The Ecological Roles of Bacterial Chemotaxis
Overview
Microbiology
Affiliations
How bacterial chemotaxis is performed is much better understood than why. Traditionally, chemotaxis has been understood as a foraging strategy by which bacteria enhance their uptake of nutrients and energy, yet it has remained puzzling why certain less nutritious compounds are strong chemoattractants and vice versa. Recently, we have gained increased understanding of alternative ecological roles of chemotaxis, such as navigational guidance in colony expansion, localization of hosts or symbiotic partners and contribution to microbial diversity by the generation of spatial segregation in bacterial communities. Although bacterial chemotaxis has been observed in a wide range of environmental settings, insights into the phenomenon are mostly based on laboratory studies of model organisms. In this Review, we highlight how observing individual and collective migratory behaviour of bacteria in different settings informs the quantification of trade-offs, including between chemotaxis and growth. We argue that systematically mapping when and where bacteria are motile, in particular by transgenerational bacterial tracking in dynamic environments and in situ approaches from guts to oceans, will open the door to understanding the rich interplay between metabolism and growth and the contribution of chemotaxis to microbial life.
Specificities of Chemosensory Receptors in the Human Gut Microbiota.
Xu W, Jalomo-Khayrova E, Gumerov V, Ross P, Kobel T, Schindler D bioRxiv. 2025; .
PMID: 39990360 PMC: 11844446. DOI: 10.1101/2025.02.11.637667.
Disentangling the feedback loops driving spatial patterning in microbial communities.
Henderson A, Del Panta A, Schubert O, Mitri S, van Vliet S NPJ Biofilms Microbiomes. 2025; 11(1):32.
PMID: 39979272 PMC: 11842706. DOI: 10.1038/s41522-025-00666-1.
Lisevich I, Colin R, Yang H, Ni B, Sourjik V Nat Commun. 2025; 16(1):1731.
PMID: 39966405 PMC: 11836070. DOI: 10.1038/s41467-025-56980-x.
An atlas of metabolites driving chemotaxis in prokaryotes.
Brunet M, Amin S, Bodachivskyi I, Kuzhiumparambil U, Seymour J, Raina J Nat Commun. 2025; 16(1):1242.
PMID: 39890791 PMC: 11785958. DOI: 10.1038/s41467-025-56410-y.
Cyanobacteria and Chloroflexota cooperate to structure light-responsive biofilms.
Bunbury F, Rivas C, Calatrava V, Malkovskiy A, Joubert L, Parvate A Proc Natl Acad Sci U S A. 2025; 122(5):e2423574122.
PMID: 39879238 PMC: 11804611. DOI: 10.1073/pnas.2423574122.