首页> 外文期刊>International Journal of Food Microbiology >Potential effects of environmental conditions on the efficiency of the antifungal tebuconazole controlling Fusarium verticillioides and Fusarium proliferatum growth rate and fumonisin biosynthesis.
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Potential effects of environmental conditions on the efficiency of the antifungal tebuconazole controlling Fusarium verticillioides and Fusarium proliferatum growth rate and fumonisin biosynthesis.

机译:环境条件对抗真菌性戊唑醇控制镰刀菌(Fusarium v​​erticillioides),枯萎病菌(Fusarium proliferatum)生长速率和伏马菌素生物合成效率的潜在影响。

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摘要

Fusarium verticillioides and Fusarium proliferatum are important phytopathogens which contaminate cereals in the Mediterranean climatic region with fumonisins. In this study we examined the interaction between the fungicide efficacy of tebuconazole and water potential ( Psi w) (-0.7-7.0 MPa) x temperature (20-35 degrees C) on growth and FUM1 gene expression by real time RT-PCR (an indicator of fumonisin biosynthesis) in strains of both Fusarium species. Concentrations of tebuconazole required to reduce growth by 50 and 90% (ED50 and ED90 values) were determined. Growth of strains of both species was largely reduced by tebuconazole, with similar efficacy profiles in the interacting water potential x temperature conditions. In contrast, FUM1 expression was not generally reduced by tebuconazole. Moreover, sub-lethal doses in combination with mild water stress and temperatures less than 35 degrees C significantly induced FUM1 expression with slight differences in both species. These results suggest that the efficacy of antifungal compounds to reduce mycotoxin risk would be more effective if consideration is given to both growth rate and toxin biosynthesis in relation to interacting environmental conditions. This is the first study linking fungicide efficacy of tebuconazole with environmental factor effects on control of growth and FUM1 gene expression of F. verticillioides and F. proliferatum.
机译:枯萎病镰刀菌和枯萎病镰刀菌是重要的植物病原体,它们用伏马菌素污染了地中海气候区的谷物。在这项研究中,我们研究了戊唑醇的杀菌剂效力与水势(Psi w )(-0.7-7.0 MPa)x温度(20-35摄氏度)对生长和FUM1基因表达之间的相互作用。两个镰刀菌属菌株的实时RT-PCR(伏马菌素生物合成指标)。确定了将生长减慢50%和90%所需的戊唑醇浓度(ED 50 和ED 90 值)。在相互作用的水势x温度条件下,戊唑醇使两种菌株的生长都大大降低,功效相似。相反,戊唑醇通常不会降低FUM1表达。此外,亚致死剂量与温和的水分胁迫和低于35摄氏度的温度相结合,可显着诱导FUM1表达,两种物种之间均存在细微差异。这些结果表明,如果考虑与相互作用的环境条件相关的生长速率和毒素生物合成,则抗真菌化合物降低霉菌毒素风险的功效将更为有效。这是第一个将戊唑醇的杀菌效力与环境因素对网状拟南芥和拟南芥生长和FUM1基因表达的控制联系起来的研究。

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