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8 results for “Botryosphaeria”
FIGURE 2. Phylogram generated from maximum likelihood analysis resulting from the combined ITS, tef1 and tub2 in Interesting Botryosphaeria (Botryosphaeriaceae) associated with Magnolia species in Thailand: Additions of two new host records with their lifestyles
FIGURE 2. Phylogram generated from maximum likelihood analysis resulting from the combined ITS, tef1 and tub2 sequence dataset. Related sequences of Botryosphaeria were obtained from Zhang et al. (2021). Cophinforma eucalypti (MFLUCC 11-0425) was selected as the outgroup taxon. Bootstrap values for maximum likelihood equal to or greater than 60% and bayesian posterior probabilities equal to or greater than 0.95 are placed above the branches. The newly generated sequences are indicated in red. Type and ex-type strains are in black bold. Species names and strain accession numbers are followed by the lifestyle (orange), the isolation source or host species (green) and country of origin (blue). The accepted species names (according to Zhang et al. 2021) are indicated to the left of each clade. The scale bar represents the expected number of changes per site. The tree was rooted to Cophinforma eucalypti (MFLUCC 11-0425). END: Endophytic; PAT: Pathogenic; SAP: Saprobic; UNK: Unknown.
FIGURE 3 in Interesting Botryosphaeria (Botryosphaeriaceae) associated with Magnolia species in Thailand: Additions of two new host records with their lifestyles
FIGURE 3. Botryosphaeria puerensis (HKAS 107129, new host record). a–c. Appearance of ascomata on substrate. d, e. Sections through ascomata. f. Peridium. g. Paraphyses. h–j. Asci. k–n. Ascospores. Scale bars: a, b = 500 μm, c = 200 μm, d, e = 50 μm, f, h–j = 20 μm, g = 10 μm, k–n = 5 μm.
Susceptibility of Eucalyptus hybrid clones to Botryosphaeria canker in Uganda
<p>The study assessed susceptibility of the nine commonly grown <i>Eucalyptus</i> clones to <i>Neofusicoccum</i> species associated with Botryosphaeria canker in Uganda. The inoculation trials indicated that susceptibility of <i>Eucalyptus</i> hybrids differed significantly (p=0.000), clones GU609, GU7, GC578, and GC796 exhibiting a higher tolerance than GC784, GC550, GU8, GC514 and GC540. The results further revealed that <i>N. parvum</i> was more pathogenic than <i>N. kwambonambiense</i>. The generated information can be exploited by expanding the growing of tolerant hybrids in areas with high Botryosphaeria canker disease pressure.</p>
Susceptibility of Eucalyptus hybrid clones to Botryosphaeria canker in Uganda
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FIGURE 4 in Interesting Botryosphaeria (Botryosphaeriaceae) associated with Magnolia species in Thailand: Additions of two new host records with their lifestyles
FIGURE 4. Botryosphaeria kuwatsukai (HKAS 107100, new host and geographical record). a–c. Appearance of ascomata on substrate. d, e. Sections through ascomata. f. Peridium. g–i. Asci. j–m. Ascospores. Scale bars: a–c = 500 μm, d, e = 50 μm, f = 10 μm, g–i = 20 μm, j–m = 5 μm.
FIGURE 1 in Interesting Botryosphaeria (Botryosphaeriaceae) associated with Magnolia species in Thailand: Additions of two new host records with their lifestyles
FIGURE 1. Phylogram generated from maximum likelihood analysis resulting from single genes; (a) ITS, (b) tef1, (c) tub2.
sRNA profiling in Botryosphaeria dothidea reveals a differentially expressed miRNA named Bdo-milR-204 response to heat stress
GEO Series GSE111649. Botryosphaeria dothidea. 3 samples. Type: Non-coding RNA profiling by high throughput sequencing.
RNA-seq profiling in Botryosphaeria dothidea reveals differentially expressed genes response to heat stress
GEO Series GSE113083. Botryosphaeria dothidea. 3 samples. Type: Expression profiling by high throughput sequencing.
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