肯尼亚家庭玉米粒中产毒曲霉和镰刀菌的发病率

IF 1.7 4区 医学 Q3 FOOD SCIENCE & TECHNOLOGY World Mycotoxin Journal Pub Date : 2022-04-04 DOI:10.3920/wmj2021.2748
V. Kagot, M. de Boevre, S. de Saeger, A. Moretti, M. Mwamuye, S. Okoth
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引用次数: 0

摘要

曲霉属和镰刀菌属是真菌属,包括产毒和致病物种,能够覆盖农民的作物,并分泌一系列小分子量的次级代谢产物,摄入后会对人类和动物造成健康并发症。在撒哈拉以南非洲,这些真菌的污染和持久性因热带气候条件而增加,而热带气候条件是真菌生长的理想条件。本研究评估了肯尼亚东部、西部、沿海和维多利亚湖农业生态区玉米粒中曲霉菌和镰刀菌的发病率、区域分布和产毒潜力。从每个农业生态区的16户人家中采集玉米粒。采用单孢子技术分离形态鉴定的曲霉菌和镰刀菌的纯培养物。此外,使用曲霉菌核糖体DNA的内部转录间隔区1(ITS1)区域和镰刀菌的翻译延伸因子-1α(TEF-1α)进行分子分析。基于曲霉中黄曲霉毒素调控基因aflaR和镰刀菌中伏马菌素骨架结构基因FUM1,通过聚合酶链式反应(PCR)探讨了分离的真菌产生真菌毒素的潜力。在分离出的可能产生黄曲霉毒素的物种中,55%来自东部,27%来自沿海地区,13%来自维多利亚湖地区,5%来自肯尼亚西部。在分离出的可能产生伏马菌素的轮叶镰刀菌中,45%来自维多利亚湖农业生态区,30%来自西部,15%来自肯尼亚东部,10%来自沿海农业生态区。这项研究增加了肯尼亚潜在真菌毒素热点的数据,有助于采用有针对性的区域真菌毒素缓解策略,努力避免肯尼亚未来爆发真菌毒素。
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Incidence of toxigenic Aspergillus and Fusarium species occurring in maize kernels from Kenyan households
Aspergillus and Fusarium are fungal genera that include toxigenic and pathogenic species, able to suffuse farmers’ crops and secrete an array of small molecular weight secondary metabolites which can cause health complications to humans and animals when ingested. In sub-Sahara Africa, contamination and persistence of these fungi is increased by the tropical climatic conditions which are ideal for the fungi to thrive. This study evaluated the incidence, regional distribution and toxigenic potential of Aspergillus and Fusarium species occurring in maize kernels from Eastern, Western, Coastal and the Lake Victoria agro-ecological zones of Kenya. Maize kernels were collected from 16 households in each agro-ecological zone. Single spore technique was used to isolate pure cultures of Aspergillus and Fusarium which were identified morphologically. Further, molecular analysis was done using the internal transcribed spacer 1 (ITS 1) region of the ribosomal DNA for Aspergillus and the translation elongation factor-1 alpha (TEF-1α) for Fusarium. The potential of the isolated fungi to produce mycotoxins was probed by polymerase chain reaction (PCR) based on the aflatoxin regulatory aflaR gene in Aspergillus, and the fumonisin backbone structure gene FUM1 in Fusarium. Among the potentially aflatoxigenic A. flavus species isolated, 55% were from Eastern, 27% from the Coastal zone, 13% from Lake Victoria zone and 5% from Western Kenya. Among the potentially fumonisin producing F. verticillioides isolated, 45% were from the Lake Victoria agro-ecological zone, 30% were from Western, 15% from Eastern Kenya and 10% from the Coastal agro-ecological zone. This study adds data on potential mycotoxin hotspots in Kenya useful in employing targeted and regional mycotoxin mitigation strategies in efforts to avert future mycotoxicoses outbreaks in Kenya.
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来源期刊
CiteScore
4.60
自引率
5.00%
发文量
25
审稿时长
>12 weeks
期刊介绍: ''World Mycotoxin Journal'' is a peer-reviewed scientific journal with only one specific area of focus: the promotion of the science of mycotoxins. The journal contains original research papers and critical reviews in all areas dealing with mycotoxins, together with opinions, a calendar of forthcoming mycotoxin-related events and book reviews. The journal takes a multidisciplinary approach, and it focuses on a broad spectrum of issues, including toxicology, risk assessment, worldwide occurrence, modelling and prediction of toxin formation, genomics, molecular biology for control of mycotoxigenic fungi, pre-and post-harvest prevention and control, sampling, analytical methodology and quality assurance, food technology, economics and regulatory issues. ''World Mycotoxin Journal'' is intended to serve the needs of researchers and professionals from the scientific community and industry, as well as of policy makers and regulators.
期刊最新文献
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