首页> 外文期刊>Journal of applied microbiology >Cocultivation of phytopathogenic Fusarium and Alternaria strains affects fungal growth and mycotoxin production.
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Cocultivation of phytopathogenic Fusarium and Alternaria strains affects fungal growth and mycotoxin production.

机译:致病性镰刀菌和链格孢菌的共培养会影响真菌的生长和霉菌毒素的产生。

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Aims. A laboratory study was conducted to evaluate the influence of cocultivation of toxigenic Fusarium (F.) and Alternaria (A.) fungi with respect to growth and mycotoxin production. Methods and Results. Fusarium culmorum Fc13, Fusarium graminearum Fg23 and two Alternaria tenuissima isolates (At18 and At220) were simultaneously or consecutively co-incubated on wheat kernels in an in vitro test system. Fungal biomass was quantified by determining ergosterol content. Three Fusarium toxins (DON, NIV and ZON) and three Alternaria toxins (AOH, AME and ALT) were analysed by a newly developed HPLC/MS/MS method. In simultaneous cocultures, the fungal biomass was enhanced up to 460% compared with individual cultures; Alternaria toxins were considerably depressed down to <5%. Combining At18 and At220 with Fg23 inhibited the toxin production of both fungal partners. In contrast, Fc13 increased its DON and ZON production in competitive interaction with both A. strains. Conclusions. The interfungal competitive effects aid the understanding of the processes of competition of both fungi in natural environments and the involvement of mycotoxins as antifungal factors. Significance and Impact of Study. Cocultivation significantly affects fungal growth and mycotoxin production of phytopathogenic Alternaria and Fusarium strains. The impact of mycotoxins on the interfungal competition is highlighted
机译:目的进行了一项实验室研究,以评估产毒镰刀菌(F.)和链霉菌(Alternaria(A.))真菌共培养对生长和霉菌毒素产生的影响。方法和结果。在体外测试系统中,将小麦镰刀菌Fc13,禾谷镰刀菌Fg23和两个链格孢菌(Alternaria tenuissima)分离株(At18和At220)同时或连续共孵育。通过确定麦角固醇含量来定量真菌生物量。通过新开发的HPLC / MS / MS方法分析了三种镰刀菌毒素(DON,NIV和ZON)和三种链格孢菌毒素(AOH,AME和ALT)。在同时进行的共培养中,与单个培养相比,真菌生物量提高了460%。交链孢菌毒素被大大抑制至<5%。 At18和At220与Fg23的结合会抑制两种真菌伴侣的毒素产生。相反,Fc13通过与两种曲霉菌株的竞争性相互作用而增加了其DON和ZON的产生。结论。真菌间的竞争作用有助于理解真菌在自然环境中的竞争过程以及霉菌毒素作为抗真菌因子的参与。研究的意义和影响。共培养显着影响植物致病性链格孢和镰刀菌菌株的真菌生长和真菌毒素的产生。强调了霉菌毒素对真菌间竞争的影响

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