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Isolation and Characterization of Lactobacillus paracasei 85 and Lactobacillus buchneri 93 to Absorb and Biotransform Zearalenone

文献类型: 外文期刊

作者: Gan, Min 1 ; Hu, Jian 4 ; Wan, Kai 1 ; Liu, Xiangxiang 1 ; Chen, Peirong 1 ; Zeng, Rui 1 ; Wang, Fuhua 1 ; Zhao, Yarong 1 ;

作者机构: 1.Guangdong Acad Agr Sci, Inst Qual Stand Monitoring Technol Agroprod, Guangzhou 510640, Peoples R China

2.Guangdong Prov Key Lab Qual & Safety Risk Assessme, Guangzhou 510640, Peoples R China

3.Minist Agr & Rural Affairs, Key Lab Testing & Evaluat Agroprod Safety & Qual, Guangzhou 510640, Peoples R China

4.Tangshan Food & Drug Comprehens Testing Ctr, Tangshan 063000, Peoples R China

关键词: lactic acid bacteria; ZEN; absorption; biotransformation

期刊名称:TOXICS ( 影响因子:4.472; 五年影响因子:5.144 )

ISSN:

年卷期: 2022 年 10 卷 11 期

页码:

收录情况: SCI

摘要: As one of the most prevalent estrogenic mycotoxins in cereals and animal feed, zearalenone (ZEN) can cause serious reproductive disorders. ZEN control in food and feed commodities has been an imperative area of research. In this study, 87 lactic acid bacteria (LAB) were isolated from pickles and their ZEN (5 mg/L) removal abilities ranged from 0% to 68.4%. Then, five strains with potent ZEN removal ability (>50%) were identified: Lactobacillus plantarum 22, L. plantarum 37, L. plantarum 47, L. paracasei 85, and L. buchneri 93. Under optimization conditions (48 h, pH 4.0, 37 degrees C, and 5 mg/L), the highest ZEN removal abilities of L. paracasei 85 and L. buchneri 93 reached 77.7% and 72.8%, respectively. Moreover, the two lactic acid bacteria decreased the toxicity of ZEN, because the levels of beta-zearalenol (beta-ZOL) transformed from ZEN were more than two-fold higher than alpha-zearalenol (alpha-ZOL). Additionally, cell free supernatant and pellet biotransformation of ZEN to alpha-ZOL and beta-ZOL in LAB were detected for the first time. Furthermore, chemical and enzymatical treatments combined with Fourier-transform infrared spectroscopy analysis indicated that exopolysaccharides, proteins, and lipids on the cell wall could bond to ZEN through hydrophobic interactions. Scanning electron microscopy indicated that cell structure damage occurred during the ZEN clearance to L. buchneri 93, but it did not with L. paracasei 85. In addition, various organic acids, alcohols, and esters of the two LAB participated in ZEN removal. Hence, L. paracasei 85 and L. buchneri 93 can be considered as potential detoxification agents for ZEN removal for food and feedstuff.

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