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More than 400 million years of evolution and some plants still can't make it on their own: plant stress tolerance via fungal symbiosis

Journal of Experimental Botany · 2008 · Vol. 59(5) · pp. 1109–1114
R. RodriguezRegina S. Redman

Abstract

All plants in natural ecosystems are thought to be symbiotic with mycorrhizal and/or endophytic fungi. Collectively, these fungi express different symbiotic lifestyles ranging from parasitism to mutualism. Analysis of Colletotrichum species indicates that individual isolates can express either parasitic or mutualistic lifestyles depending on the host genotype colonized. The endophyte colonization pattern and lifestyle expression indicate that plants can be discerned as either disease, non-disease, or non-hosts. Fitness benefits conferred by fungi expressing mutualistic lifestyles include biotic and abiotic stress tolerance, growth enhancement, and increased reproductive success. Analysis of plant-endophyte associations in high stress habitats revealed that at least some fungal endophytes confer habitat-specific stress tolerance to host plants. Without the habitat-adapted fungal endophytes, the plants are unable to survive in their native habitats. Moreover, the endophytes have a broad host range encompassing both monocots and eudicots, and confer habitat-specific stress tolerance to both plant groups.

MeSH terms

Biological EvolutionFungiPlant DiseasesSoil MicrobiologySymbiosisPlant RootsPlant Physiological PhenomenaColletotrichumHost-Pathogen Interactions

Funding

  • National Science Foundation
  • U.S. Geological Survey
Citations
676
FWCI
41.78
field-weighted impact
References
41
Percentile
100%
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Citations per year
References
Stress tolerance in plants via habitat-adapted symbiosis
The ISME Journal · 2008 · 1,164 citations
Adaptations to Environmental Stresses.
The Plant Cell · 1995 · 1,611 citations
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