Legume Seed Exudates and Physcomitrella Patens Extracts Influence Swarming Behavior in Rhizobium Leguminosarum
Overview
Authors
Affiliations
Plants are known to secrete chemical compounds that can change the behavior of rhizosphere-inhabiting bacteria. We investigated the effects of extracts from legume host plants on the swarming behavior of Rhizobium leguminosarum bv. viciae. We also investigated the effects on swarming when Rhizobium is exposed to extracts from an ancestor to vascular plants, the model bryophyte Physcomitrella patens. Lentil and faba bean seed exudates enhanced and inhibited swarming motility, respectively, whereas pea seed exudates had no observable effect on swarming. Swarming was also enhanced by the moss extracts. Exposure to lentil seed exudates and the moss extract increased flaA expression 2-fold, while faba bean seed exudates exposure decreased expression 3-fold, suggesting that the swarming effect could, in part, be due to regulation of flagellin gene expression. However, the exudates and extracts did not significantly affect flaA gene expression in planktonic motile cells, indicating that the response to flagellar regulation is specific to a physiology unique to the swarming cell. Transmission electron microscopy demonstrated that addition of the lentil seed exudate and the moss extract results in earlier differentiation into swarmer cells, which could contribute to the development of a larger swarming surface area. To gain further mechanistic insight into the effect of the moss extract on swarming, a moss strigolactone-deficient mutant (Ppccd8Δ) was tested. A reduction in the promotive effect was observed, suggesting that the plant hormone strigolactone may be a signalling molecule activating swarming motility in R. leguminosarum.
A method to determine antifungal activity in seed exudates by nephelometry.
Hubert B, Marchi M, Ly Vu J, Tranchant C, Tarkowski L, Leprince O Plant Methods. 2024; 20(1):16.
PMID: 38287427 PMC: 10826049. DOI: 10.1186/s13007-024-01144-z.
Methods for Studying Swimming and Surface Motilities in Rhizobia.
Fuentes-Romero F, Alias-Villegas C, Navarro-Gomez P, Acosta-Jurado S, Bernabeu-Roda L, Cuellar V Methods Mol Biol. 2024; 2751:205-217.
PMID: 38265718 DOI: 10.1007/978-1-0716-3617-6_13.
Cracking the enigma: understanding strigolactone signalling in the rhizosphere.
Clark J, Bennett T J Exp Bot. 2023; 75(4):1159-1173.
PMID: 37623748 PMC: 10860530. DOI: 10.1093/jxb/erad335.
Alias-Villegas C, Fuentes-Romero F, Cuellar V, Navarro-Gomez P, Soto M, Vinardell J Int J Mol Sci. 2022; 23(14).
PMID: 35887044 PMC: 9316994. DOI: 10.3390/ijms23147698.
Hormones as go-betweens in plant microbiome assembly.
Eichmann R, Richards L, Schafer P Plant J. 2020; 105(2):518-541.
PMID: 33332645 PMC: 8629125. DOI: 10.1111/tpj.15135.