种康
个人简历
种康,研究员/中国科学院大学教授,博士生导师;中国科学院院士、国际欧亚科学院院士。
1980年-1993年在兰州大学学习,先后获学士、硕士、博士学位;
1993年-1997年,先后在兰州大学助教、讲师、博士后;中国科学院植物研究所博士后、副研究员;日本东北大学做博士后研究;
1997年-至今,在中国科学院植物研究所工作,任研究员。
现任饲草种质高效设计与利用全国重点实验室主任、中国科学院植物研究所学术委员会主任、国家自然科学基金委员会生命学部主任、中国植物学会理事长。担任Journal of Integrative Plant Biology共同主编,Molecular Genetics and Genomics、Journal of Genetics and Genomics编委。
创建了苜蓿高通量高光谱表型组与代谢组耦合技术体系;发现水稻低温感受复合物及其信号网络,合作培育设计型耐寒高产优质国审水稻-嘉禾优7号;揭示蛋白质糖基化和磷酸化修饰以及非编码RNA等调控冬小麦感知春化开花的表观遗传网络。在Cell, Annual Review of Plant Biology, Nature Plants, Nature Communications, Molecular Cell, Developmental Cell, Cell Reports, EMBO Journal, PNAS, Genome Biology和The Plant Cell等学术期刊发表研究论文100余篇。
承担项目
- 先后主持中国科学院战略性先导专项(A):“创建生态草牧业科技体系”专项、“种子精准设计”专项项目、“分子模块育种”专项项目;
- 主持NSFC卓越创新群体(原基础科学中心)项目课题,NSFC创新群体项目;
- 主持科技部重点研发计划项目,“973”项目课题和“863”项目课题等国家科研任务。
代表性成果
获奖
曾获得2015年度中国生命科学领域十大进展奖、2020年中国植物生理与植物分子生物学学会杰出成就奖、2021年度何梁何利基金科学与技术进步奖等诸多奖项、2024年牵头植物所生态草牧业团队获中国科学院“科苑名匠”称号。
品种
专利
种 康、夏昌选、巩燕山、徐云远。OsDBP1蛋白在调控水稻耐冷性中的应用。中国,授权公告日:2020-09-22,专利号:201910107306.X
种 康、葛强、牛遇达、徐云远。OsSYF2蛋白及其编码基因及其在调控水稻粒重中的应用。中国,授权公告日:2020-09-22,专利号:201910107304.0
种 康、高莹、唐永严、徐云远。一种通过抑制OsSDM基因表达提高水稻耐盐性的方法。中国,授权公告日:2020-08-28,专利号:201910103039.9
种 康、葛强、牛遇达、徐云远。OsSYF2蛋白及其编码基因及其在调控水稻粒长中的应用。中国,授权公告日:2019-04-16,专利号:201910107378.4
代表性论著
- Deng X, Pang HY, Fu Y, Zhang AW, Zhang JY*, Chong K*. 2025. Targeted integrating hyperspectral and metabolomic data with spectral indices and metabolite content models for efficient salt-tolerant phenotype discrimination inMedicago truncatula. Plant Phenomics, 7: 100020.
- Zheng SS, Li ZT, You YP, Cao J, Luo W, Qian Q, Xu YY, Chong K*. 2025. Natural variations in the promoter of CHILLING TOLERANCE DIVERGENCE 8 contribute to the functional divergence in the Chilling tolerance of rice. Plant Cell and Environment, 43: 11
- Liu QK, Huang G, Zhang ZQ, Lin ZL, Deng X, Dong XM, Liu ZP,* Wang Z,* Zhang YJ,* Jing HC,* Chong K,* Cao XF*. 2025. Forage crop research in the modern age. Advanced Science, 12: 2415631
- Liu DF, Luo ST, Li ZT, Liang GH, Guo YL, Xu YY, Chong K*. 2024. COG3 confers the chilling tolerance to mediate OsFtsH2-D1 module in rice. New Phytologist, 241: 2143-2157
- Luo ST, Zheng SS, Li ZT, Cao J, Wang B, Xu YY, Chong K*. 2024. Monosaccharide transporter OsMST6 is activated bytranscription factor OsERF120 to enhance chilling tolerance in rice seedlings. Journal Of Experimental Botany, 75: 4038-4051
- Feng JL, Li ZT, Luo W, Liang GH, Xu YY, Chong K*. 2023. COG2 negatively regulates chilling tolerance through cell wall components altered in rice. Theoretical and Applied Genetics, 136:1-11
- Guo XY#, Zhang DJ#, Wang ZL, Xu SJ, Batisti O, Steinhorst L, Li H, Weng YX, Ren DT, Kudla J, Xu YY, Chong K*. 2023. Cold-induced calreticulin OsCRT3 conformational changes promote OsCIPK7 binding and temperature sensing in rice. EMBO Journal, 42: e110518
