The role of ecological theory in microbial ecology

[1]  J. Jansson,et al.  Modern Soil Microbiology , 2019 .

[2]  R. Singer,et al.  Can landscape ecology untangle the complexity of antibiotic resistance? , 2007, Nature Reviews Microbiology.

[3]  J. Gamarra,et al.  Metapopulation Ecology , 2007 .

[4]  Helen E. Fisher,et al.  Romantic love: a mammalian brain system for mate choice , 2006, Philosophical Transactions of the Royal Society B: Biological Sciences.

[5]  B. Bohannan,et al.  Spatial scaling of microbial biodiversity. , 2006, Trends in ecology & evolution.

[6]  Susan M. Huse,et al.  Microbial diversity in the deep sea and the underexplored “rare biosphere” , 2006, Proceedings of the National Academy of Sciences.

[7]  A. Griffin,et al.  Social evolution theory for microorganisms , 2006, Nature Reviews Microbiology.

[8]  W. Sloan,et al.  Taxa-area relationships for microbes: the unsampled and the unseen. , 2006, Ecology letters.

[9]  B. Jefferson,et al.  Bacterial diversity is determined by volume in membrane bioreactors. , 2006, Environmental microbiology.

[10]  Lisa C. Crossman,et al.  The genome of Rhizobium leguminosarum has recognizable core and accessory components , 2006, Genome Biology.

[11]  H. Hillebrand,et al.  The imprint of the geographical, evolutionary and ecological context on species-area relationships. , 2006, Ecology letters.

[12]  R. B. Jackson,et al.  The diversity and biogeography of soil bacterial communities. , 2006, Proceedings of the National Academy of Sciences of the United States of America.

[13]  M. Breitbart,et al.  Using pyrosequencing to shed light on deep mine microbial ecology , 2006, BMC Genomics.

[14]  Kevin J Gaston,et al.  Dissecting the species–energy relationship , 2005, Proceedings of the Royal Society B: Biological Sciences.

[15]  Jason D. Gans,et al.  Computational Improvements Reveal Great Bacterial Diversity and High Metal Toxicity in Soil , 2005, Science.

[16]  I. Thompson,et al.  Island size and bacterial diversity in an archipelago of engineering machines. , 2005, Environmental microbiology.

[17]  S. Levin,et al.  Coevolutionary arms races between bacteria and bacteriophage. , 2005, Proceedings of the National Academy of Sciences of the United States of America.

[18]  E. Casamayor,et al.  DOES ECOSYSTEM SIZE DETERMINE AQUATIC BACTERIAL RICHNESS , 2005 .

[19]  J. Newman,et al.  Larger Islands House More Bacterial Taxa , 2005, Science.

[20]  E. Purdom,et al.  Diversity of the Human Intestinal Microbial Flora , 2005, Science.

[21]  William J. Sutherland,et al.  The best solution , 2005, Nature.

[22]  Klaas J Hellingwerf,et al.  Bacterial observations: a rudimentary form of intelligence? , 2005, Trends in microbiology.

[23]  M. Westoby,et al.  Spatial scaling of microbial eukaryote diversity , 2004, Nature.

[24]  S. Leibler,et al.  Bacterial Persistence as a Phenotypic Switch , 2004, Science.

[25]  Debra L. Wohl,et al.  FUNCTIONAL REDUNDANCY SUPPORTS BIODIVERSITY AND ECOSYSTEM FUNCTION IN A CLOSED AND CONSTANT ENVIRONMENT , 2004 .

[26]  B. Kerr,et al.  Big questions, small worlds: microbial model systems in ecology. , 2004, Trends in ecology & evolution.

[27]  D. Pfennig,et al.  Genetic details, optimization and phage life histories. , 2004, Trends in ecology & evolution.

[28]  I. Zhulin,et al.  Ecological role of energy taxis in microorganisms. , 2004, FEMS microbiology reviews.

[29]  M. Travisano,et al.  Strategies of microbial cheater control. , 2004, Trends in microbiology.

[30]  B. Bohannan,et al.  An ecological perspective on bacterial biodiversity , 2004, Proceedings of the Royal Society of London. Series B: Biological Sciences.

[31]  W. Lam,et al.  Serial analysis of ribosomal sequence tags (SARST): a high-throughput method for profiling complex microbial communities. , 2003, Environmental microbiology.

[32]  J. Gottschal Some reflections on microbial competitiveness among heterotrophic bacteria , 2004, Antonie van Leeuwenhoek.

[33]  D. Dykhuizen Santa Rosalia revisited: Why are there so many species of bacteria? , 2004, Antonie van Leeuwenhoek.

[34]  J. Newbold,et al.  Contributions of microbial biofilms to ecosystem processes in stream mesocosms , 2003, Nature.

[35]  M. Riley,et al.  A molecular phylogeny of enteric bacteria and implications for a bacterial species concept , 2003, Journal of evolutionary biology.

[36]  John W. Taylor,et al.  Geographic Barriers Isolate Endemic Populations of Hyperthermophilic Archaea , 2003, Science.

