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19 results for “Agaricus bisporus”
FIGURE 6 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 6 Chlamydospores morphology of wet bubble disease pathogen isolates on diseased basidiomes observed by light microscopy. A–B: Big chlamydospore group. A: Chlamydospore of WH1; B: Chlamydospore of HN0015–8; C–D: Small chlamydospore group. C: Chlamydospore of H1–12; D: Chlamydospore of H3–4. Bar=20 µm.
FIGURE 8 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 8 Chlamydospores morphology of wet bubble disease pathogen isolates on PDA media observed by light microscopy. A–B: Big chlamydosporse group. A: Chlamydospores of WH1; B: Chlamydospores of HN0015–8; C–D: Small chlamydospores group. C: Chlamydospores of H1–12; D: Chlamydospores of H3–4.
FIGURE 10 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 10 The pathogenicity level of WBD pathogen isolates. (A) A healthy basidiome of A. bisporus without inoculation of WBD pathogen isolates, fruiting bodies without brown spots; (B) Highly pathogenicity WBD pathogen isolates, most primordia of A. bisporus differentiated into malformed fruiting bodies; (C) Weak pathogenicity WBD pathogen isolates, most of the primordia of A. bisporus formed normal fruiting bodies, while a part of the fruiting bodies were infected, the pathogen with brown spots and few primordia formed irregular fruiting bodies.
FIGURE 4 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 4 Maximum likelihood tree based on analysis of the ITS, nrLSU and RPB2 sequence data with Trichoderma aureoviride as the outgroup.
FIGURE 5 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 5 Conidiophore and conidia morphology of wet bubble disease pathogen isolates cultured on PDA. A–B: Big chlamydospore group. A: Chlamydospore of WH1, Bar=20 µm; B: Chlamydospore of HN0015–8, Bar=10µm.
FIGURE 9 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 9 Chlamydospores morphology of wet bubble disease pathogen isolates on PDA medium observed by SEM. A–B: Big chlamydospores group. A: Chlamydospore of WH1; B: Chlamydospores of HN0015–8; C–D: Small chlamydospores group. C: Chlamydospores of H1–12; D: Chlamydospores of H3–4.
FIGURE 3 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 3 Maximum likelihood tree based on analysis of the RPB2 sequence data with Trichoderma aureoviride as the outgroup.
FIGURE 7 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 7 Colony morphology of H. perniciosus isolates on PDA media. A: Hypomyces perniciosus WH1 strain colony morphology, colony type (ⅰ); B: Hypomyces perniciosus HN0015–8 colony morphology, colony type (ii); C: Hypomyces perniciosus H1–12 colony morphology, colony type (iii); D: Hypomyces perniciosus H3–4 colony morphology, colony type (iv).
FIGURE 1 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 1 Maximum likelihood tree based on analysis of the ITS sequence data with Trichoderma aureoviride as the outgroup.
The physiology of Agaricus bisporus in semi-commercial compost cultivation appears to be highly conserved among unrelated isolates
GEO Series GSE99928. Agaricus bisporus. 16 samples. Type: Expression profiling by high throughput sequencing.
Analysis of gene expression across developmental stages of Agaricus bisporus
GEO Series GSE39569. Agaricus bisporus var. bisporus H97. 16 samples. Type: Expression profiling by array.
Vitamin B2 and drought stress responses in Agaricus bisporus
GEO Series GSE73010. Agaricus bisporus. 8 samples. Type: Expression profiling by array.
Gene expression changes with viral infection in Agaricus bisporus
GEO Series GSE70464. Agaricus bisporus. 32 samples. Type: Expression profiling by array.
White Button Mushroom (Agaricus bisporus) Disrupts Androgen Receptor Signaling in Human Prostate Cancer Cells (LNCaP)
GEO Series GSE160723. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.
Agaricus Bisporus and Influenza Vaccination Response
ClinicalTrials.gov study NCT06041867. IPD Sharing: NO. Countries: 1. Publications: 0.
Uncovering the abilities of Agaricus bisporus to degrade plant biomass throughout its life cycle
GEO Series GSE65800. Agaricus bisporus. 12 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 2 in Morphological and phylogenetical analyses of pathogenic Hypomyces perniciosus isolates from Agaricus bisporus causing wet bubble disease in China
FIGURE 2 Maximum likelihood tree based on analysis of the nrLSU sequence data with Trichoderma aureoviride as the outgroup.
Agaricus bisporus respiratory bursts
GEO Series GSE124976. Agaricus bisporus. 9 samples. Type: Expression profiling by high throughput sequencing.
Liver protective effects of white button mushroom (Agaricus Bisporus)
GEO Series GSE31854. Mus musculus. 8 samples. Type: Expression profiling by array.
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