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Analysis of Fusarium avenaceum Metabolites Produced during Wet Apple Core Rot

机译:苹果核心腐烂过程中产生的镰刀菌镰刀菌代谢产物分析

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Wet apple core rot (wACR) is a well-known disease of susceptible apple cultivars such as Gloster, Jona Gold, and Fuji. Investigations in apple orchards in Slovenia identified Fusarium avenaceum, a known producer of several mycotoxins, as the predominant causal agent of this disease. A LC-MS/ MS method was developed for the simultaneous detection of thirteen F. avenaceum metabolites including moniliformin, acuminatopyrone, chrysogine, chlamydosporol, antibiotic Y, 2-amino-14,16-dimethyloctadecan-3-ol (2-AOD-3-ol), aurofusarin, and enniatins A, A1, B, B1, B2, and B3 from artificially and naturally infected apples. Levels of moniliformin, antibiotic Y, aurofusarin, and enniatins A, A1, B, and B1 were quantitatively examined in artificially inoculated and naturally infected apples, whereas the remaining metabolites were qualitatively detected. Metabolite production was examined in artificially inoculated apples after 3, 7,14, and 21 days of incubation. Most metabolites were detected after 3 or 7 days and reached significantly high levels within 14 or 21 days. The highest levels of moniliformin, antibiotic Y, aurofusarin, and the combined sum of enniatins A, A1, B, and B1 were 7.3, 5.7,152, and 12.7μg g~(-1), respectively. Seventeen of twenty naturally infected apples with wACR symptoms contained one or more of the metabolites. Fourteen of these apples contained moniliformin, antibiotic Y, aurofusarin, and enniatins in levels up to 2.9, 51, 167, and 3.9 μg g~(-1), respectively. Acuminatopyrone, chrysogine, chlamydosporol, and 2-AOD-3-OI were detected in 4, 11,4, and 10 apples, respectively. During wet apple core rot, F. avenaceum produced high amounts of mycotoxins, which may pose a risk for consumers of apple or processed apple products.
机译:湿苹果核心腐烂(wACR)是易感苹果品种(如Gloster,Jona Gold和Fuji)的众所周知的疾病。斯洛文尼亚苹果园的调查表明,已知的几种霉菌毒素生产者亚洲镰刀菌(Fusarium avenaceum)是该病的主要诱因。开发了一种LC-MS / MS方法,用于同时检测13种西葫芦代谢产物,包括莫尼利福明,尖顶类吡喃酮,金霉素,chlamydosporol,抗生素Y,2-氨基-14,16-二甲基十八烷-3-醇(2-AOD-3 -ol),aurofusarin和Enniatins A,A1,B,B1,B2和B3来自人工感染和自然感染的苹果。在人工接种和自然感染的苹果中,定量检测了莫尼可福林,抗生素Y,金黄色葡萄球菌素和烯尿素A,A1,B和B1的水平,而定性地检测了其余代谢产物。孵育3、7、14和21天后,在人工接种的苹果中检查了代谢产物的产生。大多数代谢物在3或7天后被检测到,并在14或21天内达到显着高水平。莫尼菌素,抗生素Y,金脲丝素和烯尿素A,A1,B和B1的总和最高含量分别为7.3、5.7、152和12.7μgg〜(-1)。在有wACR症状的20个自然感染的苹果中,有17个含有一种或多种代谢产物。这些苹果中有十四个分别含有莫尼西菌素,抗生素Y,金黄色葡萄球菌素和烯睾肽,最高含量分别为2.9、51、167和3.9μgg〜(-1)。分别在4、11、4和10个苹果中检出了尖顶鬼臼酮,金葡菌素,衣藻蛋白和2-AOD-3-OI。在潮湿的苹果核心腐烂过程中,金黄色葡萄球菌会产生大量的霉菌毒素,这可能对苹果或加工过的苹果产品的消费者构成风险。

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