陈赛华Saihua Chen

副高级

副高级 博士生导师

电子邮箱:

入职时间:2017-05-01

所在单位:农学院

职务:农学院作物遗传育种与应用生物技术系副主任

学历:博士研究生毕业

办公地点:扬州大学荷花池校区逸夫楼东楼308室

在职信息:在岗

主要任职:作物遗传育种系副主任

论文成果

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Comparative transcriptome profiling and co-expression network analysis uncover the key genes associated withearly-stage resistance to Aspergillus flavus in maize

发布时间:2024-03-10 点击次数:

DOI码:10.1186/s12870-021-02983-x
发表刊物:BMC plant biology
关键字:Maize, Aspergillus flavus, Transcriptome analysis, WGCNA, Early-stage resistance
摘要:Background: The fungus Aspergillus flavus (A. flavus) is a serious threat to maize (Zea mays) production worldwide. It causes considerable yield and economic losses, and poses a health risk to humans and livestock due to the high toxicity of aflatoxin. However, key genes and regulatory networks conferring maize resistance to A. flavus are not clear, especially at the early stage of infection. Here, we performed a comprehensive transcriptome analysis of two maize inbred lines with contrasting resistance to A. flavus infection. Results: The pairwise comparisons between mock and infected kernels in each line during the first 6 h post inoculation (hpi) showed that maize resistance to A. flavus infection was specific to the genotype and infection stage, and defense pathways were strengthened in the resistant line. Further comparison of the two maize lines revealed that the infection-induced up-regulated differentially expressed genes (DEGs) in the resistant line might underlie the enhanced resistance. Gene co-expression network analysis by WGCNA (weighted gene co-expression network analysis) identified 7 modules that were significantly associated with different infection stages, and 110 hub genes of these modules. These key regulators mainly participate in the biosynthesis of fatty acid and antibiotics. In addition, 90 candidate genes for maize resistance to A. flavus infection and/or aflatoxin contamination obtained in previous studies were confirmed to be differentially expressed between the resistant and susceptible lines within the first 6 hpi. Conclusion: This work unveiled more A. flavus resistance genes and provided a detailed regulatory network of early-stage resistance to A. flavus in maize.
论文类型:Research Article
文献类型:J
卷号:21
页面范围:216
是否译文:
发表时间:2021-03-01
收录刊物:SCI