- Li ZT#, Wang B#, Luo W, Xu YT, Wang J, Xue ZH, Niu YD, Cheng ZK, Ge S, Zhang W, Zhang JY*, Li QZ*, Chong K*. 2023. Natural variation of codon repeats in COLD11 endows rice with chilling resilience. Science Advances, 9: eabq5506
- Xiao J*, Liu B, Yao Y, Guo Z, Jia H, Kong L, Zhang A, Ma W, Ni Z, Xu S, Lu F, Jiao Y, Yang W, Lin X, Sun S, Lu Z, Gao L, Zhao G, Cao S, Chen Q, Zhang K, Wang M, Wang M, Hu Z, Guo W, Li G, Ma X, Li J, Han F, Fu X, Ma Z, Wang DW*, Zhang XY*, Ling HQ*, Xia GM*, Tong YP*, Liu ZY*, He ZH*, Jia JZ*, Chong K*. 2022. Wheat genomic study for genetic improvement of traits in China. Science China-Life Sciences, 65:1718-1775
- Li JH, Zhang ZY, Chong K, Xu YY*. 2022. Chilling tolerance in rice: Past and present. Journal of Plant Physiology, 268:153576
- Luo W, Huan Q, Xu YY, Qian WF, Chong K*, Zhang JY*. 2021. Integrated global analysis reveals a vitamin E-vitamin K1 sub-network, downstream of COLD1, underlying rice chilling tolerance divergence. Cell Reports, 36: 58-76
- Yang WS, Wu K, Wang B, Liu HH, Guo SY, Guo XY, Luo W, Sun SY, Ouyang YD, Fu XD, Chong K, Zhang QF*, Xu YY*. 2021. The RING E3 ligase CLG1 targets GS3 for degradation via the endosome pathway to determine grain size in rice. Molecular Plant, 14:1699-1713
- Li ZT, Wang B, Zhang ZY, Luo W, Tang YY, Niu YD, Chong K, Xu YY*. 2021. OsGRF6 interacts with SLR1 to regulate OsGA2ox1 expression for coordinating chilling tolerance and growth in rice. Journal of Plant Physiology, 260:153406
- Xu SJ, Dong Q, Deng M, Lin DX, Xiao J, Cheng PL, Xing LJ, Niu YD, Gao CX, Zhang WH, Xu YY, Chong K*. 2021. A vernalization-induced long non-coding RNA VAS together with transcription factor TaRF2b activates TaVRN1 for flowering in hexaploid wheat. Molecular Plant, 14:1525-1538
- Xia CX, Gong YS, Chong K, Xu YY*. 2021. Phosphatase OsPP2C27 directly dephosphorylates OsMAPK3 and OsbHLH002 to negatively regulate cold tolerance in rice. Plant Cell and Environment, 44: 491-505
- Ge Q*, Zhang YY*, Xu YY, Bai MY, Luo W, Wang B, Niu YD, Zhao Y, Li SS, Weng YX, Wang ZY, Qian Q, Chong K*. 2020. Cyclophilin OsCYP20-2 with a novel variant integrates defense and cell elongation for chilling response in rice. New Phytologist, 225: 2453–2467
- Tang YY, Gao CC, Gao Y, Yang Y, Shi BY, Yu JL, Lyu C, Sun BF, Wang HL, Xu YY, Yang YG*, Chong K*. 2020. OsNSUN2-mediated 5-methylcytidine mRNA modification enhances rice adaptation to high-temperature. Developmental Cell, 53: 272-286
- Ge Q, Tang YY, Luo W, Zhang JY, Chong K, Xu YY*. 2020. A cyclophilin OsCYP20–2 interacts withOsSYF2 to regulate grain length by pre-mRNAsplicing. Rice, 13: 64-74
- 许智宏,种康主编,2015,植物细胞分化与器官发生,科学出版社。
- 邢立静、徐云远、种康,2012,植物激素在开花中作用,许智宏、薛红卫主编,植物激素作用的分子机理,上海科技出版社。
- 徐云远、邢立静、张景昱、种康,2012,植物对低温的响应,陈晓亚、薛红卫主编,植物生理与分子生物学,高等教育出版社。
- 种康(译),瞿礼嘉(译),2006,Dieffenbach, Carl W, Dveksler, Gabriela S. 主编:PCR技术实验指南。北京:化学工业出版社。
- 种康,王雷,2010,Brassinosteroids and G-protein signaling. Yalovsky S, Baluska F, Jones A. 主编:Integrated G Proteins Signaling in Plants. Springer.