教育背景
2005-2008 博士 地球化學 中科院廣州地球化學研究所;
2002-2005 碩士 古生物學與地層學 山東科技大學;
1998-2002 本科 地質工程 山東科技大學
工作經歷
2020年12月至:教授,同濟大學海洋與地球科學學院;
2014年12月至 2020年12月:副教授,同濟大學海洋與地球科學學院;
2010年05月至2014年12月:講師,同濟大學海洋與地球科學學院;
2010年10月至2014年12月:訪問學者,美國Oklahoma University;
2008年06月至2010年04月:博士後,同濟大學海洋與地球科學學院
教學與科研成果
研究興趣
現代海洋生物地球化學過程觀測;
現代海底熱液系統的微生物生態;
微生物生物成礦作用;
微生物參與的地球化學過程及其相互制約機制。
科研項目
海底熱液噴口富Fe-Si低溫熱液沉澱物的微生物礦化作用及其形成機制研究 41472307,2015.01-2018.12,90萬,國家自然科學基金面上基金,負責人;
海底熱液噴口不同類型低溫熱液沉澱物的微生物礦化機制研究 14ZR1443000,2014.07-2016.06,10萬,上海市自然科學基金,負責人;
基於觀測網的深海化學環境長期實時監測系統研發和集成國家 2012AA09A405,2012.01-2016.12,962,863計畫海洋技術領域重點項目,負責人;
海底熱液煙囪體中微生物的分布特徵及其關鍵制約要素41002122,2011.01-2013.12,20,國家自然科學基金青年科學基金項目,負責人;
非活動海底熱液硫化物煙囪體中微生物的分布及其生物礦化作用研究DY125-22-QY-19,2015.05-2016.04,7.5,中國大洋協會國際海底區域資源研究開發項目前沿性課題,負責人;
熱液羽流中微生物的演化與空間分布特徵2015.01-2016.12,20,同濟大學“中央高校基本科研業務費專項資金”項目青年優秀人才培養計畫(英才類),負責人;
海底低溫熱液沉澱物的生物礦化作用研究2013.01-2014.12,10萬,同濟大學“中央高校基本科研業務費專項資金”項目青年優秀人才培養計畫(英才類),負責人。
研究成果
(1)Qianfeng Liu , Jiasong Fang , Jiangtao Li, et al. 2018. Depth-Resolved Variations of Cultivable Bacteria and Their Extracellular Enzymes in the Water Column of the New Britain Trench. Frontiers in Microbiology. doi: 10.3389/fmicb.2018.00135;
(2)Jiangtao Li, Jiamei Cui, Qunhui Yang, et al. 2017. Oxidative Weathering and Microbial Diversity of an Inactive Seafloor Hydrothermal Sulfide Chimney. Frontiers in Microbiology. Doi:10.3389/ fmicb. 2017. 01378;
(3)Liu Q, Li J.T., Wei B, et al. 2016. Leeuwenhoekiella nanhaiensis sp. nov., isolated from the deep-sea water of the South China Sea. Int J Syst Evol Microbiol. 66: 1352-1357;
(4)Cao H.L., C.M. Dong, S. Bougouffa, Li J.T., et al. 2016. Delta-proteobacterial SAR324 group in hydrothermal plumes on the South Mid-Atlantic Ridge. Scientific Report (doi:10.1038/srep22842);
(5)Li J.T., H.Y. Zhou, J.S. Fang, et al. 2016. Microbial distribution in a hydrothermal plume of the Southwest Indian Ridge. Geomicrobiology Journal DOI: 10.1080/01490451.2015.1048393.PDF;
(6)Li J.T., B.B. Wei, J.N. Wang, Y. Liu, et al. 2015. Variation in abundance and community structure of particle-attached and free-living bacteria in the South China Sea. Deep-Sea Research II 122: 64-73. PDF;
(7)Cao H.L., Z.Z. Shao, Li J.T., et al. 2015. Phylogenetic diversity of nitrogen-utilizing genes in hydrothermal chimneys from three middle ocean ridges. Extremophiles DOI: 10.1007/s00792-015 -0788-4;
(8)Wang Y., Li J.T., L.S. He, et al. 2015. Zonation of microbial communities by a hydrothermal mound in the Atlantis II Deep (the Red Sea). PLOS ONE. DOI:10.1371/journal.pone.0140766;
(9)Fang J.S., L. Zhang,Li J.T., et al. 2015. The POM-DOM piezophilic microorganism continuum (PDPMC)-The role of piezophilic microorganisms in the global ocean carbon cycle. SCIENCE CHINA: Earth Sciences. DOI: 10.1007/s11430-014-4985-2;
