Antimicrobial Activity of Metals and Metalloids.

Yuan Ping Li, Ibtissem Ben Fekih, Ernest Chi Fru, Aurelio Moraleda-Munoz, Xuanji Li, Barry P Rosen, Masafumi Yoshinaga, Christopher Rensing

Journal: Annual review of microbiology 2022;75():175-197

PMID: 34343021

Abstract

Competition shapes evolution. Toxic metals and metalloids have exerted selective pressure on life since the rise of the first organisms on the Earth, which has led to the evolution and acquisition of resistance mechanisms against them, as well as mechanisms to weaponize them. Microorganisms exploit antimicrobial metals and metalloids to gain competitive advantage over other members of microbial communities. This exerts a strong selective pressure that drives evolution of resistance. This review describes, with a focus on arsenic and copper, how microorganisms exploit metals and metalloids for predation and how metal- and metalloid-dependent predation may have been a driving force for evolution of microbial resistance against metals and metalloids.

Address: Institute of Environmental Microbiology, College of Resources and Environment, Fujian Agriculture and Forestry University, Fuzhou 350002, China; email: [email protected].; Centre for Geobiology and Geochemistry, School of Earth and Ocean Sciences, Cardiff University, CF10 3AT Cardiff, United Kingdom.; Departamento de Microbiología, Facultad de Ciencias, Universidad de Granada, Granada 18071, Spain.; Department of Biology, University of Copenhagen, DK-2200 Copenhagen, Denmark.; Department of Cellular Biology and Pharmacology, Herbert Wertheim College of Medicine, Florida International University, Miami, Florida 33199, USA; email: [email protected].
MeSH Terms: Copper, Metalloids
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