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个人履历
Brief CV |
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Professor, 2022-present, Xiamen University, China
Associate Professor, 2013-2022, Xiamen University, China
Postdoc, 2009-2013, Woods Hole Oceanographic Institution, USA
Ph.D., 2010, Brown University, USA
M.S., 2003, Peking University, China
B.S., 2000, Ocean University of China
教授,2022至今,厦门大学
副教授,2013-2022,厦门大学
博士后,2009-2013,美国伍兹霍尔海洋研究所
博士,2010,美国布朗大学
硕士,2003,北京大学
学士,2000,中国海洋大学 |
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研究方向
Research Interests |
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Google Scholar: https://scholar.google.com/citations?hl=en&user=wPZm2SUAAAAJ
As a group of oceanographers, my team and I employ a variety of analytical tools, including data synthesis, eco-physiological models, and ecosystem models to investigate the complexities of marine microbial ecology and biogeochemistry in the context of climate change. Our research interests are focused on understanding the intricate interplay between critical oceanic processes such as nitrogen fixation, heterotrophic bacteria-dissolved organic matter (DOM) dynamics, viral ecology, and the carbon and nitrogen cycles. By delving into these topics, we aim to gain a comprehensive understanding of the complex mechanisms that govern marine ecosystem dynamics and their potential responses to climate change.
作为海洋科学家,我和我的课题组成员使用数据分析、生态生理模型和生态系统模型等工具,研究气候变化背景下海洋微生物生态和生物地球化学的复杂变化。我们的研究兴趣围绕着理解海洋中关键过程之间的错综复杂的相互作用,如生物固氮、异养细菌-溶解有机物动态、病毒生态以及碳氮循环。通过深入研究这些问题,通过深入研究这些课题,我们旨在全面了解是什么样的复杂机制,主导着海洋生态系统的动态变化及其对气候变化的潜在响应。 |
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代表性论文
Selected Publications |
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Student coauthors from my lab are underlined. Corresponding authors are denoted by *.
Shao, Z.#, Xu, Y.#, Wang, H., Luo, W., Wang, L., Huang, Y., Agawin, N. S. R., Ahmed, A., Benavides, M., Bentzon-Tilia, M., Berman-Frank, I., Berthelot, H., Biegala, I. C., Bif, M. B., Bode, A., Bonnet, S., Bronk, D. A., Brown, M. V., Campbell, L., Capone, D. G., Carpenter, E. J., Cassar, N., Chang, B. X., Chappell, D., Chen, Y. L., Church, M. J., Cornejo-Castillo, F. M., Detoni, A. M. S., Doney, S. C., Dupouy, C., Estrada, M., Fernandez, C., Fernández-Castro, B., Fonseca-Batista, D., Foster, R. A., Furuya, K., Garcia, N., Goto, K., Gago, J., Gradoville, M. R., Hamersley, M. R., Henke, B. A., Hörstmann, C., Jayakumar, A., Jiang, Z., Kao, S. J., Karl, D. M., Kittu, L. R., Knapp, A. N., Kumar, S., LaRoche, J., Liu, H., Liu, J., Lory, C., Löscher, C. R., Marañón, E., Messer, L. F., Mills, M. M., Mohr, W., Moisander, P. H., Mahaffey, C., Moore, R., Mouriño-Carballido, B., Mulholland, M. R., Nakaoka, S., Needoba, J. A., Raes, E. J., Rahav, E., Ramírez-Cárdenas, T., Reeder, C. F., Riemann, L., Riou, V., Robidart, J. C., Sarma, V. V. S. S., Sato, T., Saxena, H., Selden, C., Seymour, J. R., Shi, D., Shiozaki, T., Singh, A., Sipler, R. E., Sun, J., Suzuki, K., Takahashi, K., Tan, Y., Tang, W., Tremblay, J. É., Turk-Kubo, K., Wen, Z., White, A. E., Wilson, S. T., Yoshida, T., Zehr, J. P., Zhang, R., Zhang, Y., and Luo, Y.-W.* (2023), Global oceanic diazotroph database version 2 and elevated estimate of global oceanic N2 fixation, Earth System Science Data 15, 3673-3709, https://doi.org/10.5194/essd-15-3673-2023
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Luo, W., and Luo, Y.-W.* (2023), Diurnally dynamic iron allocation promotes N2 fixation in marine dominant diazotroph Trichodesmium, Computational and Structural Biotechnology Journal 21, 3503-3512, https://doi.org/10.1016/j.csbj.2023.07.006