(10)Li J.T., H.Y. Zhou, J.S. Fang, et al. Microbial distribution in different spatial positions within the walls of a black sulfide chimney. Marine Ecology Progress Series, 508: 67–85.PDF;
(11)Li J.T., Y.N. Sun, H.Y. Zhou, et al. 2014. Aerobic and anaerobic ammonia-oxidizing microorganisms in low-temperature hydrothermal precipitates of the Southwestern Pacific Ocean. Geomicrobiology Journal 31: 42–52. PDF;
(12)Wang J.N, Li J.T.*, S. Dasgupta, et al. 2014. Alterations in membrane fatty acids of gram-positive piezotolerant bacterium Sporosarcina sp. DSK25 in response to Growth Pressure. Lipids 49: 347–356.PDF;
(13)Li J. W., X.T. Peng, H.Y. Zhou, Li J.T., et al. 2014. Microbial communities in semi- consolidated carbonate sediments of the Southwest Indian Ridge. Journal of Microbiology 52: 111-119;
(14)Li J.W., X.T. Peng, H.Y. Zhou,Li J.T., et al. 2013. Molecular evidence for microorganisms participating in Fe, Mn,and S biogeochemical cycling in two low-temperature hydrothermal fields at the Southwest Indian Ridge. Journal of Geophysical Research 118: 665–679;
(15)Li J.T., H.Y. Zhou, et al. 2012. Microbial diversity and biomineralization in low-temperature hydrothermal iron–silica-rich precipitates of the Lau Basin hydrothermal field. FEMS Microbiology Ecology 81: 205-216.PDF;
(16)Peng X.T., J.W. Li, H.Y. Zhou, Li J.T., et al. 2011. Characteristics and source of inorganic and organic compounds in the sediments from two hydrothermal fields of the Central Indian and Mid-Atlantic ridges. Journal of Asian Earth Sciences 41: 355-368;
(17)Peng X.T., S. Chen, H.Y. Zhou, L.X. Zhang, Li J.T., et al. 2011. Diversity of biogenic minerals in low temperature Si-rich deposits from a newly discovered hydrothermal field on the ultraslow spreading Southwest Indian Ridge. Journal of Geophysical Research 116, DOI: 10.1029/ 2011JG001691;
(18)Peng X.T., H.Y. Zhou, Li J.T., et al. 2010. Intracellular and extracellular mineralization of a microbial community in the Edmond deep-sea vent field environment. Sedimentary Geology 229: 193-206;
(19)Zhou H.Y., Li J.T.*, X.T. Peng, et al. 2009. Microbial diversity of a sulfide black smoker in Main Endeavour hydrothermal vent field, Juan de Fuca ridge. The Journal of Microbiology 47(3): 235-247. PDF
(20)Peng X.T., H.Y. Zhou, H.Q. Yao,Li J.T., et al. 2009. Ultrastructural evidence for ion accumulation within the tube of Ridgeia piscesae. Biometals 22: 723-32;
(21)Peng X.T., H.Y. Zhou, H.Q. Yao, Li J.T., et al. 2007. Microbe-related precipitation of iron and silica in the Edmond deep-sea hydrothermal vent field on the Central Indian Ridge. Chinese Science Bulletin 52(23): 3233-3238;