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首页> 外文期刊>Italian Journal of Agronomy >Impact of sowing time, hybrid and environmental conditions on the contamination of maize by emerging mycotoxins and fungal metabolites
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Impact of sowing time, hybrid and environmental conditions on the contamination of maize by emerging mycotoxins and fungal metabolites

机译:播种时间,杂交和环境条件对新出现的霉菌毒素和真菌代谢物污染玉米的影响

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Mycotoxins and other fungal metabolites represent the most insidious safety risks to cereal food and the feed chain. Optimising agronomic practices is one of the main strategies adopted to minimise the contents of these undesirable substances in grain-based commodities. The aim of this study was to investigate the effect of the combination of sowing times and hybrids on the occurrence of emerging mycotoxins and fungal metabolites in maize. Field experiments were carried out in 2 sowing times (early vs late) and 3 maize hybrids were compared in the 2014 and 2015 growing seasons. Overall, 37 fungal metabolites produced by Fusarium and Alternaria species were detected. Apart from fumonisins type B (FBs), other metabolites produced by Fusarium verticillioides and F. proliferatum, such as fumonisins type A, fusaric acid, bikaverin and fusaproliferin, were also detected in all of the samples. Fusarin C was found in 61% of the samples. Deoxynivalenol DON), deoxynivalenol-3-glucoside, culmorin and zearalenone, all of which are produced prevalently by Fusarium graminearum and F. culmorum, were found in all the samples. Their contents were clearly affected by the meteorological trend: the highest contamination was detected in the 2014 growing season, which was characterised by abundant rainfall and lower temperatures from flowering to maize ripening. Among the mycotoxins produced by other Fusarium species, aurofusarin was found to clearly be associated with DON, while moniliformin and beauvericin followed the same behaviour as the FBs.
机译:霉菌毒素和其他真菌代谢物代表谷物食品和饲料链最为阴险的安全风险。优化农艺实践是通过最大限度地减少基于谷物商品中这些不良物质的内容的主要策略之一。本研究的目的是探讨播种时间和杂种组合对玉米新出现的霉菌毒素和真菌代谢物的影响。在播种时间(早期vs晚期)进行现场实验,并在2014年和2015年增长的季节比较了3种玉米杂种。总体而言,检测到由镰刀菌和交替物种产生的37种真菌代谢物。除了B型(FBS)之外,还在所有样品中检测到由富硅酸纤维氧化物和F.S,例如Fumonisins型A,镰刀酸,Bikaverin和Fusaproliferin生产的其他代谢物。镰刀蛋白C在61%的样品中发现。脱氧诺苯酚唐),脱氧萘酚-3-葡糖苷,Culmorin和Zearalenone,所有这些都在所有样品中都发现了Fusarium Graminearum和F.Culmorum的普遍存存。他们的内容显然受到气象趋势的影响:2014年生长季节中检测到最高的污染,其特征在于,从开花到玉米成熟时的温度较高,温度下降。在其他镰刀菌种产生的霉菌毒素中,发现Aurofusarin与Don明确相关,而Monilificin和Beauvericin之后是与FBS相同的行为。

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