康京粮
职称/头衔:副研究员、硕士生导师。
E-mail:jinglkang@hainanu.edu.cn
● 个人简介
2013年,本科毕业于西南大学,水产养殖专业。2013-2018年,硕博连读,中国科学院大学水生生物研究所理学博士,师从何舜平研究员,从事鱼类高原适应性研究。2019-2024年,香港大学嘉道理生命科学学院博士后,加入Celia Schunter助理研究员科研团队,负责海洋酸化下珊瑚鱼类适应性研究。2024年4月,入职海南大学。在Global Change Biology、BMC Biology、Evolutionary Applications等国际权威期刊上发表论文15篇,担任Molecular Ecology、Molecular Ecology Resources、Scientific Data等杂志审稿人。在Indo-Pacific Fish Conference and the Australian Society for Fish Biology(Auckland, New Zealand)、14th International Coral Reef Symposium(Bremen, Germany)、The Sixth Xiamen Symposium on Marine Environmental Sciences(Xiamen, China)等多个国际会议上做口头汇报。
● 研究方向
1) 鱼类环境适应机制;
2) 鱼类物种形成机制;
● 科研项目与课题
1. 国家自然科学基金委,国家自然科学基金青年科学基金项目,32403028, 海洋酸化下夜行性鱼类的响应机制研究, 2025-01至2027-12,30万,主持
2. 海南大学,高层次人才启动基金,夜行性鱼类适应性进化研究,2024-04至2029-04,30万,主持
● 论文与专著
1. Kang, J., Chung, A., Suresh, S., Bonzi, L. C., Sourisse, J. M., Ramirez-Calero, S., . . . Schunter, C. (2024). Long non-coding RNAs mediate fish gene expression in response to ocean acidification. Evolutionary applications.17, e13655. https://doi.org/10.1111/eva.13655. (中科院生物学二区TOP: IF=4.1).
2. Kang, J., Ramirez-Calero, S., José R. P., Yi, F., Schunter, C. (2023). Gene losses, parallel evolution and heightened expression confer adaptations to dedicated cleaning behaviour. BMC Biology. 21, 180. https://doi.org/10.1186/s12915-023-01682-3. (中科院生物学一区TOP: IF=5.4) .
3. Kang, J., Nagelkerken, I., Rummer, J. L., Rodolfo‐Metalpa, R., Munday, P. L., Ravasi, T., & Schunter, C. (2022). Rapid evolution fuels transcriptional plasticity to ocean acidification. Global Change Biology, 28(9), 3007-3022. https://doi.org/10.1111/gcb.16119. (中科院环境科学与生态学一区TOP; IF=11.6).
4. Peng, T.†, Kang, J.†, Xiong, X., Cheng, F., Zhou, X., Dai, W., . . . Zhong, B. (2021). Integrated transcriptomics and metabolomics analyses provide insights into the response of Chongyi wild Mandarin to Candidatus Liberibacter Asiaticus Infection. Frontiers in Plant Science, 2140. https://doi.org/10.3389/fpls. †共同一作. (中科院生物学二区; IF=5.6).
5. Yang, L., …, Kang, J., …, He, S.*. (2023) Enlarged fins of Tibetan catfish provide new evidence of adaptation to high plateau; Science China Life Sciences. 66, 1554–1568. https://doi-org.eproxy.lib.hku.hk/10.1007/s11427-022-2253-7. (中科院生物学一区; IF=9.1).
6. Tao, D., Zhang, K., Xu, S., Lin, H., Liu, Y., Kang, J., . . . Leung, K. M. (2022). Microfibers released into the air from a household tumble dryer. Environmental Science & Technology Letters, 9(2), 120-126. https://doi.org/10.1021/acs.estlett.1c00911. (中科院大类二区; IF=10.9).
7. Chen, J., …; Kang, J., ..., He, S*. (2020). Analysis of multiplicity of hypoxia-inducible factors in the evolution of Triplophysa fish (Osteichthyes: Nemacheilinae) reveals hypoxic environments adaptation to Tibetan plateau; Frontiers in Genetics. (中科院大类三区; IF=3.7).