Synergistic effects of <i>Trichoderma</i> and biochar on the biocontrol of two soil-borne phytopathogens in chickpeas. [PDF]
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Transcriptome Analysis of the Growth-Promoting Effect of Large Macrofungal Sclerotium Powder on Lentinula edodes and Pleurotus eryngii Strains. [PDF]
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Exploration of Hypolipidemic Effects of Sterols from <i>Pleurotus tuber-regium</i>(Fr.) Sing Sclerotium. [PDF]
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Design and Validation of Specific qPCR Primers for Soil-Borne and Apple Tree-Associated Phytopathogenic Fungi. [PDF]
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Combined decoction selectively modifies chemical composition of traditional Asian medicine: a systematic analysis on Palmijihwang-tang using theoretical additive model. [PDF]
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Bacterial Cyclic Lipopeptides as Triggers of Plant Immunity and Systemic Resistance Against Pathogens. [PDF]
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Non-nutritional factors influencing sclerotium formation in some Sclerotinia and Sclerotium species
Transactions of the British Mycological Society, 1973Sclerotium formation in Sclerotium delphinii, S. rolfsii and Sclerotinia sclerotiorum is influenced both by light intensity and the duration of the light treatment. Removal of matured sclerotia from colonies results in the production of a further crop of sclerotia. In S.
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The effect of methanol extract of leaves of a medicinal plant, Aegle marmelos, was seen on the mycelial growth and sclerotium formation in Sclerotium rolfsii. A significant decrease in the mycelial dry weight was observed in the initial incubation periods (7th and 14th day) and a decrease in the number of sclerotia was observed at high concentrations ...
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