
| 姓名:崔一萌 |
职称/职务:讲师 |
电话: |
传真: |
电子信箱:yimengcui@snnu.edu.cn |
研究方向:动物分子进化 |
办公地点:长安校区格物楼2607 |
一、个人简介
崔一萌,博士,讲师。2026年6月毕业于陕西师范大学生命科学学院并获得理学博士学位。主要研究方向为脊椎动物暗视觉起源、演化及相关分子机制研究,通过探究暗视觉功能的起源路径、分子基础及其在不同生态类群中的适应性分化,进而揭示脊椎动物暗视觉演化的多样性与物种生态学适应意义。研究成果在Molecular Biology and Evolution,Evolution Letters,Proceedings of the Royal Society B: Biological Sciences等多个权威国际期刊发表文章。
二、主要研究领域及兴趣
主要开展脊椎动物视觉视色素功能演化与相关分子机制研究
三、承担的科研项目
1. 国家自然科学基金面上项目,2023.1-2026.12,32270462,参与;
2. 国家自然科学基金面上项目,2026.1-2029.12,32570488,参与。
四、代表性论文
1. Cui Y#, Lu X#, Wei P#, Shuai M#, Li S, Xie Y, Xie Y, Dong R, Shi L, Rossiter SJ*, Xu S*, Liu Y*. Comparative phenotypic analysis of rhodopsin supports stepwise evolution of dim-light vision in early vertebrates. Molecular Biology and Evolution. 2026, 43, 1-13.
2. Cui Y#, Li N#, Chen H, Xing L, Xie Y, Xie Y, Ma M, Zhao J, Nan W, Lei L, Wang K*, Rossiter SJ*, Liu Y*. Visual pigments of basal lineages of bony fishes support independent ecological shifts from a shallow marine to a freshwater niche. Evolution Letters, 2026, 10, 228-237.
3. Zhang B#, Wei P#, Cui Y#, Zhang Y#, Chen H, Li X, Zhou K, Jiang T, Chen A, Lei L, Rossiter SJ*, Yuan Z*, Liu Y*. Recurrent evolution of UV vision in frogs and toads is linked to transitions in locomotor mode. Proceedings of the Royal Society B: Biological Sciences. 2026, 293, 20260553.
4. Chi H#, Wan J#, Melin AD#, DeCasien AR, Wang S, Zhang Y, Cui Y, Guo X, Zhao L, Williamson J, Zhang T, Li Q, Zhan Y, Li N, Guo J, Xu Z, Hou W, Cao Y, Yuan J, Zheng J, Shao Y, Wang J, Chen W, Song S, Lu X, Qi X, Zhang G, Rossiter SJ, Wu DD*, Liu Y*, Lu H*, Li G*. Genomic and phenotypic evidence support visual and olfactory shifts in primate evolution. Nature Ecology & Evolution, 2025, 9, 721–733.
5. Guo X, Cui Y, Irwin DM, Liu Y*. Accelerated evolution of dim-light vision-related arrestin in deep-diving amniotes. Frontiers in Ecology and Evolution. 2022, 10, 1069088.
6. Xia Y, Cui Y, Wang A, Liu F, Chi H, Potter JH, Williamson J, Chen X, Rossiter SJ*, Liu Y*. Convergent phenotypic evolution of rhodopsin for dim-light sensing across deep-diving vertebrates. Molecular Biology and Evolution. 2021, 38, 5726-5734.
7. Chi H, Cui Y, Rossiter SJ, Liu Y*. Convergent spectral shifts to blue-green vision in mammals extends the known sensitivity of vertebrate M/LWS pigments. Proceedings of the National Academy of Sciences of the United States of America. 2020, 117, 8303-8305.
8. Liu Y*, Cui Y, Chi H, Xia Y, Liu H, Rossiter SJ*, Zhang S*. Scotopic rod vision in tetrapods arose from multiple early adaptive shifts in the rate of retinal release. Proceedings of the National Academy of Sciences of the United States of America. 2019, 116, 12627-12628.