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New Phytologist, ISSN 0028-646X, 4/2013, Volume 198, Issue 1, pp. 179 - 189
The primary objective of this study was to identify the molecular signals present in arbuscular mycorrhizal (AM) germinated spore exudates (GSEs) responsible... 
Oligomers | Symbiosis | Fungi | Full papers | Receptors | Spore germination | Plant roots | Epidermis | Chitin | Plants | Fungal spores | Medicago truncatula | nuclear calcium spiking | arbuscular mycorrhiza (AM) | chitin oligomers | germinated spore exudates | strigolactone | common SYM pathway | fungal–plant signalling | Chitin oligomers | Fungal-plant signalling | Nuclear calcium spiking | Germinated spore exudates | Arbuscular mycorrhiza (AM) | Common SYM pathway | Strigolactone | fungalplant signalling | SIGNAL | NOD FACTORS | CALCIUM SPIKING | RECEPTOR | PLASMA-MEMBRANE | PLANT SCIENCES | NODULATION | DIFFUSIBLE FACTOR | RESPONSES | GENE-EXPRESSION | MTENOD11 EXPRESSION | Medicago truncatula - drug effects | Host-Pathogen Interactions - drug effects | Medicago truncatula - microbiology | Plant Epidermis - drug effects | Medicago truncatula - metabolism | Mutation - genetics | Plant Roots - microbiology | Chitin - pharmacology | Lactones - pharmacology | Plant Epidermis - microbiology | Mycorrhizae - drug effects | Plant Roots - drug effects | Spores, Fungal - physiology | Oligosaccharides - pharmacology | Cell Nucleus - metabolism | Calcium Signaling - drug effects | Spores, Fungal - drug effects | Mycorrhizae - metabolism | Bacterial Proteins - metabolism | Cell Nucleus - drug effects | Legumes | Beans | Mimosaceae
Journal Article
PLoS ONE, ISSN 1932-6203, 11/2011, Volume 6, Issue 11, p. e28291
The velvet protein, VeA, is involved in the regulation of diverse cellular processes. In this study, we explored functions of FgVeA in the wheat head blight... 
REDUCED VIRULENCE | VEA | PATHWAY | APPRESSORIUM TURGOR | MAP KINASE | BIOSYNTHESIS | TOXIN | MULTIDISCIPLINARY SCIENCES | GENE-EXPRESSION | GIBBERELLA-ZEAE | REVEALS | Hyphae - growth & development | Virulence - drug effects | Methyltransferases - metabolism | Spores, Fungal - growth & development | Colony Count, Microbial | Fungicides, Industrial - pharmacology | Gene Expression Regulation, Fungal - drug effects | Sequence Analysis, Protein | Cell Wall - drug effects | Spores, Fungal - drug effects | Gene Deletion | Protein Binding - drug effects | Stress, Physiological - drug effects | Fusarium - genetics | Fusarium - metabolism | Fusarium - pathogenicity | Protein Structure, Tertiary | Methyltransferases - chemistry | Reproduction, Asexual - drug effects | Pigmentation - drug effects | Hyphae - ultrastructure | Drug Resistance, Fungal - drug effects | Fungal Proteins - genetics | Osmosis - drug effects | Fusarium - growth & development | Trichothecenes - biosynthesis | Glycerol - metabolism | Hyphae - metabolism | Spores, Fungal - ultrastructure | Lipid Metabolism - drug effects | Hyphae - drug effects | Fungal Proteins - metabolism | Proteins | Fungicides | Gene expression | Analysis | Germination | Biotechnology | Yeast | Laboratories | Pathogenesis | Genomics | Virulence | Amino acids | Biosynthesis | Genomes | Hydrophobicity | Gene deletion | Kinases | Osmotic stress | Deletion mutant | Fungi | Clonal deletion | Metabolites | Iprodione | Fludioxonil | Blight | Deletion | Fusarium | Flowering | Fusarium head blight | Pathogens | Sensitivity analysis | Fusarium graminearum | Cell walls | Serial analysis of gene expression | Glycerol | Deoxynivalenol | Metabolism | Chromatography | Studies | Sensitivity | Mutagenesis | Hyphae | Scientific imaging | Crop diseases | Molecular biology | Wheat | Mass spectrometry | Conidia | Wheat head blight
Journal Article
PLoS Pathogens, ISSN 1553-7366, 2014, Volume 10, Issue 6, p. e1004105
  [...]men are up to three times more likely to have onychomycosis than women, though the reasons for this gender difference are not clear [6]. [...]the low... 
