Enterobacter Species: Opportunistic Human and Plant Pathogens With Plant-Beneficial Traits.

Sara Jordan, Pieter de Maayer, Theo H M Smits, Teresa A Coutinho

Journal: Molecular plant pathology 2026;27(3):e70231

PMID: 41821177

Abstract

UNLABELLED

Enterobacter species occur across diverse habitats and are best known for causing opportunistic and nosocomial infections in humans. The taxonomy of this genus is complex, with many species reassigned to and from this genus. Their interaction with plants is multifaceted. Strains of certain species cause opportunistic plant diseases.

HOST RANGE

Enterobacter species affect a wide range of plant hosts.

DISEASE SYMPTOMS

They cause a range of symptoms including leaf spots and blight, wilt and root diseases, decay and soft rot and cankers.

PLANT-BENEFICIAL TRAITS

Some Enterobacter species include strains that are plant growth promoters and occur either in the rhizosphere or as endophytes. Additionally, some strains can protect their hosts from pathogen attack and are regarded as promising biological control agents. Some strains also have potential for the bioremediation of various compounds.

GENOMIC FEATURES

Information on the pathogenicity and virulence mechanisms of plant-pathogenic Enterobacter species is limited. Comparison of diverse genomic features revealed no overall differences between plant-pathogenic and plant-beneficial strains.

CONCLUSION

While often reported as a plant pathogen, there is currently no evidence that Enterobacter is the primary cause of any of the reported diseases. In many cases, they would rather act opportunistically. This remains a significant concern, as a wide range of hosts are affected, and problems may intensify due to global warming. It is crucial to investigate these strains for plant pathogenicity and evaluate the risks to human health.

© 2026 The Author(s). Molecular Plant Pathology published by British Society for Plant Pathology and John Wiley & Sons Ltd.

Address: Environmental Genomics and Systems Biology Research Group, Institute of Natural Resource Sciences (IUNR), Zurich University of Applied Sciences ZHAW, Wädenswil, Switzerland.; School of Molecular and Cell Biology, University of the Witwatersrand, Johannesburg, South Africa.; Department of Biochemistry, Genetics and Microbiology, Centre for Microbial Ecology and Genomics/Forestry and Agricultural Biotechnology Institute, University of Pretoria, Pretoria, South Africa.
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