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Microbial Ecology|June 30, 2026
Comparing Aquatic Environmental DNA, Microscopy and Sedimentary DNA to Investigate Cyanobacterial Community Dynamics Across a Trophic GradientRobin Michael Crucitti-Thoo, Tümer Orhun Aykut, Agnieszka Rudak, et al.Microbial Ecology|March 3, 2011
Dynamics of ¹⁸O incorporation from H₂ ¹⁸O into soil microbial DNASteven J Blazewicz, Egbert SchwartzMicrobial Ecology|November 19, 2013
Chemosensory responses by the heterotrophic marine dinoflagellateCrypthecodinium cohniiD C Hauser, M Levandowsky, S H Hutner, et al.Microbial Ecology|November 9, 2013
Ecology ofVibrio cholerae in the freshwater environs of Calcutta, IndiaG B Nair, B L Sarkar, S P De, et al.Microbial Ecology|July 1, 2008
Description of freshwater bacterial assemblages from the upper paraná river floodpulse system, BrazilMichael J Lemke, E Kurt Lienau, Jean Rothe, et al.Microbial Ecology|November 24, 2011
Diketopiperazines produced by the halophilic archaeon, Haloterrigena hispanica, activate AHL bioreportersGiuseppina Tommonaro, Gennaro Roberto Abbamondi, Carmine Iodice, et al.Microbial Ecology|December 20, 2002
Movement, replication, and emigration rates of individual bacteria in a biofilmA R Rice, M A Hamilton, A K CamperMicrobial Ecology|November 15, 2013
Experimental and modeling studies of a four-trophic level predator-prey systemJ M Graham, R P CanaleMicrobial Ecology|September 24, 2022
Microbial Composition of Freshwater Marsh Sediment Responds more Strongly to Microcosm Seawater Addition than Simulated Nitrate or Phosphate EutrophicationEric A Weingarten, Colin R JacksonMicrobial Ecology|October 14, 2022
Microbial Community Structure and Metabolic Potential at the Initial Stage of Soil Development of the Glacial Forefields in SvalbardChen Tian, Yongxin Lv, Zhifeng Yang, et al.Pageof 513