数字农科院2.0

Inhibition of Aspergillus flavus growth and aflatoxin B-1 production by natamycin

文献类型: 外文期刊

作者: Chang, P.;Tai, B.;Zheng, M.;Yang, Q.;Xing, F.

作者机构:

关键词: Aspergillus flavus;aflatoxin;natamycin;RNA-seq;SEM;HPLC

期刊名称: WORLD MYCOTOXIN JOURNAL

ISSN: 1875-0710

年卷期: 2022 年 15 卷 3 期

页码:

收录情况: SCIE(2022版)

摘要: Aspergillus flavus causes huge crop losses, reduces crop quality and has adverse effects on human and animal health. A large amount of food contaminated with aflatoxin can greatly increase the risk of liver cancer. Therefore, prevention and control of aflatoxin production have aroused attention of research in various countries. Natamycin extracted from Streptomyces spp. has been widely used in production practice due to its good specificity and safety. Here, we found that natamycin could significantly inhibit fungal growth, conidia germination, ergosterol and AFB 1 production by A.flavus in a dose-dependent manner. Scanning electron microscope analysis indicated that the number of conidia was decreased, the outer wall of conidia was destroyed, and the mycelia were shrivelled and tangled by natamycin. RNA-Seq data indicated that natamycin inhibited fungal growth and conidia development of A. flavus by significantly down-regulating some genes involved in ergosterol biosynthesis, such as Erg13, HMG1 and HMG2. It inhibited conidia germination by significantly down-regulating some genes related to conidia development, such as FluG and VosA. After natamycin exposure, the decreased ratio of aflS/aflR caused by the down-regulation of all the structural genes, which subsequently resulted in the suppression of AFB(1) production. In conclusion, this study served to reveal the inhibitory mechanisms of natamycin on fungal growth and AFB(1) biosynthesis in A. flavus and to provide solid evidence for its application in controlling AFB(1) contamination.

分类号:

  • 相关文献

[1]Ethylene inhibited aflatoxin biosynthesis is due to oxidative stress alleviation and related to glutathione redox state changes in Aspergillus flavus. Liao, B. -S.. 2009

[2]Effect of water activity and temperature on the growth of Aspergillus flavus, the expression of aflatoxin biosynthetic genes and aflatoxin production in shelled peanuts. Liu, Xiao,Guan, Xuanli,Xing, Fuguo,Lv, Cong,Dai, Xiaofeng,Liu, Yang.

[3]Aflatoxin B-1 inhibition in Aspergillus flavus by Aspergillus niger through down-regulating expression of major biosynthetic genes and AFB(1) degradation by atoxigenic A. flavus. Xing, Fuguo,Wang, Limin,Liu, Xiao,Selvaraj, Jonathan Nimal,Wang, Yan,Zhao, Yueju,Liu, Yang.

[4]A strain of Aspergillus flavus from China shows potential as a biocontrol agent for aflatoxin contamination. Zhou, Lu,Wei, Dan-Dan,Selvaraj, Jonathan Nimal,Shang, Bo,Zhang, Chu-Shu,Xing, Fu-Guo,Zhao, Yue-Ju,Wang, Yan,Liu, Yang.

[5]Inhibitory Effect of Cinnamaldehyde, Citral, and Eugenol on Aflatoxin Biosynthetic Gene Expression and Aflatoxin B-1 Biosynthesis in Aspergillus flavus. Liang, Dandan,Xing, Fuguo,Selvaraj, Jonathan Nimal,Liu, Xiao,Wang, Limin,Hua, Huijuan,Zhou, Lu,Zhao, Yueju,Wang, Yan,Liu, Yang.

[6]Research Progress Related to Aflatoxin Contamination and Prevention and Control of Soils. Xue Wang,Dun Wang,Shujuan Zhang,Mengjie Zhu,Qing Yang,Jing Dong,Qi Zhang,Peng Feng. 2023

[7]Potential of Trichoderma spp. for Biocontrol of Aflatoxin-Producing Aspergillus flavus. Xianfeng Ren,Maria Teresa Branà,Miriam Haidukowski,Antonia Gallo,Qi Zhang,Antonio F. Logrieco,Peiwu Li,Shancang Zhao,Claudio Altomare. 2022

[8]Comprehensive analyses of inhibition of the Chinese traditional food-packaging materials, Indocalamus latifolius leaves (Zongye) on Aspergillus flavus. Peng, Wenjing,Ren, Xiaoxu,Dai, Haiting,Tai, Bowen,Yang, Bolei,Wang, Gang,Li, Xu,Xing, Fuguo. 2024

[9]Regulatory effect of fadR on the inhibition of Aspergillus flavus infection of walnut kernels by Enterobacter ludwigii AA4. Yuan, Zhibo,Zan, Yibo,Li, Xu,Lu, Bin,Chao, Yanjie,Xiong, Xinwu,Yao, Yanpo,Wu, Di,Niu, Ben,Pei, Dong. 2025

[10]花生对黄曲霉侵染抗性的AFLP标记. 雷永,廖伯寿,王圣玉,姜慧芳. 2004

[11]关注黄曲霉毒素国内外限量标准;完善食品安全保障措施. 范蓓,李庆鹏,哈益明. 2010

[12]中国牦牛瘤胃纤毛虫原生动物区系与异地饲养对它的影响. 桂荣,那日苏,翟向华,色珠. 1999

[13]水稻穗部突变体Cl的形态和定位分析. 郑雷英,朱旭东,钱前,赵忠,张建军,胡筱荷,林鸿宣,罗达. 2003

[14]中国粮食安全的影响因素评估与测度研究. 袁世一,李干琼. 2024

[15]Complexation of synthetic CDM-AM copolymer with natamycin and carbendazim to improve solubility and fungicidal activity. Li, Yong-Fu,Ji, Jing,Guo, Qin,Ha, Yi-Ming,Li, Qing-Peng,Li, Yong-Fu,Ji, Jing,Guo, Qin,Ha, Yi-Ming,Li, Qing-Peng.

[16]Effect of radio frequency energy combined with natamycin on Aspergillus niger survival and quality of dried shiitake mushroom with different moisture content. Zhang, Lihui,Zhu, Jialing,Wang, Shaojin,Chen, Long,Song, Zihan,Zhang, Lei,Ma, Haile. 2025

[17]Inactivation of Bacillus subtilis by a Pulsed Magnetic Field and Kinetics Model. Qian, Jing-ya,Ma, Hai-le,Li, Shu-jun,Cui, Feng-jie,Qu, Wen-juan,Li, Shu-jun,Qian, Jing-ya,Ma, Hai-le,Qu, Wen-juan.

[18]Morphology and ultrastructure of antennal sensilla of Macrocentrus cingulum Brischke (Hymenoptera: Braconidae) and their probable functions. Zhang, Tian-tao,Wang, Zhen-ying,He, Kang-lai,Bai, Shu-xiong,Ahmed, Tofael. 2013

[19]Hot-air Drying Kinetics of Yam Slices under Step Change in Relative Humidity. Ju, Hao-Yu,Xiao, Hong-Wei,Gao, Zhen-Jiang,Ju, Hao-Yu,Zhang, Qian,Mujumdar, A. S.,Fang, Xiao-Ming.

[20]Morphology and mapping analysis of rice (Oryza sativa L.) clustered spikelets (Cl) mutant. Zheng, LY,Zhu, XD,Qian, Q,Zhao, Z,Zhang, JJ,Hu, XH,Lin, HX,Luo, D.

作者其他论文 更多>>