Microbial methane production in oxygenated water column of an oligotrophic lake HP Grossart, K Frindte, C Dziallas, W Eckert, KW Tang Proceedings of the National Academy of Sciences 108 (49), 19657-19661, 2011 | 323 | 2011 |
Mechanisms and rates of bacterial colonization of sinking aggregates T Kiørboe, HP Grossart, H Ploug, K Tang Applied and Environmental Microbiology 68 (8), 3996-4006, 2002 | 262 | 2002 |
Bacterial colonization of particles: growth and interactions HP Grossart, T Kiørboe, K Tang, H Ploug Applied and environmental microbiology 69 (6), 3500-3509, 2003 | 224 | 2003 |
Dynamics of microbial communities on marine snow aggregates: colonization, growth, detachment, and grazing mortality of attached bacteria T Kiørboe, K Tang, HP Grossart, H Ploug Applied and Environmental Microbiology 69 (6), 3036-3047, 2003 | 215 | 2003 |
Comparison of cell-specific activity between free-living and attached bacteria using isolates and natural assemblages HP Grossart, KW Tang, T Kiørboe, H Ploug FEMS microbiology letters 266 (2), 194-200, 2007 | 208 | 2007 |
Zooplankton grazing on Phaeocystis: a quantitative review and future challenges JC Nejstgaard, KW Tang, M Steinke, J Dutz, M Koski, E Antajan, JD Long Biogeochemistry 83, 147-172, 2007 | 172 | 2007 |
Phaeocystis globosa (Prymnesiophyceae) and the planktonic food web: Feeding, growth, and trophic interactions among grazers KW Tang, HH Jakobsen, AW Visser Limnology and Oceanography 46 (8), 1860-1870, 2001 | 163 | 2001 |
Bacteria dispersal by hitchhiking on zooplankton HP Grossart, C Dziallas, F Leunert, KW Tang Proceedings of the National Academy of Sciences 107 (26), 11959-11964, 2010 | 161 | 2010 |
Linkage between crustacean zooplankton and aquatic bacteria KW Tang, V Turk, HP Grossart Aquatic Microbial Ecology 61 (3), 261-277, 2010 | 155 | 2010 |
Effects of protozoan grazing on colony formation in Phaeocystis globosa (Prymnesiophyceae) and the potential costs and benefits HH Jakobsen, KW Tang Aquatic Microbial Ecology 27 (3), 261-273, 2002 | 154 | 2002 |
Interactions between marine snow and heterotrophic bacteria: aggregate formation and microbial dynamics HP Grossart, T Kiørboe, KW Tang, M Allgaier, EM Yam, H Ploug Aquatic microbial ecology 42 (1), 19-26, 2006 | 151 | 2006 |
Methane production in oxic lake waters potentially increases aquatic methane flux to air KW Tang, DF McGinnis, D Ionescu, HP Grossart Environmental science & technology Letters 3 (6), 227-233, 2016 | 146 | 2016 |
Grazing and colony size development in Phaeocystis globosa (Prymnesiophyceae): the role of a chemical signal KW Tang Journal of plankton research 25 (7), 831-842, 2003 | 142 | 2003 |
Paradox reconsidered: Methane oversaturation in well-oxygenated lake waters K Tang, D McGinnis, K Frindte, V Bruchert, HP Grossart Limnology and Oceanography 59 (1), 275-284, 2014 | 139 | 2014 |
Occurrence of copepod carcasses in the lower Chesapeake Bay and their decomposition by ambient microbes KW Tang, CS Freund, CL Schweitzer Estuarine, Coastal and Shelf Science 68 (3-4), 499-508, 2006 | 136 | 2006 |
Role of diatoms in copepod production: good, harmless or toxic? SH Jónasdóttir, T Kiørboe, KW Tang, M St. John, AW Visser, E Saiz, ... Marine Ecology Progress Series 172, 305-308, 1998 | 135 | 1998 |
Simple staining method for differentiating live and dead marine zooplankton in field samples DT Elliott, KW Tang Limnology and Oceanography: Methods 7 (8), 585-594, 2009 | 130 | 2009 |
Trophic modification of essential fatty acids by heterotrophic protists and its effects on the fatty acid composition of the copepod Acartia tonsa AJ Veloza, FLE Chu, KW Tang Marine Biology 148, 779-788, 2006 | 125 | 2006 |
Copepods as microbial hotspots in the ocean: effects of host feeding activities on attached bacteria KW Tang Aquatic Microbial Ecology 38 (1), 31-40, 2005 | 117 | 2005 |
Contribution of oxic methane production to surface methane emission in lakes and its global importance M Günthel, D Donis, G Kirillin, D Ionescu, M Bizic, DF McGinnis, ... Nature communications 10 (1), 5497, 2019 | 112 | 2019 |