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Fusarium Secondary Metabolite Content in Naturally Produced and Artificially Provoked FHB Pressure in Winter Wheat (CROSBI ID 300243)

Prilog u časopisu | izvorni znanstveni rad | međunarodna recenzija

Šunić, Katarina ; Kovač, Tihomir ; Lončarić, Ante ; Babić, Jurislav ; Sulyok, Michael ; Krska, Rudolf ; Drezner, Georg ; Španić, Valentina Fusarium Secondary Metabolite Content in Naturally Produced and Artificially Provoked FHB Pressure in Winter Wheat // Agronomy, 11 (2021), 2239, 19. doi: 10.3390/agronomy11112239

Podaci o odgovornosti

Šunić, Katarina ; Kovač, Tihomir ; Lončarić, Ante ; Babić, Jurislav ; Sulyok, Michael ; Krska, Rudolf ; Drezner, Georg ; Španić, Valentina

engleski

Fusarium Secondary Metabolite Content in Naturally Produced and Artificially Provoked FHB Pressure in Winter Wheat

Fusarium head blight (FHB) is an important disease of wheat and production of mycotoxins makes it a major threat in most wheat-producing areas worldwide. This study aimed to identify the impact of epidemic FHB conditions (usage of artificial Fusarium inoculation) on mycotoxin levels in unprocessed wheat. Fusarium levels were monitored at two locations in two treatments (natural infection and inoculation with Fusarium graminearum and F. culmorum) where 13 mycotoxins were evaluated by LC/MS-MS in six winter wheat varieties. Due to favorable conditions for infection with Fusarium fungi during the flowering period at location Tovarnik, wheat varieties had higher disease severity and increased mycotoxin accumulation, compared to Osijek. The most abundant mycotoxins in treatment with inoculation with Fusarium fungi were deoxynivalenol (DON), culmorin (CUL) and hydroxyculmorins. In treatment with natural infection, DON did not exceed maximum limits set by EU. Varieties with lower initial resistance accumulated DON even in naturally infected samples at Tovarnik. These results highlighted the impact of environment variation in the production of Fusarium mycotoxins where FHB initial resistance had a higher impact on the accumulation of mycotoxins than general resistance. Furthermore, wheat samples with higher DON concentration also contained elevated levels of CUL and hydroxyculmorins, showing that CUL can have a possible role in Fusarium virulence. The FHB evaluations provide important information about the genetic resistance of wheat varieties, as well as risk assessment considering mycotoxin accumulation in epidemic conditions.

Fusarium culmorum ; Fusarium graminearum ; mycotoxins ; wheat ; LC/MS-MS

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Podaci o izdanju

11

2021.

2239

19

objavljeno

2073-4395

10.3390/agronomy11112239

Trošak objave rada u otvorenom pristupu

Povezanost rada

Biologija, Poljoprivreda (agronomija)

Poveznice