人才详细信息

姓名:刘克韶
性别:
学历:
专家类别:副研究员
电话:
传真:
电子邮箱:liukeshao@itpcas.ac.cn
职称:
通讯地址:北京市朝阳区林萃路16号院3号楼

简介

工作经历

2025/01-至今,中国科学院青藏高原研究所,副研究员

2022/04-2025/01,中国科学院青藏高原研究所,助理研究员

2019/06-2022/04,中国科学院青藏高原研究所,博士后

2012/10-2015/12,厦门大学,科研助理

教育背景

2016/09-2019/06,中国科学院青藏高原研究所,博士

2009/09-2012/10,厦门大学,硕士

2005/09-2009/06,湖南师范大学,学士

研究方向

冰湖微生物生态与气候变化

承担项目

1. 国家自然科学基金面上项目,冰川消融对青藏高原和北极冰湖微生物碳代谢的影响,2025-2028,主持。

2. 

国家自然科学基金青年科学基金项目,冰川消融对第三极和北极典型冰前湖微生物群落季节变化的影响,2021-2023,主持。

3

. 

中国科学院特别研究助理资助项目,青藏高原冰川湖泊微生物与气候环境关系,2020-2023,主持。

4. 

冰冻圈科学国家重点实验室2019年开放基金,青藏高原典型冰川补给湖泊微生物对气候变化的响应,2019-2020,主持。

5. 

国家自然科学基金重点项目,北极和青藏高原冰川生态系统与气候变暖联动的差异研究,2024-2028,参与。

6. 

国家自然科学基金区域创新发展联合基金,青藏高原冰川底部生态系统微生物多样性及其驱动的碳循环过程,2022-2026,参与。

7. 

“一带一路”国际科学组织联盟联合研究合作专项计划,气候变化对三极冰冻圈微生物潜在致病风险影响, 2022-2024,参与。

8. 

国家重点研发计划,专项“重大自然灾害监测预警与防范”,第三极地表多圈层相互作用及其与南北极的关联,2020-2022,参与。

9. 

第二次青藏高原综合科学考察,任务五高原生物多样性保护及可持续利用,专题3高原微生物多样性保护及可持续利用,2019-2024,参与。

10.

