Fumonisin production and symptom development in onion (Allium cepa) inoculated with Fusarium proliferatum.

IF 3.1 4区 医学 Q2 MYCOLOGY
Mycotoxin Research Pub Date : 2025-08-01 Epub Date: 2025-06-14 DOI:10.1007/s12550-025-00595-0
Sari Rämö, Sadikshya Ghimire, Minna Haapalainen, Satu Latvala
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Abstract

Fusarium proliferatum is one of the main pathogens causing Fusarium basal rot of onion, which is a major problem in onion cultivation worldwide. In this work, three Fusarium proliferatum isolates from onion (Allium cepa), two from imported sets and one from a mature bulb grown in Finland, were tested for pathogenicity and mycotoxin production. Symptom development in the inoculated onion bulbs and production of fumonisins, beauvericin, and moniliformin were measured at 1-5 weeks post-inoculation (wpi). Symptoms were observed in all the bulbs inoculated with F. proliferatum, starting as water-soaked lesions and developing into dead brown scales. When colonizing the bulbs, all three F. proliferatum isolates were confirmed by qPCR to express the genes FUM1, required for fumonisin production, and SIX2, encoding a putative virulence factor. Fumonisin B1 (FB1) was detected already at 2 wpi in a symptomatic onion inoculated with Fpr047, and at 3 wpi, fumonisin production was confirmed for all three isolates. At 4 wpi, all the isolates had produced quantifiable amounts of FB1, ranging from 3.9 to 177 µg/kg, and fumonisin B2, ranging from 3.4 to 89 µg/kg. At 5 wpi, FB1 was even detected in a symptomless sample. Beauvericin and moniliformin were quantified at 5 wpi in the symptomatic onion tissues with Fpr047 and Fpr049, but not with FUS16163, which was unable to produce moniliformin and produced less beauvericin than the other F. proliferatum isolates also in the rice culture. The results showed that onions infected with F. proliferatum can contain high amounts of fumonisins.

洋葱(Allium cepa)接种增殖镰刀菌后伏马菌素的产生及症状发展。
增殖镰刀菌是引起洋葱基腐病的主要病原菌之一,是世界洋葱栽培中的一大难题。在这项工作中,对从洋葱(Allium cepa)中分离的三株增殖镰刀菌进行了致病性和霉菌毒素产生测试,其中两株来自进口洋葱,另一株来自芬兰种植的成熟洋葱。接种后1-5周测量接种洋葱鳞茎的症状发展和伏马菌素、beauvericin和monilformin的产生。所有鳞茎接种增繁镰刀菌后均出现症状,开始时为浸水病变,然后发展为死亡的棕色鳞片。当定植在鳞茎上时,qPCR证实了所有三个增殖假体分离株都表达了富马菌素产生所需的基因FUM1和编码推定毒力因子的基因SIX2。在接种fpro047的有症状洋葱中,在2 wpi时已检测到福马菌素B1 (FB1),在3 wpi时,确认所有三株菌株都产生福马菌素。在4 wpi时,所有分离株都产生了可量化的FB1和伏马菌素B2,分别为3.9 ~ 177µg/kg和3.4 ~ 89µg/kg。在5 wpi时,甚至在无症状的样本中检测到FB1。Fpr047和Fpr049在有症状的洋葱组织中测定了5 wpi时的Beauvericin和moniliformin,而FUS16163则没有,FUS16163不能产生moniliformin,而且在水稻培养中产生的Beauvericin比其他增殖性芽孢杆菌分离株少。结果表明,洋葱感染增殖性f菌后,可产生大量伏马菌素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Mycotoxin Research
Mycotoxin Research MYCOLOGYTOXICOLOGY-TOXICOLOGY
CiteScore
6.40
自引率
6.70%
发文量
29
期刊介绍: Mycotoxin Research, the official publication of the Society for Mycotoxin Research, is a peer-reviewed, scientific journal dealing with all aspects related to toxic fungal metabolites. The journal publishes original research articles and reviews in all areas dealing with mycotoxins. As an interdisciplinary platform, Mycotoxin Research welcomes submission of scientific contributions in the following research fields: - Ecology and genetics of mycotoxin formation - Mode of action of mycotoxins, metabolism and toxicology - Agricultural production and mycotoxins - Human and animal health aspects, including exposure studies and risk assessment - Food and feed safety, including occurrence, prevention, regulatory aspects, and control of mycotoxins - Environmental safety and technology-related aspects of mycotoxins - Chemistry, synthesis and analysis.
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