主要代表性论文
Qin XC*, Suga M*, Kuang TY**, Shen J-R**. (2015) Photosynthesis. Structural basis for energy transfer pathways in the plant PSI-LHCI supercomplex. Science. 348(6238), 989-995. (解析了高等植物PSI及其捕光天线复合物近原子分辨率的晶体结构,奠定了高等植物PSI结构与功能研究基础,封面文章)
Qin XC*, Pi X*, Wang WD, Han GY, Zhu LX, Liu MM, Chen LP, Shen J-R, Kuang TY**, Sui S-F**. (2019) Structure of a green algal photosystem I in complex with a large number of light-harvesting complex I subunits. Nature Plants. 5(3): 263-272.(解析了绿藻PSI及其捕光天线复合物高分辨率结构,揭示了绿藻PSI适应潮间带进行捕光的机理)
Ma L*, Li Y, Li XX, Lin XQ, Liu MM, Li G**, Qin XC**. (2019) FAR‐RED ELONGATED HYPOCOTYLS3 Negatively Regulates Shade Avoidance Responses in Arabidopsis. Plant Cell Environment. 42 (12): 3280-3292.(建立并完善环境光信号与植物避阴反应的直接分子联系及调控网络)
Wang J*, Yu L-J*, Wang WD, Yan YJ, Kuang TY, Qin XC**, Shen J-R** (2021) Structure of plant photosystem I‐light harvesting complex I supercomplex at 2.4 Å resolution. Journal of Integrative Plant Biology. 63 (7): 1367-1381.(目前国际上分辨率最高的被子植物PSI-LHCI结构,封面文章)
Yan QJ*, Zhao L*, Wang WD, Pi X, Han GY, Wang J, Cheng LP, He Y-K, Kuang TY, Qin XC**, Sui S-F**, Shen J-R**. (2021) Antenna arrangement and energy transfer pathways of PSI-LHCI from the moss Physcomitrella patens. Cell Discovery. 7(1):10. (揭示水陆过度植物藓类捕光天线结构及其捕光机理)
Dong SS*, Huang GQ*, Wang CH*, Wang JJ, Sui S-F**, Qin XC** (2022) Structure of the Acidobacteria homodimeric reaction center bound with cytochrome c. Nature Communications.13: 7745.(解析了一种光反应中心复合物的祖先型结构,首次揭示了叶绿素和细菌叶绿素共存的捕光结构,在光反应中心复合物结构进化研究上取得重大进展)
Li X*, Zhu L, Song J, Wang W, Kuang T, Yang G, Hao C, Qin X**, (2023) LHCA4 residues surrounding red chlorophylls allow for fine-tuning of the spectral region for photosynthesis in Arabidopsis thaliana. Frontiers in Plant Science. 13: 1118189.(首次在植物体水平对Lhca捕光天线进行定点氨基酸改造,以改变捕光范围)
Li XX*, Huang GQ*, Zhu LX, Hao CY, Sui S-F**, Qin XC**. (2024) Structure of the red-shifted Fittonia albivenis photosystem I. Nature Communications. 15, 6325 . (挖掘到近红外吸收增强的被子植物资源,揭示了被子植物近红外光合捕光的结构基础,为开发利用红外光、设计捕光天线蛋白提供了重要信息)
Xu Y*, Cao YP*, Zhang WJ*, Kong W, Li R, Liu YC, Wang Y, Wu ZY, Qin XC**, He F**, Fu CX**. (2024) CRISPR/Cas9-mediated mutation of FERULATE 5-HYDROXYLASE enhances adsorption capacity of lignocellulose-based porous carbon from paper mulberry. Horticulture Research. 11(6): uhae124. (利用基因编辑技术创制木质素成分改变、生物炭比表面积提高的植物新资源)
(*第一作者,**通讯作者)
四、其他工作
作为大会秘书长承办全国光合作用学术研讨会(2023济南)、全国植物蛋白质研究大会(2018济南),担任山东省植物生理与分子生物学学会副理事长。