国家自然科学基金重大研究计划,青藏高原冰尘微生物介导的碳代谢及环境效应,2019-2022,参与。

获奖及荣誉

2019年中国科学院院长优秀奖

代表论著

  1. Liu K, Liu Y, Yan Q, Guo X, Wang W, Zhang Z, Hu A, Xiao X, Ji M & Liu, P. Temperature-driven shifts in bacterioplankton biodiversity: Implications for cold-preferred species in warming Tibetan proglacial lakes. Water Research, 2024, 265: 122263.
  2. Liu K, Yan Q, X Guo, Wang W, Zhang Z, Ji M, Wang F & Liu Y. Glacier Retreat Induces Contrasting Shifts in Bacterial Biodiversity Patterns in Glacial Lake Water and Sediment. Microbial Ecology, 2024, 87:128.
  3. Lin L, Li L, Yang X, Hou L, Wu D, Wang B, Ma B, Liao X, Yan X, Gad M, Su J, Liu Y, Liu K*& Hu, A*. Unnoticed antimicrobial resistance risk in Tibetan cities unveiled by sewage metagenomic surveillance: Compared to the eastern Chinese cities. Journal of Hazardous Materials, 2024, 479: 135730.
  4. Guo X, Yan Q, Wang F, Wang W, Zhang Z, Liu Y, & Liu K*. Habitat-specific patterns of bacterial communities in a glacier-fed lake on the Tibetan Plateau. FEMS Microbiology Ecology, 2024, 100: fiae018.
  5. Zhang Z, Liu Y, Liu K, Chen Y, Guo X, Ji M, & Zhao W. Supraglacial and subglacial ecosystems contribute differently towards proglacial ecosystem communities in Kuoqionggangri Glacier, Tibetan Plateau. Communications Earth & Environment, 2024, 5: 636.
  6. Zang L, Liu Y, Jiao N, Zhong KX, Song X, Yang Y, Cai L, Liu K, Mao G, Ji M & Zhang R*. Salinity as a key factor affecting viral activity and life strategies in alpine lakes. Limnology and Oceanography, 2024, 69: 961-975.
  7. Zhang Z, Qi J, Liu Y*, Ji M, Wang W, Wu W, Liu K& Huang Z. Anthropogenic impact on airborne bacteria of the Tibetan Plateau. Environment International, 2024, 183: 108370.
  8. Liu Y, Jiao N, Ji M, Liu K, Xu B, Guo B & Yao T. Human activity over natural inputs determines the bacterial community in an ice core from the Muztag Ata glacier. Science China Earth Sciences, 2024, 67: 1489-1499.
  9. Liang J, Chevalier M, Liu K, Perfumo A, Wang M, Xie H, Hou J, Herzschuh U & Chen F.Discrepancies in lacustrine bacterial lipid temperature reconstructions explained by microbial ecology. Communications Earth & Environment, 2024, 5: 1-14.
  10. Liu K, Hu A, Hou L, Zhang L, Zeng Q, Yan Q, Wang F, Zhang Z, Xiao X, Liu J & Liu Y*. Effects of land-use patterns on the biogeography of the sediment bacteria in the Yarlung Tsangpo River. FEMS Microbiology Ecology, 2022, 98: fiac125.
  11. Yan Q, Liu Y, Hu A, Wan W, Zhang Z & Liu K*. Distinct strategies of the habitat generalists and specialists in sediment of Tibetan lakes. Environmental Microbiology, 2022, 24: 4153-4166.
  12. Liu Y, Zhang Z, Ji M, Hu A, Wang J, Jing H, Liu K& Zhao, W. Comparison of prokaryotes between Mount Everest and the Mariana Trench. Microbiome, 2022, 10: 215.
  13. Liu Y, Ji M, Yu T, Zaugg J, Anesio A. M., Zhang Z, Hu, S, Hugenholtz P, Liu K, Liu P, Chen Y, Luo Y & Yao T. A genome and gene catalog of glacier microbiomes. Nature Biotechnology, 2022, 40: 1341-1348.
  14. Liu K, Liu Y, Hu A, Wang F, Zhang Z, Yan Q, Ji M & Vick-Majors, T.J. Fate of glacier surface snow-originating bacteria in the glacier-fed hydrologic continuums. Environmental Microbiology, 2021, 23: 6450-6462.
  15. Liu K,Liu Y, Hu A, Wang F, Liang J, Zhang Z, Anslan S, Ji M & Hou J (2021) Temporal variability of microbial communities during the past 600 years in a Tibetan lake sediment core. Palaeogeography, Palaeoclimatology, Palaeoecology 584: 110678.
  16. Liu K, Yao T, Pearce D.A, Jiao N, Zeng Y, Guo B & Liu Y* (2021) Bacteria in the lakes of the Tibetan Plateau and polar regions. Science of The Total Environment, 754: 142248.
  17. Yan Q, Deng J, Wang F, Liu Y & Liu K*.Community Assembly and Co-occurrence Patterns Underlying the Core and Satellite Bacterial Sub-communities in the Tibetan Lakes. Frontiers in Microbiology, 2021, 12: 2501.
  18. Gu Z, Liu K*, Pedersen M.W, Wang F, Chen Y, Zeng C & Liu Y. Community assembly processes underlying the temporal dynamics of glacial stream and lake bacterial communities. Science of The Total Environment, 2021, 761: 143178.
  19. Liu K, Liu Y, Hu A, Wang F, Chen Y, Gu Z, Anslan S & Hou J. Different community assembly mechanisms underlie similar biogeography of bacteria and microeukaryotes in Tibetan lakes. FEMS Microbiology Ecology, 2020, 96: fiaa071.
  20. Liu K, Hou J, Liu Y, Hu A, Wang M, Wang F & Gu Z. Biogeography of the free-living and particle-attached bacteria in Tibetan lakes. FEMS Microbiology Ecology, 2019, 95: fiz088.
  21. Liu K, Yao T, Liu Y, Xu B, Hu A & Chen Y. Elevational patterns of abundant and rare bacterial diversity and composition in mountain streams in the southeast of the Tibetan Plateau. Science China Earth Sciences, 2019, 62: 853-862.
  22. Liu K, Liu Y, Han B-P, Xu B, Zhu L, Ju J, Jiao N & Xiong J. Bacterial community changes in a glacial-fed Tibetan lake are correlated with glacial melting. Science of The Total Environment, 2019, 651: 20592067.