Pages that link to "Q68225927"
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The following pages link to Analysis of two novel classes of plant antifungal proteins from radish (Raphanus sativus L.) seeds (Q68225927):
Displaying 50 items.
- Antifungal plant defensins: mechanisms of action and production (Q26998006) (← links)
- Structural and functional studies of a phosphatidic acid-binding antifungal plant defensin MtDef4: identification of an RGFRRR motif governing fungal cell entry (Q27300105) (← links)
- Defensin-like ZmES4 mediates pollen tube burst in maize via opening of the potassium channel KZM1 (Q27324344) (← links)
- Dimerization of Plant Defensin NaD1 Enhances Its Antifungal Activity (Q27678587) (← links)
- Antimicrobial Peptides from Plants (Q28082004) (← links)
- Antifungal peptides: novel therapeutic compounds against emerging pathogens (Q28369443) (← links)
- Synergistic Activity of the Plant Defensin HsAFP1 and Caspofungin against Candida albicans Biofilms and Planktonic Cultures (Q28547086) (← links)
- A pathogenesis related protein, AhPR10 from peanut: an insight of its mode of antifungal activity (Q33249556) (← links)
- The expression pattern of the Picea glauca Defensin 1 promoter is maintained in Arabidopsis thaliana, indicating the conservation of signalling pathways between angiosperms and gymnosperms (Q33352431) (← links)
- Antifungal Activity against Filamentous Fungi of Ts1, a Multifunctional Toxin from Tityus serrulatus Scorpion Venom (Q33766302) (← links)
- Functional alteration of a dimeric insecticidal lectin to a monomeric antifungal protein correlated to its oligomeric status. (Q33872195) (← links)
- Structure-activity determinants in antifungal plant defensins MsDef1 and MtDef4 with different modes of action against Fusarium graminearum (Q33886808) (← links)
- Isolation of Arabidopsis mutants with enhanced disease susceptibility by direct screening (Q33967803) (← links)
- Phytoalexin-deficient mutants of Arabidopsis reveal that PAD4 encodes a regulatory factor and that four PAD genes contribute to downy mildew resistance. (Q33970001) (← links)
- The Aspergillus giganteus antifungal protein AFPNN5353 activates the cell wall integrity pathway and perturbs calcium homeostasis. (Q34028912) (← links)
- The Antifungal Plant Defensin HsAFP1 from Heuchera sanguinea Induces Apoptosis in Candida albicans (Q34047342) (← links)
- Four plant defensins from an indigenous South African Brassicaceae species display divergent activities against two test pathogens despite high sequence similarity in the encoding genes (Q34059812) (← links)
- Production of an engineered killer peptide in Nicotiana benthamiana by using a potato virus X expression system (Q34097853) (← links)
- The antifungal activity of the Penicillium chrysogenum protein PAF disrupts calcium homeostasis in Neurospora crassa. (Q34125452) (← links)
- The plant defensin RsAFP2 induces cell wall stress, septin mislocalization and accumulation of ceramides in Candida albicans. (Q34183105) (← links)
- Antifungal proteins (Q34293126) (← links)
- Identification of defensin-encoding genes of Picea glauca: characterization of PgD5, a conserved spruce defensin with strong antifungal activity. (Q34433506) (← links)
- Solution structure of drosomycin, the first inducible antifungal protein from insects (Q34439534) (← links)
- Comparison of the nodule vs. root transcriptome of the actinorhizal plant Datisca glomerata: actinorhizal nodules contain a specific class of defensins (Q34979533) (← links)
- Plant-derived decapeptide OSIP108 interferes with Candida albicans biofilm formation without affecting cell viability (Q35102365) (← links)
- Mo-CBP3, an antifungal chitin-binding protein from Moringa oleifera seeds, is a member of the 2S albumin family (Q35581222) (← links)
- Expression of a novel small antimicrobial protein from the seeds of motherwort (Leonurus japonicus) confers disease resistance in tobacco (Q35642020) (← links)
- Systemic Resistance to Powdery Mildew in Brassica napus (AACC) and Raphanus alboglabra (RRCC) by Trichoderma harzianum TH12. (Q35833425) (← links)
- Establishing a reference array for the CS-αβ superfamily of defensive peptides (Q36198238) (← links)
- Surveying the potential of secreted antimicrobial peptides to enhance plant disease resistance (Q36209188) (← links)
- Peptide antimicrobial agents (Q36538861) (← links)
- Hidden weapons of microbial destruction in plant genomes (Q36643254) (← links)
- Cloning and characterization of two cDNA clones encoding seed-specific antimicrobial peptides from Mirabilis jalapa L (Q36691009) (← links)
- Functional characterization of Rorippa indica defensin and its efficacy against Lipaphis erysimi (Q36828709) (← links)
- A review of the phytochemistry and pharmacological activities of raphani semen (Q37045140) (← links)
- Comparative Analysis of the Antimicrobial Activities of Plant Defensin-Like and Ultrashort Peptides against Food-Spoiling Bacteria (Q37122294) (← links)
- The antifungal plant defensin AtPDF2.3 from Arabidopsis thaliana blocks potassium channels. (Q37215786) (← links)
- The Brassicaceae-specific EWR1 gene provides resistance to vascular wilt pathogens (Q37558409) (← links)
- Electrophoretic pattern and antibacterial activity of proteins from vicia faba seed extract (Q37576627) (← links)
- Plant antimicrobial peptides. (Q37677077) (← links)
- Properties and mechanisms of action of naturally occurring antifungal peptides (Q38079168) (← links)
- Antifungal proteins: More than antimicrobials? (Q38081821) (← links)
- Current scenario of peptide-based drugs: the key roles of cationic antitumor and antiviral peptides (Q38160482) (← links)
- Defensins: antifungal lessons from eukaryotes (Q38201011) (← links)
- Antifungal defensins and their role in plant defense. (Q38207024) (← links)
- Nuclear localization of NPR1 is required for activation of PR gene expression (Q38305158) (← links)
- A tripartite approach identifies the major sunflower seed albumins. (Q38920769) (← links)
- Antimicrobial Peptides from Fruits and Their Potential Use as Biotechnological Tools-A Review and Outlook. (Q39101863) (← links)
- Permeabilization of fungal membranes by plant defensins inhibits fungal growth. (Q39484220) (← links)
- Mutants of Ralstonia (Pseudomonas) solanacearum sensitive to antimicrobial peptides are altered in their lipopolysaccharide structure and are avirulent in tobacco (Q39847736) (← links)