Scinovex
articleTop 1% cited

Graphene oxide exhibits broad-spectrum antimicrobial activity against bacterial phytopathogens and fungal conidia by intertwining and membrane perturbation

Nanoscale · 2013 · Vol. 6(3) · pp. 1879–1889
Juanni ChenHui PengXiuping WangFeng ShaoZhaodong YuanHeyou Han

Abstract

To understand the interaction mechanism between graphene oxide (GO) and typical phytopathogens, a particular investigation was conducted about the antimicrobial activity of GO against two bacterial pathogens (P. syringae and X. campestris pv. undulosa) and two fungal pathogens (F. graminearum and F. oxysporum). The results showed that GO had a powerful effect on the reproduction of all four pathogens (killed nearly 90% of the bacteria and repressed 80% macroconidia germination along with partial cell swelling and lysis at 500 μg mL(-1)). A mutual mechanism is proposed in this work that GO intertwinds the bacteria and fungal spores with a wide range of aggregated graphene oxide sheets, resulting in the local perturbation of their cell membrane and inducing the decrease of the bacterial membrane potential and the leakage of electrolytes of fungal spores. It is likely that GO interacts with the pathogens by mechanically wrapping and locally damaging the cell membrane and finally causing cell lysis, which may be one of the major toxicity actions of GO against phytopathogens. The antibacterial mode proposed in this study suggests that the GO may possess antibacterial activity against more multi-resistant bacterial and fungal phytopathogens, and provides useful information about the application of GO in resisting crop diseases.

Graphene and Nanomaterials ApplicationsNanoparticles: synthesis and applicationsCarbon and Quantum Dots ApplicationsAntimicrobialBroad spectrumConidiumGraphenePerturbation (astronomy)MembraneOxideMicrobiologyChemistryNanotechnology

MeSH terms

Anti-Bacterial AgentsAntifungal AgentsCell MembraneElectrolytesFusariumGraphiteMembrane PotentialsMicroscopy, FluorescenceOxidesSpores, FungalTriazolesWaterXanthomonas campestrisSpectroscopy, Fourier Transform InfraredMicroscopy, Confocal

Funding

  • National Natural Science Foundation of China
  • Natural Science Foundation of Hubei Province
  • Fundamental Research Funds for the Central Universities
Citations
602
FWCI
14.96
field-weighted impact
References
53
Percentile
99%
vs. same field & year
Citations per year
Citation Network

How this paper connects to the literature. Drag to explore, click any node to open that paper.