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Journal Abstract Search


151 related items for PubMed ID: 25725383

  • 1. Deletion of PdMit1, a homolog of yeast Csg1, affects growth and Ca(2+) sensitivity of the fungus Penicillium digitatum, but does not alter virulence.
    Zhu C, Wang W, Wang M, Ruan R, Sun X, He M, Mao C, Li H.
    Res Microbiol; 2015 Apr; 166(3):143-52. PubMed ID: 25725383
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  • 2. Involvement of LaeA in the regulation of conidia production and stress responses in Penicillium digitatum.
    Zhu C, Wang Y, Hu X, Lei M, Wang M, Zeng J, Li H, Liu Z, Zhou T, Yu D.
    J Basic Microbiol; 2020 Jan; 60(1):82-88. PubMed ID: 31650621
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  • 3. The pH signaling transcription factor PacC is required for full virulence in Penicillium digitatum.
    Zhang T, Sun X, Xu Q, Candelas LG, Li H.
    Appl Microbiol Biotechnol; 2013 Oct; 97(20):9087-98. PubMed ID: 23917633
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  • 4. The citrus postharvest pathogen Penicillium digitatum depends on the PdMpkB kinase for developmental and virulence functions.
    Ma H, Sun X, Wang M, Gai Y, Chung KR, Li H.
    Int J Food Microbiol; 2016 Nov 07; 236():167-76. PubMed ID: 27529663
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  • 5. Functional identification of the DHN melanin synthesis gene cluster and its role in UV-C tolerance in citrus postharvest pathogenic fungus Penicillium digitatum.
    Yang F, Cheng L, Du Y, Xia L, Long CA.
    Fungal Biol; 2022 Sep 07; 126(9):566-575. PubMed ID: 36008049
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  • 8. Adenylyl cyclase is required for cAMP production, growth, conidial germination, and virulence in the citrus green mold pathogen Penicillium digitatum.
    Wang W, Wang M, Wang J, Zhu C, Chung KR, Li H.
    Microbiol Res; 2016 Nov 07; 192():11-20. PubMed ID: 27664719
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  • 10. Relevance of the transcription factor PdSte12 in Penicillium digitatum conidiation and virulence during citrus fruit infection.
    Vilanova L, Teixidó N, Torres R, Usall J, Viñas I, Sánchez-Torres P.
    Int J Food Microbiol; 2016 Oct 17; 235():93-102. PubMed ID: 27479695
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  • 12. The myosin motor domain-containing chitin synthase PdChsVII is required for development, cell wall integrity and virulence in the citrus postharvest pathogen Penicillium digitatum.
    Gandía M, Harries E, Marcos JF.
    Fungal Genet Biol; 2014 Jun 17; 67():58-70. PubMed ID: 24727399
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  • 13. Identification and characterization of chitin synthase genes in the postharvest citrus fruit pathogen Penicillium digitatum.
    Gandía M, Harries E, Marcos JF.
    Fungal Biol; 2012 Jun 17; 116(6):654-64. PubMed ID: 22658311
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  • 16. PdSNF1, a sucrose non-fermenting protein kinase gene, is required for Penicillium digitatum conidiation and virulence.
    Zhang T, Sun X, Xu Q, Zhu C, Li Q, Li H.
    Appl Microbiol Biotechnol; 2013 Jun 17; 97(12):5433-45. PubMed ID: 23296496
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  • 17. Light-emitting Diode Blue Light Alters the Ability of Penicillium digitatum to Infect Citrus Fruits.
    Lafuente MT, Alférez F, González-Candelas L.
    Photochem Photobiol; 2018 Sep 17; 94(5):1003-1009. PubMed ID: 29700835
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  • 18. PdbrlA, PdabaA and PdwetA control distinct stages of conidiogenesis in Penicillium digitatum.
    Wang M, Sun X, Zhu C, Xu Q, Ruan R, Yu D, Li H.
    Res Microbiol; 2015 Jan 17; 166(1):56-65. PubMed ID: 25530311
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  • 20. Penicillium digitatum infection mechanisms in citrus: What do we know so far?
    Costa JH, Bazioli JM, de Moraes Pontes JG, Fill TP.
    Fungal Biol; 2019 Aug 17; 123(8):584-593. PubMed ID: 31345412
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