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1.
  • GhMYB4 downregulates lignin... GhMYB4 downregulates lignin biosynthesis and enhances cotton resistance to Verticillium dahliae
    Xiao, Shenghua; Hu, Qin; Shen, Jili ... Plant cell reports, 04/2021, Volume: 40, Issue: 4
    Journal Article
    Peer reviewed

    Key message GhMYB4 acts as a negative regulator in lignin biosynthesis, which results in alteration of cell wall integrity and activation of cotton defense response. Verticillium wilt of cotton ( ...
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2.
  • Development of hop transcri... Development of hop transcriptome to support research into host-viroid interactions
    Pokorn, Tine; Radišek, Sebastjan; Javornik, Branka ... PloS one, 09/2017, Volume: 12, Issue: 9
    Journal Article
    Peer reviewed
    Open access

    Viroids, the smallest known pathogens, unable to encode any proteins, can cause severe diseases in their host plants. One of the proposed mechanisms of their pathogenicity includes silencing the ...
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3.
  • Evaluation of reference gen... Evaluation of reference genes for RT-qPCR expression studies in hop (Humulus lupulus L.) during infection with vascular pathogen verticillium albo-atrum
    Štajner, Nataša; Cregeen, Sara; Javornik, Branka PloS one, 07/2013, Volume: 8, Issue: 7
    Journal Article
    Peer reviewed
    Open access

    Hop plant (Humulus lupulus L.), cultivated primarily for its use in the brewing industry, is faced with a variety of diseases, including severe vascular diseases, such as Verticillium wilt, against ...
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4.
  • Chitin-Binding Protein of V... Chitin-Binding Protein of Verticillium nonalfalfae Disguises Fungus from Plant Chitinases and Suppresses Chitin-Triggered Host Immunity
    Volk, Helena; Marton, Kristina; Flajšman, Marko ... Molecular plant-microbe interactions, 10/2019, Volume: 32, Issue: 10
    Journal Article
    Peer reviewed
    Open access

    During fungal infections, plant cells secrete chitinases, which digest chitin in the fungal cell walls. The recognition of released chitin oligomers via lysin motif (LysM)-containing immune host ...
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  • Comprehensive analysis of V... Comprehensive analysis of Verticillium nonalfalfae in silico secretome uncovers putative effector proteins expressed during hop invasion
    Marton, Kristina; Flajšman, Marko; Radišek, Sebastjan ... PloS one, 06/2018, Volume: 13, Issue: 6
    Journal Article
    Peer reviewed
    Open access

    The vascular plant pathogen Verticillium nonalfalfae causes Verticillium wilt in several important crops. VnaSSP4.2 was recently discovered as a V. nonalfalfae virulence effector protein in the xylem ...
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  • Genetic Structure and Core ... Genetic Structure and Core Collection of Olive Germplasm from Albania Revealed by Microsatellite Markers
    Dervishi, Aida; Jakše, Jernej; Ismaili, Hairi ... Genes, 02/2021, Volume: 12, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Olive is considered one of the oldest and the most important cultivated fruit trees in Albania. In the present study, the genetic diversity and structure of Albanian olive germplasm is represented by ...
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  • Complete mitochondrial geno... Complete mitochondrial genome of the Verticillium-wilt causing plant pathogen Verticillium nonalfalfae
    Jelen, Vid; de Jonge, Ronnie; Van de Peer, Yves ... PloS one, 02/2016, Volume: 11, Issue: 2
    Journal Article
    Peer reviewed
    Open access

    Verticillium nonalfalfae is a fungal plant pathogen that causes wilt disease by colonizing the vascular tissues of host plants. The disease induced by hop isolates of V. nonalfalfae manifests in two ...
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8.
  • Identification of Novel Vir... Identification of Novel Virulence-Associated Proteins Secreted to Xylem by Verticillium nonalfalfae During Colonization of Hop Plants
    Flajsman, Marko; Mandelc, Stanislav; Radisek, Sebastjan ... Molecular plant-microbe interactions 29, Issue: 5
    Journal Article
    Peer reviewed
    Open access

    Plant pathogens employ various secreted proteins to suppress host immunity for their successful host colonization. Identification and characterization of pathogen-secreted proteins can contribute to ...
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  • Hop Polyphenols in Relation... Hop Polyphenols in Relation to Verticillium Wilt Resistance and Their Antifungal Activity
    Berne, Sabina; Kovačević, Nataša; Kastelec, Damijana ... Plants (Basel), 10/2020, Volume: 9, Issue: 10
    Journal Article
    Peer reviewed
    Open access

    (1) Background: Verticillium wilt (VW) of hop is a devastating disease caused by the soil-borne fungi and . As suggested by quantitative trait locus (QTL) mapping and RNA-Seq analyses, the underlying ...
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  • Identification of Citruses ... Identification of Citruses from Montenegro Based on Microsatellite Clustering Analyses
    Bitz, Lidija; Malidzan, Slavojka; Stajner, Natasa ... Erwerbsobstbau, 09/2020, Volume: 62, Issue: 3
    Journal Article
    Open access

    A set of 32 citrus genotypes were selected from Montenegro collection and analyzed by the use of 11 microsatellite markers. Analyses harvested 72 different alleles having 6.5 alleles per locus and ...
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