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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.
Abstract:
The succinate dehydrogenase inhibitor (SDHI) fungicide, fluopyram, is used as a soybean seed treatment to manage Fusarium virguliforme, the casual agent of sudden death syndrome (SDS). More recently, other species within clade 2 of the Fusarium solani species, F. tucumaniae in South America and F. brasiliense in America and Africa, have been recognized as additional agents capable of causing SDS. To determine if fluopyram could be used for management of SDS caused by these species, in vitro sensitivity tests of the three Fusarium species to fluopyram were conducted. The mean EC50 values of F. brasiliense and F. virguliforme strains to fluopyram were 1.96 and 2.21 μg ml-1, respectively, but interestingly F. tucumaniae strains were highly sensitive (mean EC50 = 0.25 μg ml-1) to fluopyram compared to strains of the other two species. A sequence analysis of Sdh genes of Fusarium strains revealed that the F. tucumaniae strains contain an arginine at codon 277 in the SdhB gene instead of a glycine as in other Fusarium species. Replacement of glycine to arginine in SdhB-277 in a F. virguliforme wild-type strain Mont-1 through genetic transformation resulted in increased sensitivity to two SDHI fungicides, fluopyram and boscalid. Similar to a F. tucumaniae strain, the Mont-1 (SdhBG277R) mutant caused less SDS and root rot disease than Mont-1 on soybean seedlings with the fluopyram seed treatment. Our study suggests the amino acid difference in the SdhB in F. tucumaniae results in fluopyram being efficacious if used as a seed treatment for management of F. tucumaniae, which is the most abundant SDS causing species in South America. The establishment of baseline sensitivity of Fusarium species to fluopyram will contribute to effective strategies for managing Fusarium diseases in soybean and other pathosystems such as dry bean.
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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