数字农科院2.0

Serial Passage Through Resistant And S.usceptible Cucumber Cultivars Affects T he Virulence Of Fusarium Oxysporum F. Sp. Cucumerinum

文献类型: 外文期刊

作者: Li, Shidong;Lu, Xiaohong;Sun, Manhong;Huang, Xiaoqing

作者机构:

关键词: Fusarium oxysporum f. sp. cucumerinum; resistant cultivar; serial passage; susceptible cultivar; virulence variation; virulence-related gene

期刊名称: MICROBIOLOGYOPEN

ISSN: 2045-8827

年卷期: 2019 年 8 卷 2.0 期

页码:

收录情况: JCR(2021版)

摘要: Fusarium oxysporum f. sp. cucumerinum (Foc) is the causal pathogen of cucumber Fusarium wilt resulting in losses to cucumber production. To investigate the effects of the selective pressures of host plants on the virulence of Foc, a low virulence isolate, foc-3b, was successively inoculated on resistant and susceptible cucumber cultivars for five generations. The virulence of the original isolate diverged; virulence was significantly strengthened after serial passage on the resistant cultivar and weakened on the susceptible plants (p < .05). The expression of four virulence-related genes of F. oxysporum, G-protein alpha subunit gene fga1, sucrose nonfermenting 1 gene snf1, F-box protein gene frp1, and Class V chitin synthase gene chsV, was quantified using real-time PCR. All genes were significantly upregulated after serial passage on the resistant cultivar, compared to the original strain, and the expression of snf1 was downregulated in strains re-isolated from the susceptible plants (p < .05). A significant positive correlation was found between the expression levels of gene snf1, frp1, and chsV and disease severity of cucumber Fusarium wilt, suggesting these genes may impact virulence differentiation. This study will improve the management of cucumber Fusarium wilt and provide insight into the mechanisms underlying virulence of F. oxysporum.

分类号:

  • 相关文献

[1]Serial passage through resistant and susceptible cucumber cultivars affects the virulence of Fusarium oxysporum f. sp. cucumerinum. . 2019

[2]Identification Of Novel Genes Essential F.or Brucella Abortus To E stablish Infection By Signature-Tagged Mutagenesis. Tian, MX, Qu, J, Li, P, Bao, YQ, Liu, JM, Ding, C, Wang, SH, Li, T, Qi, JJ, Yu, SQ. 2019

[3]Long-Term Passage Of Duck Tembusu Virus In Bhk-21 Cells Generates A Completely Attenuated And Immunogenic Population With Increased Genetic Diversity. Zhang, LJ, Sun, MX, Zhang, QS, Wang, J, Cao, YX, Cui, SJ, Su, JL. 2020

[4]Community Structures and Antifungal Activity of Root-Associated Endophytic Actinobacteria in Healthy and Diseased Cucumber Plants and Streptomyces sp. HAAG3-15 as a Promising Biocontrol Agent. Zhao, Junwei,Wang, Xiangjing,Xiang, Wensheng,Xiang, Wensheng,Xu, Xi,Li, Chenxu,Cao, Peng,Yu, Zhiyin,Wang, Han. 2020

[5]FoCup, a secreted protein, is essential for virulence of Fusarium oxysporum f. sp. cucumerinum on cucumber. Ji Tong Xu,He Liu,Shi Dong Li,Rong Jun Guo,Man Hong Sun,Chao Ge Yu,Zhou Ping Sun,Xiao Hong Lu. 2026

[6]Transcriptome Analysis Of Virulence-Differentiated Fusarium O.xysporum F. Sp. Cucumerinum I solates During Cucumber Colonisation Reveals Pathogenicity Profiles. Huang, Xiao:Qing,Li, Shi:Dong,Sun, Man:Hong,van Diepeningen, Anne D.,Guo, Rong:Jun,Lu, Xiao:Hong. 2019

[7]Transcriptome analysis of virulence-differentiated Fusarium oxysporum f. sp. cucumerinum isolates during cucumber colonisation reveals pathogenicity profiles. . 2019

[8]Virulence And Molecular Diversity In T.he Cochliobolus Sativus Population C ausing Barley Spot Blotch In China. Yao, Quanjie,Guo, Huanqiang,Xu, Shichang,Wang, Fengtao,Chen, Lin,Lang, Xiaowei,Lin, Ruiming,Feng, Jing,Pang, Yunxing,Zhou, Jun. 2019

作者其他论文 更多>>