数字农科院2.0

Research Advances on Identification and Detection Methods for Aflatoxigenic Fungi

文献类型: 外文期刊

作者: Shang, Qingyu;Zhang, Fuchao;Zhang, Qi;Zhang, Wen;Li, Hui;Li, Peiwu

作者机构:

关键词: aflatoxigenic fungi;biosensing;morphological identification;nucleic acid amplification;spectral analysis

期刊名称: FOOD FRONTIERS

ISSN:

年卷期: 2025 年

页码:

收录情况: EI(2025版) ; ; ESCI(2025版)

摘要: Aflatoxin contamination in food and feed is a global concern for food safety, posing great threat to human and environmental health. It is the secondary metabolite mainly produced by Aspergillus flavus (A. flavus) and Aspergillus parasiticus (A. parasiticus). Therefore, it is very urgent to develop rapid and sensitive identification and detection methods for aflatoxigenic fungi to realize early warning the risk of aflatoxin contamination from the source. This article reviews the latest research progress in the strategy of identifying and detecting aflatoxigenic fungi in agricultural food in recent years. The detection principles and applications of different techniques for aflatoxigenic fungi determination, including morphological identification, nucleic acid amplification techniques, spectral analysis technology, and biosensing, are presented in this review. Finally, the challenges and research trends of identification and detection of aflatoxigenic fungi in the future are also discussed. Through rapid and sensitive identification and detection of aflatoxigenic fungi, there will be relatively sufficient time to do corresponding prevention and control measures to reduce or even prevent the production of aflatoxin in the early stage, which will be very beneficial to greatly reduce the risk of aflatoxin contamination in agricultural food and improve food safety.

分类号:

  • 相关文献

[1]Identification and Genetic Diversity Analysis of the Pathogen of Anthracnose of Pepper in Guizhou. Aimin Zhang,Lei Li,Xuewen Xie,Ali Chai,Yanxia Shi,Dan Xing,Zhiguo Yu,Baoju Li. 2024

[2]Diagnosis of Nitrogen Content in Upper and Lower Corn Leaves Based on Hyperspectral Data. Jin Liang,Hu Ke-lin,Tian Ming-ming,Wei Dan,Jin Liang,Wei Dan,Li Hong,Bai You-lu,Zhang Jun-zheng. 2013

[3]Effects of polystyrene nanoplastics on the binding of ciprofloxacin to bovine serum albumin. Du K.,Du X.,Sun Z.,Wang Y.,Bao Y.,Lan J.,Shi R.,Zhao Z.. 2024

[4]A novel index for mapping crop residue covered cropland using remote sensing data. Wenqian Zhang,Wenjuan Li,Cong Wang,Qiangyi Yu,Huajun Tang,Wenbin Wu. 2025

[5]In-situ prediction of soil organic carbon contents in wheat-rice rotation fields via visible near-infrared spectroscopy. Lingju Dai,Jie Xue,Rui Lu,Zheng Wang,Zhongxing Chen,Qiangyi Yu,Zhou Shi,Songchao Chen. 2024

[6]Enhanced binding of triclocarban to catalase induced by coexisting nanoplastics. Qi Lou,Rongguang Shi,Rui Guan,Jing Lan,Yaoyao Wang,Yaru Li,Wansong Zong,Zongshan Zhao. 2025

[7]A flexible and stretchable photonic crystal sensor for biosensing and tactile sensing. Wang Peng,Bing Huang,Xuanxuan Huang,Han Song,Qingxi Liao. 2022

[8]Dual-mode sensing of biomarkers based on nano 3D Cu-Flo.@AuNPs-electrocatalyzed oxidation of glucose inducing in-situ H2O2-generation system. Guo J., Li S., Wang J., Wang J.. 2022

[9]DNA-mediated growth of noble metal nanomaterials for biosensing applications. Chang Lu,Shuaishuai Zhou,Fei Gao,Jianhan Lin,Juewen Liu,Jinkai Zheng. 2022

[10]Plasmonic gold nanostructures for biosensing and bioimaging. Xiaowen Ou,Yuqi Liu,Mingxing Zhang,Li Hua,Shenshan Zhan. 2021

[11]Ultrasensitive ratiometric detection of Pb2+ using DNA tetrahedron-mediated hyperbranched hybridization chain reaction. Pingping Ji,Guimei Han,Yan Huang,Hongxin Jiang,Qiwen Zhou,Xiaowei Liu,Deming Kong. 2021

[12]CRISPR/Cas12a-based hypochlorous acid and myeloperoxidase biosensors designed on RESET effect. Jia Yi Ma,Bo Liu,Shabib Raza,Hong Xin Jiang,An Na Tang,De Ming Kong. 2023

[13]Analyte-induced hindrance in the RCA-assisted CRISPR/Cas12a system for homogeneous protein assays. Guobin Mao,Qiaoyu Li,Ziying Zhang,Wei Huang,Qian Luo,Junbiao Dai,Weiren Huang,Yingxin Ma. 2024

作者其他论文 更多>>