TRICHOPHYTON-RUBRUM | TERBINAFINE | THERAPY | DERMATOPHYTOSIS | VIROLOGY | EFFICACY | DRUG-DELIVERY | MICROBIOLOGY | MODEL | PREVALENCE | EPIDEMIOLOGY | PARASITOLOGY | Recurrence | Epidermophyton - physiology | Hand Dermatoses - prevention & control | Prevalence | Age Factors | Humans | Spores, Fungal - growth & development | Hand Dermatoses - drug therapy | Antifungal Agents - therapeutic use | Incidence | Trichophyton - physiology | Microsporum - drug effects | Microsporum - physiology | Disease Reservoirs - microbiology | Foot Dermatoses - epidemiology | Hand Dermatoses - microbiology | Spores, Fungal - drug effects | Onychomycosis - epidemiology | Trichophyton - growth & development | Epidermophyton - growth & development | Trichophyton - drug effects | Onychomycosis - prevention & control | Drug Administration Schedule | Onychomycosis - drug therapy | Administration, Oral | Foot Dermatoses - drug therapy | Microsporum - growth & development | Risk Factors | Foot Dermatoses - microbiology | Spores, Fungal - physiology | Foot Dermatoses - prevention & control | Epidermophyton - drug effects | Hand Dermatoses - epidemiology | Administration, Topical | Antifungal Agents - administration & dosage | Onychomycosis - microbiology | Mycoses | Development and progression | Care and treatment | Health aspects | Risk factors | Onychomycosis | Fungi | Ultrasonic imaging | HIV | Older people | Fingers & toes | Human immunodeficiency virus | Fungal infections | Diabetes | Patients | Foot diseases
Journal Article
Plant Physiology, ISSN 0032-0889, 10/2009, Volume 151, Issue 2, pp. 792 - 808
Fungal species belonging to the genus Trichoderma colonize the rhizosphere of many plants, resulting in beneficial effects such as increased resistance to... 
Fungi | Trichoderma | Leaves | Enzymes | Microbial colonization | Plant roots | Corn | Plants | Plants Interacting with Other Organisms | Sugars | Fungal spores | ASPERGILLUS-NIGER | CARBON CATABOLITE REPRESSION | SYSTEMIC RESISTANCE | DEFENSE RESPONSES | ENHANCED INVERTASE ACTIVITY | INCREASED GROWTH | GENE-EXPRESSION | HYPOCREA-JECORINA | ARBUSCULAR MYCORRHIZATION | BASIDIOMYCETE COPRINUS-CINEREUS | PLANT SCIENCES | Trichoderma - physiology | Hydrolysis - drug effects | Symbiosis - physiology | Molecular Sequence Data | Spores, Fungal - growth & development | Sucrose - pharmacology | Colony Count, Microbial | Phylogeny | Trichoderma - enzymology | Plant Roots - drug effects | Gene Expression Regulation, Fungal - drug effects | Spores, Fungal - drug effects | Sucrose - metabolism | Plant Leaves - drug effects | Symbiosis - drug effects | Zea mays - metabolism | Carbon - pharmacology | beta-Fructofuranosidase - metabolism | Zea mays - drug effects | Trichoderma - genetics | Fungal Proteins - genetics | Mutation - genetics | Plant Roots - microbiology | Up-Regulation - drug effects | Trichoderma - growth & development | Photosynthesis - drug effects | Zea mays - microbiology | Plant Leaves - physiology | Fungal Proteins - metabolism | Symbiosis | Sucrose | Fungal diseases of plants | Diseases and pests | Environmental aspects | Genetic aspects | Research
Journal Article
Journal Article
Journal Article
Letters in Applied Microbiology, ISSN 0266-8254, 12/2012, Volume 55, Issue 6, pp. 460 - 466
Journal Article
Scientific Reports, ISSN 2045-2322, 04/2017, Volume 7, Issue 1, p. 46054
Journal Article