Angus Buckling

Active 1997–2025

127
Papers
21,532
Citations
86
h-index
122
i10-index

Citations

Citations per year for Angus Buckling1969: 1 citations1974: 2 citations1981: 1 citations1986: 1 citations1987: 4 citations1993: 1 citations1995: 1 citations1997: 2 citations1998: 3 citations1999: 2 citations2000: 11 citations2001: 6 citations2002: 28 citations2003: 27 citations2004: 82 citations2005: 71 citations2006: 82 citations2007: 136 citations2008: 141 citations2009: 198 citations2010: 229 citations2011: 243 citations2012: 303 citations2013: 301 citations2014: 296 citations2015: 252 citations2016: 259 citations2017: 269 citations2018: 243 citations2019: 686 citations2020: 631 citations2021: 655 citations2022: 555 citations2023: 356 citations2024: 616 citations2025: 329 citations2026: 9 citations1970–1973: no citations, so these years are not shown1975–1980: no citations, so these years are not shown1982–1985: no citations, so these years are not shown1988–1992: no citations, so these years are not shown1994: no citations, so this year is not shown1996: no citations, so this year is not shown

Citation sources

Countries

World map of the countries and regions citing this authorUnited States: 1,621 citing papers, 22.3% of this breakdownUnited Kingdom: 886 citing papers, 12.2% of this breakdownChina: 498 citing papers, 6.9% of this breakdownGermany: 425 citing papers, 5.8% of this breakdownFrance: 418 citing papers, 5.8% of this breakdownCanada: 320 citing papers, 4.4% of this breakdownSwitzerland: 313 citing papers, 4.3% of this breakdownSpain: 232 citing papers, 3.2% of this breakdownNetherlands: 186 citing papers, 2.6% of this breakdownAustralia: 171 citing papers, 2.3% of this breakdownBelgium: 154 citing papers, 2.1% of this breakdownDenmark: 142 citing papers, 2% of this breakdown
0%22.3%Other 26.1%

Fields

  • Biochemistry, Genetics and Molecular Biology40.4%
  • Environmental Science34%
  • Agricultural and Biological Sciences7.6%
  • Social Sciences6.5%
  • Medicine6.3%
  • Immunology and Microbiology2.3%
  • Other2.9%

Topics

  • Bacteriophages and microbial interactions10.4%
  • Evolution and Genetic Dynamics10%
  • Evolutionary Game Theory and Cooperation5.2%
  • Bacterial biofilms and quorum sensing3.6%
  • Antibiotic Resistance in Bacteria3.6%
  • CRISPR and Genetic Engineering3.3%
  • Other63.9%

Coauthors

All papers

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  1. Prophages mediate defense against phage infection through diverse mechanisms

    Authors: , , , , , , - The ISME Journal 2016 cited by 542

  2. Cooperation and competition in pathogenic bacteria

    Authors: , , - Nature 2004 cited by 1,151

  3. Anti-CRISPR Phages Cooperate to Overcome CRISPR-Cas Immunity

    Authors: , , , , , , , , - Cell 2018 cited by 243

  4. Quality and Safety Requirements for Sustainable Phage Therapy Products

    Authors: , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , Martin Zizi, Guy Van den Eede - Pharmaceutical Research 2015 cited by 262

  5. Parallel evolution of Pseudomonas aeruginosa phage resistance and virulence loss in response to phage treatment in vivo and in vitro

    Authors: , , , , , , , , , , - eLife 2022 cited by 83

  6. Evolutionary Ecology of Prokaryotic Immune Mechanisms

    Authors: , , - Microbiology and Molecular Biology Reviews 2016 cited by 271

  7. Bacteria-Phage Antagonistic Coevolution in Soil

    Authors: , - Science 2011 cited by 526

  8. Parasite Exposure Drives Selective Evolution of Constitutive versus Inducible Defense

    Authors: , , , , , , , , , - Current Biology 2015 cited by 301

  9. Mitigation of evolved bacterial resistance to phage therapy

    Authors: , , - Current Opinion in Virology 2022 cited by 63

  10. The Phage Therapy Paradigm: Prêt-à-Porter or Sur-mesure?

    Authors: , , , , , , , , , , , , , , , , , , - Pharmaceutical Research 2010 cited by 298

  11. Antimicrobial resistance acquisition via natural transformation: context is everything

    Authors: , , , , - Current Opinion in Microbiology 2021 cited by 94

  12. The diversity-generating benefits of a prokaryotic adaptive immune system

    Authors: , , , , , , , , , , - Nature 2016 cited by 286

  13. Selection for antimicrobial resistance is reduced when embedded in a natural microbial community

    Authors: , , , , , , - The ISME Journal 2019 cited by 199

  14. The Reproductive Microbiome: An Emerging Driver of Sexual Selection, Sexual Conflict, Mating Systems, and Reproductive Isolation

    Authors: , , , , - Trends in Ecology & Evolution 2020 cited by 166

  15. CRISPR–Cas systems: beyond adaptive immunity

    Authors: , , - Nature Reviews Microbiology 2014 cited by 329

  16. The Social Lives of Microbes

    Authors: , , , , - Annual Review of Ecology Evolution and Systematics 2007 cited by 744

  17. Increased copy number couples the evolution of plasmid horizontal transmission and plasmid-encoded antibiotic resistance

    Authors: , , - National Academy of Sciences, Proceedings of the National Academy of Sciences 2021 cited by 87

  18. Effects of Sequential and Simultaneous Applications of Bacteriophages on Populations of Pseudomonas aeruginosa In Vitro and in Wax Moth Larvae

    Authors: , , , , - Applied and Environmental Microbiology 2012 cited by 176

  19. Antagonistic coevolution accelerates molecular evolution

    Authors: , , , , , , , , , , , , - Nature 2010 cited by 569

  20. Critically evaluating the relative importance of phage in shaping microbial community composition

    Authors: , - Trends in Microbiology 2024 cited by 71

  21. Host- plasmid network structure in wastewater is linked to antimicrobial resistance genes

    Authors: , , , , , , - Nature Communications 2024 cited by 52

  22. Coevolution with viruses drives the evolution of bacterial mutation rates

    Authors: , , , , - Nature 2007 cited by 331

  23. Novel Insights into Selection for Antibiotic Resistance in Complex Microbial Communities

    Authors: , , , , , , - mBio 2018 cited by 166

  24. Antagonistic coevolution between a bacterium and a bacteriophage

    Authors: , - Royal Society B Biological Sciences, Proceedings of the Royal Society B Biological Sciences 2002 cited by 644