食品科学 ›› 2023, Vol. 44 ›› Issue (22): 173-182.doi: 10.7506/spkx1002-6630-20221111-126

• 生物工程 • 上一篇    下一篇

T-2毒素降解菌株的筛选、鉴定与降解机制分析

马妍, 孙长坡, 王峻, 杜稳, 刘虎军, 周文化, 赵一凡   

  1. (1.中南林业科技大学食品科学与工程学院,湖南 长沙 410004;2.国家粮食和物资储备局科学研究院,北京 100037)
  • 出版日期:2023-11-25 发布日期:2023-12-13
  • 基金资助:
    中央级公益性科研院所基本科研业务费专项(JY2209;ZX2236)

Screening, Identification and Action Mechanism of T-2 Toxin-Degrading Strains

MA Yan, SUN Changpo, WANG Jun, DU Wen, LIU Hujun, ZHOU Wenhua, ZHAO Yifan   

  1. (1. College of Food Science and Engineering, Central South University of Forestry and Technology, Changsha 410004, China; 2. Academy of National Food and Strategic Reserves Administration, Beijing 100037, China)
  • Online:2023-11-25 Published:2023-12-13

摘要: 为获得高效降解T-2毒素的微生物菌株并探究其降解机制,本研究以T-2毒素为底物从小麦样品中筛选降解微生物并进行鉴定,探究该菌株对T-2毒素的降解特性,利用超高效液相色谱-飞行时间质谱仪分析其代谢产物与降解机制。结果表明,从50 份小麦样品中筛选到2 株T-2毒素高效降解菌株AFJ-2和AFJ-3,通过形态学观察和16S rDNA序列分析,初步鉴定为短小杆菌属(Curtobacterium sp.)菌株和芽孢杆菌属(Bacillus sp.)菌株。菌株AFJ-2和AFJ-3分别能在7 h和12 h内将5 μg/mL T-2毒素完全降解,2 株菌的胞内酶均对T-2毒素具有显著降解效果(P<0.05),不存在吸附作用。菌株AFJ-2可将T-2毒素转化为HT-2毒素和T-2三醇,菌株AFJ-3降解T-2毒素产生新茄镰孢菌醇(neosolaniol,NEO),基于降解位点推测,2 株菌共同作用于T-2毒素可产生新的产物4-脱乙酰-NEO。研究结果丰富了生物降解T-2毒素的菌种资源库,为T-2毒素降解酶的分离纯化及功能基因的挖掘提供一定参考依据。

关键词: T-2毒素;筛选;鉴定;生物降解;代谢产物;降解机制

Abstract: The purpose of this study was to obtain microbial strains capable of high-efficiency degradation of T-2 toxin and to investigate their mechanism of action. T-2 toxin-degrading microorganisms were isolated from wheat and identified and their degradation characteristics were explored; their metabolites and mechanism of action were analyzed by ultra-high performance liquid chromatography-quadrupole time-of-flight mass spectrometry (UPLC-Q-TOF-MS). The results showed that two efficient T-2 toxin degrading strains, AFJ-2 and AFJ-3, were screened from 50 wheat samples and identified respectively as Curtobacterium sp. and Bacillus sp. by morphological observation and 16S rDNA sequence analysis. T-2 toxin at 5 μg/mL was completely degraded within 7 and 12 h by strains AFJ-2 and AFJ-3, respectively, and intracellular enzymes from them could significantly degrade T-2 toxin (P < 0.05) without adsorption. Strain AFJ-2 was able to convert T-2 toxin to HT-2 toxin and T-2 triol, while strain AFJ-3 could degrade T-2 toxin to produce neosolaniol (NEO). Based on the predicted degradation sites, it was hypothesized that the two strains could work together to degrade T-2 toxin to produce a new product, 4-deacetyl-NEO. The research results enrich the strain resource bank for the biodegradation of T-2 toxin, and provide a reference for the separation and purification of T-2 toxin-degrading enzymes and the excavation of functional genes.

Key words: T-2 toxin; screening; identification; biodegradation; metabolites; degradation mechanism

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