Dai, M.#*, Luo, Y.-W.#*, Achterberg, E. P., Browning, T. J., Cai, Y., Cao, Z., Chai, F., Chen, B., Church, M. J., Ci, D., Du, C., Gao, K., Guo, X., Hu, Z., Kao, S.-J., Laws, E. A., Lee, Z., Lin, H., Liu, Q., Liu, X., Luo, W., Meng, F., Shang, S., Shi, D., Saito, H., Song, L., Wan, X. S., Wang, Y., Wang, W.-L., Wen, Z., Xiu, P., Zhang, J., Zhang, R., and Zhou, K. (2023), Upper ocean biogeochemistry of the oligotrophic North Pacific Subtropical Gyre: From nutrient sources to carbon export, Reviews of Geophysics 61, e2022RG000800, https://doi.org/10.1029/2022RG000800
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Luo, W., Inomura, K., Zhang, H., and Luo, Y.-W.* (2022), N2 fixation in Trichodesmium does not require spatial segregation from photosynthesis, mSystems 7, e00538-22, https://doi.org/10.1128/msystems.00538-22
Xie, L., Zhang, R., and Luo, Y.-W.* (2022), Assessment of explicit representation of dynamic viral processes in regional marine ecological models, Viruses 14, 1448, https://doi.org/10.3390/v14071448
Shao, Z., and Luo, Y.-W.* (2022), Controlling factors on the global distribution of a representative marine non-cyanobacterial diazotroph phylotype (Gamma A), Biogeosciences 19, 2939-2952, https://doi.org/10.5194/bg-19-2939-2022
Zhang, Q., and Luo, Y.-W.* (2022), A competitive advantage of middle-sized diatoms from increasing seawater CO2, Frontiers in Microbiology 13, 838629, https://doi.org/10.3389/fmicb.2022.838629
Wang, H., and Luo, Y.-W.* (2022), Top-down control on major groups of global marine diazotrophs, Acta Oceanologica Sinica 41(8), 111-119, https://doi.org/10.1007/s13131-021-1956-2
Xie, L., Wei, W., Cai, L., Chen, X., Huang, Y., Jiao, N., Zhang, R.*, and Luo, Y.-W.* (2021), A global viral oceanography database (gVOD), Earth System Science Data 13, 1251-1271, https://doi.org/10.5194/essd-13-1251-2021
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Luo, Y.-W.*, Shi, D.*, Kranz, S. A., Hopkinson, B. M., Hong, H., Shen, R. and Zhang, F. (2019), Reduced nitrogenase efficiency dominates response of the globally important nitrogen fixer Trichodesmium to ocean acidification, Nature Communications 10, 1521, https://doi.org/10.1038/s41467-019-09554-7
Hong, H., R. Shen, F. Zhang, Z. Wen, S. Chang, W. Lin, S. A. Kranz, Luo, Y.-W., S.-J. Kao, F. M. M. Morel, and D. Shi* (2017), The complex effects of ocean acidification on the prominent N2-fixing cyanobacterium Trichodesmium, Science 356(6337), 527-531, https://doi.org/10.1126/science.aal2981
Jiao, N.*, L. Legendre*, C. Robinson*, H. Thomas*, Luo, Y.-W., H. Dang, J. Liu, R. Zhang, K. Tang, T. Luo, C. Li, X. Wang, and C. Zhang (2015), Comment on “Dilution limits dissolved organic carbon utilization in the deep ocean”, Science 350(6267), 1483, https://doi.org/10.1126/science.aab2713
Brun, P.*, Vogt, M., Payne, M. R., Gruber, N., O'Brien, C. J., Buitenhuis, E. T., Le Quéré, C., Leblanc, K., and Luo, Y.-W. (2015), Ecological niches of open ocean phytoplankton taxa, Limnology and Oceanography 60, 1020-1038, https://doi.org/10.1002/lno.10074
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Luo, Y.-W.*, Lima, I. D., Karl, D. M., Deutsch, C. A., and Doney, S. C. (2014), Data-based assessment of environmental controls on global marine nitrogen fixation, Biogeosciences 11, 691-708, https://doi.org/10.5194/bg-11-691-2014
Luo, Y.-W.*, Ducklow, H. W., Friedrichs, M. A. M., Church, M. J., Karl, D. M. and Doney, S. C. (2012), Interannual variability of primary production and dissolved organic nitrogen storage in the North Pacific Subtropical Gyre, Journal of Geophysical Research-Biogeosciences 117, G03019, https://doi.org/10.1029/2011JG001830
Luo, Y.-W.*, Doney, S. C., et al. (2012). Database of diazotrophs in global ocean: abundance, biomass and nitrogen fixation rates. Earth System Science Data 4, 47-73, https://doi.org/10.5194/essd-4-47-2012
Luo, Y.-W.*, Friedrichs, M.A.M., Doney, S.C., Church, M.J. & Ducklow, H.W. (2010). Oceanic heterotrophic bacterial nutrition by semilabile DOM as revealed by data assimilative modeling. Aquatic Microbial Ecology 60: 273-287, https://doi.org/10.3354/ame01427
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