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交链孢菌(54028NRRL)、微小根毛霉变种根状变种(54029NRRL)和米曲霉(5509NRRL)对脱氧雪腐镰刀菌烯醇的结合。

Conjugation of deoxynivalenol by Alternaria alternata (54028 NRRL), Rhizopus microsporus var. rhizopodiformis (54029 NRRL) and Aspergillus oryzae (5509 NRRL).

机构信息

Department of Animal and Poultry Science, University of Guelph, 50 Stone Rd. E, Guelph, ON, N1G 2W1, Canada.

出版信息

Mycotoxin Res. 2014 Feb;30(1):47-53. doi: 10.1007/s12550-013-0184-9. Epub 2013 Nov 22.

Abstract

Deoxynivalenol (DON, vomitoxin) is a trichothecene mycotoxin which can be considered to be an indicator of Fusarium mycotoxin contamination in grain, feed and food. Recent studies have described the presence of glucose conjugated DON, which is a product of plant metabolism, but there is a lack of information available on DON conjugation by fungi. The aim of the current study was, therefore, to investigate the ability of fungi to metabolize DON into hydrolysable conjugated DON. Alternaria alternata (54028 NRRL) and Rhizopus microsporus var. rhizopodiformis (54029 NRRL) were found to be capable of metabolizing DON into hydrolysable conjugated DON. This ranged from 13-23 % conjugation of DON in potato dextrose agar media and from 11-36 % in corn-based media. There was, however, considerable variation between fungal strains in the ability to conjugate DON as only a slight increase in hydrolysable conjugated DON (1-6 %) was observed when incubating with A. oryzae (5509 NRRL). A. oryzae (5509 NRRL) was also shown to degrade DON (up to 92 %) over 21 days of incubation on corn-based media. The current study shows that conjugation of DON can be achieved through fungal metabolism in addition to being a product of plant metabolism.

摘要

脱氧雪腐镰刀菌烯醇(DON,呕吐毒素)是一种单端孢霉烯族毒素,可被视为谷物、饲料和食品中镰刀菌毒素污染的指标。最近的研究描述了葡萄糖结合 DON 的存在,这是植物代谢的产物,但关于真菌对 DON 的结合作用,信息还很缺乏。因此,本研究的目的是调查真菌将 DON 代谢为可水解共轭 DON 的能力。发现交替单胞菌(54028 NRRL)和微小根毛霉变种根毛霉(54029 NRRL)能够将 DON 代谢为可水解共轭 DON。在马铃薯葡萄糖琼脂培养基中,DON 的共轭率为 13-23%,在玉米基培养基中,DON 的共轭率为 11-36%。然而,真菌菌株之间的 DON 结合能力存在很大差异,因为与米根霉(5509 NRRL)孵育时,仅观察到可水解共轭 DON 略有增加(1-6%)。米根霉(5509 NRRL)在玉米基培养基上孵育 21 天也能降解 DON(高达 92%)。本研究表明,除了是植物代谢的产物外,DON 的结合作用也可以通过真菌代谢来实现。

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