A., Soberón, M., Mahillon, J., Sun, M.*, Peng, D.* (2020). The CRISPR-Cas systems were selectively inactivated during evolution of Bacillus cereus group for adaptation to diverse environments. The ISME Journal
11.Xin, B., Liu, H., Zheng, J.,Xie, C., Gao, Y., Dai, D., Peng, D., Ruan, L., Chen, H., Sun, M*. (2020). In silico analysis highlights the diversity and novelty of circular bacteriocins in sequenced microbial genomes. mSystems