Fluopyram Sensitivity and Functional Characterization of SdhB in the Fusarium solani Species Complex Causing Soybean

Hyunkyu Sang1, Alexander Witte1, Janette L Jacobs1

  • 1Department of Plant, Soil and Microbial Sciences, Michigan State University, East Lansing, MI, United States.

Frontiers in Microbiology
|October 18, 2018
PubMed

Insights

Succinate dehydrogenase inhibitor (SDHI) fungicide fluopyram effectively manages sudden death syndrome (SDS) in soybeans. A specific genetic difference in *Fusarium tucumaniae* enhances fluopyram

Area of Science:

  • Plant Pathology
  • Fungal Genetics
  • Agricultural Science

Background:

  • Sudden death syndrome (SDS) in soybeans is primarily caused by *Fusarium virguliforme*.
  • Emerging SDS-causing agents include *Fusarium tucumaniae* and *Fusarium brasiliense*.
  • Succinate dehydrogenase inhibitor (SDHI) fungicides, like fluopyram, are used for soybean seed treatment.

Purpose of the Study:

  • To assess the in vitro sensitivity of *F. tucumaniae*, *F. brasiliense*, and *F. virguliforme* to fluopyram.
  • To investigate the genetic basis for differential sensitivity to fluopyram among these *Fusarium* species.
  • To evaluate the efficacy of fluopyram seed treatment against SDS caused by different *Fusarium* species.

Main Methods:

  • In vitro sensitivity testing of *Fusarium* species to fluopyram.
  • Sequence analysis of Succinate Dehydrogenase (Sdh) genes in *Fusarium* strains.
  • Genetic transformation of *F. virguliforme* to introduce a specific SdhB gene mutation.

Main Results:

  • *F. tucumaniae* exhibited significantly higher sensitivity to fluopyram (mean EC50 = 0.25 μg ml⁻¹) compared to *F. brasiliense* (1.96 μg ml⁻¹) and *F. virguliforme* (2.21 μg ml⁻¹).
  • A glycine to arginine substitution at codon 277 in the SdhB gene of *F. tucumaniae* was identified as a key difference.
  • The G277R mutation in *F. virguliforme* increased sensitivity to fluopyram and boscalid, and reduced SDS and root rot severity in soybean seedlings.

Conclusions:

  • The amino acid difference (G277R) in SdhB of *F. tucumaniae* contributes to its high sensitivity to fluopyram.
  • Fluopyram is efficacious as a seed treatment for managing SDS caused by *F. tucumaniae*, a prevalent species in South America.
  • Establishing baseline sensitivity data is crucial for developing effective management strategies against *Fusarium* diseases in soybean and other crops.

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