[37]  B. Bohannan,et al.  Bacterial diversity patterns along a gradient of primary productivity , 2003 .

[38]  G. J. Velicer Social strife in the microbial world. , 2003, Trends in microbiology.

[39]  Kevin J. Gaston,et al.  Measuring beta diversity for presence–absence data , 2003 .

[40]  G. Medley,et al.  Mathematical modelling of the foot and mouth disease epidemic of 2001: strengths and weaknesses. , 2002, Research in veterinary science.

[41]  R. Redfield Is quorum sensing a side effect of diffusion sensing? , 2002, Trends in microbiology.

[42]  Thomas P. Curtis,et al.  Estimating prokaryotic diversity and its limits , 2002, Proceedings of the National Academy of Sciences of the United States of America.

[43]  A. Azovsky Size-dependent species-area relationships in benthos: is the world more diverse for microbes? , 2002 .

[44]  Lawrence O. Ticknor,et al.  Empirical and Theoretical Bacterial Diversity in Four Arizona Soils , 2002, Applied and Environmental Microbiology.

[45]  J. Lovett-Doust,et al.  Plant strategies, vegetation processes, and ecosystem properties , 2002 .

[46]  Alexander S. Mikhailov,et al.  The Games of Life , 2002 .

[47]  F. Cohan What are bacterial species? , 2002, Annual review of microbiology.

[48]  Katherine L. Gross,et al.  WHAT IS THE OBSERVED RELATIONSHIP BETWEEN SPECIES RICHNESS AND PRODUCTIVITY , 2001 .

[49]  R. Johnstone,et al.  Cooperation in the dark: signalling and collective action in quorum-sensing bacteria , 2001, Proceedings of the Royal Society of London. Series B: Biological Sciences.

[50]  J. Tiedje,et al.  Biogeography and Degree of Endemicity of Fluorescent Pseudomonas Strains in Soil , 2000, Applied and Environmental Microbiology.

[51]  Carl T. Bergstrom,et al.  Natural selection, infectious transfer and the existence conditions for bacterial plasmids. , 2000, Genetics.

[52]  Shahid Naeem,et al.  Producer–decomposer co-dependency influences biodiversity effects , 2000, Nature.

[53]  K. J. Clarke,et al.  Ubiquitous dispersal of microbial species , 1999, Nature.

[54]  U. Dieckmann,et al.  On the origin of species by sympatric speciation , 1999, Nature.

[55]  Richard E. Lenski,et al.  EVOLUTIONARY TRADE-OFFS UNDER CONDITIONS OF RESOURCE ABUNDANCE AND SCARCITY: EXPERIMENTS WITH BACTERIA , 1999 .

[56]  M. Crawley,et al.  Herbivores, seed banks and seedling recruitment in mesic grassland , 1999 .

[57]  W. Whitman,et al.  Prokaryotes: the unseen majority. , 1998, Proceedings of the National Academy of Sciences of the United States of America.

[58]  A. Dean,et al.  The evolution of bacterial transformation: sex with poor relations. , 1997, Genetics.

[59]  S. M. Verduyn Lunel,et al.  Stochastic and spatial structures of dynamical systems , 1996 .

[60]  P. Abrams Monotonic or unimodal diversity-productivity gradients : what does competition theory predict? , 1995 .

[61]  Richard E. Lenski,et al.  Long-Term Experimental Evolution in Escherichia coli. II. Changes in Life-History Traits During Adaptation to a Seasonal Environment , 1994, The American Naturalist.

[62]  J. Bunge,et al.  Estimating the Number of Species: A Review , 1993 .

[63]  R. Lenski,et al.  Long-Term Experimental Evolution in Escherichia coli. I. Adaptation and Divergence During 2,000 Generations , 1991, The American Naturalist.

[64]  V. Torsvik,et al.  High diversity in DNA of soil bacteria , 1990, Applied and environmental microbiology.

[65]  M. Austin Plant strategies and the dynamics and structure of plant communities , 1989 .

[66]  C. Clark,et al.  Dynamic Modeling in Behavioral Ecology , 2019 .

[67]  J. Adams,et al.  Evolution of Escherichia coli during growth in a constant environment. , 1987, Genetics.

[68]  R M May,et al.  The invasion, persistence and spread of infectious diseases within animal and plant communities. , 1986, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[69]  L. Dijkhuizen,et al.  Strategies of mixed substrate utilization in microorganisms. , 1982, Philosophical transactions of the Royal Society of London. Series B, Biological sciences.

[70]  C. Krebs Ecology: The Experimental Analysis of Distribution and Abundance , 1973 .

[71]  R. Macarthur,et al.  The Theory of Island Biogeography , 1969 .

[72]  K. Fægri The Species Problem , 1935, Nature.

[73]  H. Gleason Species and Area , 1925 .

[74]  P. Sassone-Corsi,et al.  Computational Improvements Reveal Great Bacterial Diversity and High Metal Toxicity in Soil , 2022 .