Abstract

Pathogenic fungi have diverse growth lifestyles that support fungal colonization on plants. Successful colonization and infection for all lifestyles depends upon the ability to modify living host plants to sequester the necessary nutrients required for growth and reproduction. Secretion of virulence determinants referred to as “effectors” is assumed to be the key governing factor that determines host infection and colonization. Effector proteins are capable of suppressing plant defense responses and alter plant physiology to accommodate fungal invaders. This review focuses on effector molecules of biotrophic and hemibiotrophic plant pathogenic fungi, and the mechanism required for the release and uptake of effector molecules by the fungi and plant cells, respectively. We also place emphasis on the discovery of effectors, difficulties associated with predicting the effector repertoire, and fungal genomic features that have helped promote effector diversity leading to fungal evolution. We discuss the role of specific effectors found in biotrophic and hemibiotrophic fungi and examine how CRISPR/Cas9 technology may provide a new avenue for accelerating our ability in the discovery of fungal effector function.

Highlights

  • Frontiers in MicrobiologyPathogenic fungi have diverse growth lifestyles that support fungal colonization on plants

  • Fungal plant pathogens are economically important due to the threat they pose to the production and yield of agricultural crops

  • In this review we focus on effector molecules of biotrophic and hemibiotrophic fungi, taking a close look at the mechanisms involved in release and uptake of effector molecules by the fungi and plant cells, respectively

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Summary

Frontiers in Microbiology

Pathogenic fungi have diverse growth lifestyles that support fungal colonization on plants. Successful colonization and infection for all lifestyles depends upon the ability to modify living host plants to sequester the necessary nutrients required for growth and reproduction. Secretion of virulence determinants referred to as “effectors” is assumed to be the key governing factor that determines host infection and colonization. This review focuses on effector molecules of biotrophic and hemibiotrophic plant pathogenic fungi, and the mechanism required for the release and uptake of effector molecules by the fungi and plant cells, respectively. We discuss the role of specific effectors found in biotrophic and hemibiotrophic fungi and examine how CRISPR/Cas technology may provide a new avenue for accelerating our ability in the discovery of fungal effector function

INTRODUCTION
FUNGAL PATHOGENS
Not reported Not reported Not reported
Unknown Unknown Unknown Unknown Unknown
Induced during early infection Induced during infection
Likely cytoplasm Cytoplasm
Not reported Not reported
Cytoplasm motif
Suppresses plant cell death
TARGETING OF EFFECTORS TO HOST
EFFECTOR CANDIDATES
CHANGES IN EFFECTORS
EFFECTORS IN BIOTROPHS AND
Effectors Identified in Biotrophs
Effectors Identified in Hemibiotrophs
EFFECTOR FUNCTION
Findings
FUTURE CHALLENGES
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