The anti-aflatoxigenic mechanism of cinnamaldehyde in Aspergillus flavus
文献类型: 外文期刊
第一作者: Wang, Ping
作者: Wang, Ping;Ma, Longxue;Jin, Jing;Zheng, Mumin;Pan, Lin;Zhao, Yueju;Liu, Yang;Xing, Fuguo;Sun, Xiulan
作者机构:
期刊名称:SCIENTIFIC REPORTS ( 影响因子:4.379; 五年影响因子:5.133 )
ISSN: 2045-2322
年卷期: 2019 年 9 卷
页码:
收录情况: SCI
摘要: Aflatoxin B-1 (AFB(1)), the predominant and most carcinogenic naturally polyketide, is mainly produced by Aspergillus flavus and Aspergillus parasiticus. Cinnamaldehyde has been reported for inhibiting the growth and aflatoxin biosynthesis in A. flavus. But its molecular mechanism of action still remains largely ambiguous. Here, the anti-aflatoxigenic mechanism of cinnamaldehyde in A. flavus was investigated via a comparative transcriptomic analysis. The results indicated that twenty five of thirty genes in aflatoxin cluster showed down-regulation by cinnamaldehyde although the cluster regulators aflR and aflS were slightly up-regulated. This may be due to the up-regulation of the oxidative stress-related genes srrA, msnA and atfB being caused by the significant down-regulation of the diffusible factor FluG. Cinnamaldehyde also inhibited aflatoxin formation by perturbing GPCRs and oxylipins normal function, cell wall biosynthesis and redox equilibrium. In addition, accumulation of NADPH due to up-regulation of pentose phosphate pathway drove acetyl-CoA to lipids synthesis rather than polyketides. Both GO and KEGG analysis suggested that pyruvate and phenylalanine metabolism, post-transcriptional modification and key enzymes biosynthesis might be involved in the suppression of AFB1 production by cinnamaldehyde. This study served to decipher the anti-aflatoxigenic properties of cinnamaldehyde in A. flavus and provided powerful evidence for its use in practice.
分类号:
- 相关文献
作者其他论文 更多>>
-
Recent advances in microbial whole-cell biosensors for detecting food contaminants: a review
作者:Guan, Yue;Zheng, Mumin;Ma, Junning;Xing, Fuguo;Guan, Yue;Diez, Maria Suarez;Saccenti, Edoardo
关键词:Microbial whole-cell biosensors; Mycotoxins; Food pathogens; Heavy metals; Pesticides; Antibiotics
-
Structure dependence of the enhanced sulfur tolerance of core-shell CoMn oxides for benzene oxidation: Discrepant sulfur species and less affected reactant activation
作者:Liu, Yang;Cheng, Lin;Zhang, Di;Zhan, Jingjing;Shan, Jiajia;Zhou, Hao;Yi, Xianliang;Li, Zhonghong;Shen, Xudong
关键词:VOCs; Catalytic oxidation; Manganese oxide; Cobalt decoration; Sulfur resistance
-
Increasing Planting Density with Reduced Topdressing Nitrogen Inputs Increased Nitrogen Use Efficiency and Improved Grain Quality While Maintaining Yields in Weak-Gluten Wheat
作者:Zhou, Wenyin;Yan, Suhui;Rehman, Abdul;Li, Haojie;Zhang, Shiya;Yong, Yudong;Liu, Yang;Xiao, Longfei;Li, Wenyang;Zheng, Chengyan
关键词:weak-gluten wheat; nitrogen tracing; planting density; grain yield; nitrogen agronomic efficiency; quality
-
Population Genetics, Demographic History, and Potential Distributions of the New Important Pests Monolepta signata (Coleoptera: Chrysomelidae) on Corn in China
作者:Liu, Yang;Ge, Yacong;Wang, Liming;Dong, Jingao;Wang, Yuyu;Wang, Zhenying
关键词:
Monolepta signata ; genetic diversity; phylogeography; potential suitability areas -
Attraction and aversion of noctuid moths to fermented food sources coordinated by olfactory receptors from distinct gene families
作者:Hou, Xiao-Qing;Zhao, Hanbo;Wang, Guirong;Liu, Yang;Wang, Guirong;Zhang, Dan-Dan;Lofstedt, Christer;Hou, Xiao-Qing;Lofstedt, Christer
关键词:Isoamyl alcohol; Octanoic acid; Odorant receptor; Ionotropic receptor; Yeast; Functional conservation
-
A Coupling Coordination Assessment of the Land-Water-Food Nexus in China
作者:Liu, Cong;Wei, Jianmei;Lu, Hui;Li, Qing;Jiang, Wenlai;Liu, Yang
关键词:land-water-food nexus; coupling coordination development; influencing factors; future trend; China
-
miR-17-5p-Mediated RNA Activation Upregulates KPNA2 Expression and Inhibits High-Glucose-Induced Apoptosis of Sheep Granulosa Cells
作者:Wang, Yong;Tian, Feng;Li, Jiuyue;Liu, Yang;Liang, Jianyong;Gao, Yuan;Xue, Shuyuan;Yue, Sicong;Li, Ao
关键词:high glucose; granulosa cell;
miR-17-5p ;KPNA2 ; apoptosis