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首页> 外文期刊>Food Technology and Biotechnology >Using spores for Fusarium spp. classification by MALDI-based intact cell/spore mass spectrometry. (Special Issue: Use of proteomics and metabolomics in food technology and biotechnology.)
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Using spores for Fusarium spp. classification by MALDI-based intact cell/spore mass spectrometry. (Special Issue: Use of proteomics and metabolomics in food technology and biotechnology.)

机译:将孢子用于镰刀菌属。基于MALDI的完整细胞/孢子质谱法进行分类。 (特刊:蛋白质组学和代谢组学在食品技术和生物技术中的使用。)

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摘要

Fusarium is a widespread genus of filamentous fungi and a member of the soil microbial community. Certain subspecies are health threatening because of their mycotoxin production that affects the human and animal food chain. Thus, for early and effective pest control, species identification is of particular interest; however, differentiation on the subspecies level is challenging and time-consuming for this fungus. In the present study, we show the possibilities of intact cell mass spectrometry for spore analysis of 22 different Fusarium strains belonging to six Fusarium subspecies. We found that species differentiation is possible if mass spectrometric analyses are performed under well-defined conditions with fixed parameters. A critical point for analysis is a proper sample preparation of spores, which increases the quality of mass spectra with respect to signal intensity and m/z value variations. It was concluded that data acquistion has to be performed automatically; otherwise, user-specific variations are introduced generating data which cannot fit the existing datasets. Data that show clearly that matrix-assisted laser desorption ionization-based intact cell/intact spore mass spectrometry (IC/ISMS) can be applied to differentiate closely related Fusarium spp. are presented. Results show a potential to build a database on Fusarium species for accurate species identification, for fast response in the case of infections in the cornfield. We furthermore demonstrate the high precision of our approach in classification of intact Fusarium species according to the location of their collection.
机译:镰刀菌是丝状真菌的广泛属,并且是土壤微生物群落的成员。某些亚种的霉菌毒素生产会影响人类和动物食物链,因此对健康构成威胁。因此,对于早期和有效的虫害控制而言,物种识别尤为重要。然而,对于这种真菌而言,在亚种水平上进行区分是具有挑战性和耗时的。在本研究中,我们展示了完整细胞质谱法对属于六个镰刀菌亚种的22种不同镰刀菌菌株进行孢子分析的可能性。我们发现,如果在定义明确的条件下使用固定参数进行质谱分析,则可能会发生物种分化。分析的关键点是适当制备孢子,这会提高信号强度和m / z值变化方面的质谱质量。得出的结论是,必须自动执行数据采集。否则,将引入特定于用户的变体以生成无法适合现有数据集的数据。数据清楚表明,基于基质辅助激光解吸电离的完整细胞/完整孢子质谱(IC / ISMS)可用于区分紧密相关的镰刀菌属。被提出。结果显示了建立镰刀菌属物种数据库的潜力,该数据库可用于准确鉴定物种,并在玉米田发生感染时快速做出反应。我们进一步展示了我们根据完整镰刀菌种的收集地点对它们进行分类的方法的高精度。

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