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45 results for “Metarhizium”

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zenodo32/100

FIGURE 3 in Papiliomyces puniceum and Metarhizium lymantriidae: two new species from the Gaoligong Mountains in southwestern China

FIGURE 3. Phylogenetic tree of Metarhizium and its related genera based on ML analysis of six-locus (5.8S-ITS, nrSSU, nrLSU, EF-1α, RPB1 and RPB2) dataset. * Denotes an ex-type isolate

opennotspecifiedApr 2023View details →
zenodo32/100

FIGURE 2 in Papiliomyces puniceum and Metarhizium lymantriidae: two new species from the Gaoligong Mountains in southwestern China

FIGURE 2. Metarhizium lymantriidae (BUM 818). A. The larva of noctuid infected by the related species, M. rileyi. B. The larva of tussock moth infected by M. lymantriidae. C. Colony on PDA medium, 16 days. D. Colony reverse. E, F. Phialides with conidia chain. G, H. Conidia. I. Hyphae and phialide with budding conidia. Scale bars: A–D = 1 cm, E–I = 5 µm.

opennotspecifiedApr 2023View details →
zenodo32/100

FIGURE 1 in Papiliomyces puniceum and Metarhizium lymantriidae: two new species from the Gaoligong Mountains in southwestern China

FIGURE 1. Papiliomyces puniceum (BUM838). A. Stroma. B. stroma on larva of Hepialidae. C. colony on PDA medium, 16 days. D–F. Conidiogenous cells and immature conidia. G. conidia (arrow "a" points at immature conidia, arrow "b" points at mature conidia). Scale bars: A–C = 1 cm, D–F = 10 µm, G = 5 µm.

opennotspecifiedApr 2023View details →
dryad32/100

Chemical analyses and insect interactions of an easO mutant of Metarhizium brunneum

Open the record for dataset details and reuse information.

publicJun 2021View details →
zenodo28/100

Raw data for publication: "Effect of Probiotics on Tenebrio molitor Larval Development and Resistance against the Fungal Pathogen Metarhizium brunneum"

Open the record for dataset details and reuse information.

opencc-by-4.0Dec 2022View details →
zenodo28/100

Figure 3 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970

Figure 3 Principal component analysis (PCA) and hierarchical clustering of the observations based on the fungal isolations. aPC1 vs. PC2. bPC1 vs. PC3. cPC2 vs. PC3. d PCA 3D plot e Hierarchical clustering dendrogram to access the ecological proximities of obtained fungi based on their respective isolation profiles. Software R 4.3.2 was used to obtain the PCA plots and the hierarchical clustering. There was no fungal isolation from hedgerows from the farm Granja when bait-insect T.molitor was used and hence, it could not be included in any of the analysis which relies on proportions, i.e. PCA plots, hierarchical clustering. To reduce any bias, the authors also discarded the soil samples (N=1) which yielded the fungal isolations, when G.mellonella was used, from the hedgerows of the farm Granja. The blue balls represent relatively more frequent EPF, i.e. Beauveriabassiana, Beauveriapseudobassiana, Clonostachysroseaf.rosea, Cordycepscicadae, Purpureocilliumlilacinum and Metarhiziumrobertsii. The red balls represent other fungi such as Cordyceps sp., Lecanicilliumaphanocladii, Lecanicilliumdimorphum, Metarhiziumguizhouense and Purpureocilliumlavendulum. Hierarchical clustering based dendrogram classified isolated EPF into two clusters, i.e. rarely occurring EPF (cluster 1) and relatively more frequent EPF (cluster 2). Abbreviations used are: Beauveriabassiana (B.b), Beauveriapseudobassiana (B.p), Cordycepscicadae (C.c), Cordyceps sp. (C.sp), Lecanicilliumaphanocladii (L.a), Lecanicilliumdimorphum (L.d), Metarhiziumguizhouense (M.g), Purpureocilliumlavendulum (P.la), Purpureocilliumlilacinum (P.l), Clonostachysroseaf.rosea (C.rr) and Metarhiziumrobertsii (M.r).

opencc-by-4.0Aug 2018View details →
zenodo28/100

Figure 2 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970

Figure 2 Effect of insect baiting and habitat-type on the isolation of the entomopathogenic fungi. a Occurrence (% of soil samples ± SE) of entomopathogenic fungi when different bait-insects were incorporated b Occurrence (% of soil samples ± SE) of entomopathogenic fungi when soils were collected from different habitat-types. Bars with asterisk (*) show significant isolations, i.e. (P<0.05).

opencc-by-4.0Aug 2018View details →
zenodo28/100

Figure 1 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970

Figure 1 Geographic coordinates and altitudes of the farms and details of the soil sampling strategy adopted. a Details of the six farms of the Douro Wine Region, Portugal, which were considered in this study b Details of the soil sampling strategy from vineyards and adjacent hedgerows.

opencc-by-4.0Aug 2018View details →
zenodo28/100

Supplementary material 1 from: Sharma L, Oliveira I, Torres L, Marques G (2018) Entomopathogenic fungi in Portuguese vineyards soils: suggesting a 'Galleria-Tenebrio-bait method' as bait-insects Galleria and Tenebrio significantly underestimate the respective recoveries of Metarhizium (robertsii) and Beauveria (bassiana). MycoKeys 38: 1-23. https://doi.org/10.3897/mycokeys.38.26970

Supplementary tables :

opencc-zeroAug 2018View details →
zenodo28/100

FIGURE 4 in Delimitation of a novel member of genus Metarhizium (Clavicipitaceae) by phylogenetic and network analysis

FIGURE 4. Reconstruction of Neighbor-Net network of Metarhizium synnematis and Metarhizium sp.

opennotspecifiedDec 2016View details →
geo24/100

Comparative genomics using microarrays studied in Metarhizium anisopliae 2575 and 324

GEO Series GSE14846. Metarhizium anisopliae. 3 samples. Type: Genome variation profiling by array.

openGEO-OpenJun 2009View details →
geo24/100

Comparative transcriptomics reveal contrasting fungal strategies in a plant pathogen (Fusarium graminearum) versus an endophyte (Metarhizium anisopliae) during initial host colonization

GEO Series GSE277787. Fusarium graminearum. 24 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenNov 2024View details →
zenodo24/100

Efficacy of Metarhizium anisopliae (Mechnikov) Sorokin ICIPE 69 against the melon fly Zeugodacus cucurbitae (Coquillett) infesting courgette (Cucurbita pepo L.) in field cages

<p>See readme text.&nbsp;</p>

opencc-by-4.0Jun 2023View details →
geo24/100

Transcription factor Msn2 dependent gene expression in two entomopathogen fungi, Beauveria bassiana and Metarhizium robertsii under thermal and oxidaitve stresses

GEO Series GSE40765. Beauveria bassiana; Metarhizium robertsii. 8 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenFeb 2015View details →
geo20/100

Profound effect of a small cysteine-free protein (Cfp1) on genomic expression of Metarhizium robertsii

GEO Series GSE197269. Metarhizium robertsii ARSEF 23. 6 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenFeb 2022View details →
geo20/100

Genome-wide analysis of DNA methylation Metarhizium robertsii

GEO Series GSE78019. Metarhizium robertsii. 3 samples. Type: Methylation profiling by high throughput sequencing.

openGEO-OpenDec 2016View details →
zenodo20/100

FIGURE 3 in Metarhizium macrosemiae sp. nov. and the anamorph of M. guniujiangense on adult cicada from Guniujiang Nature Preserve, southeastern China

FIGURE 3. Metarhizium guniujiangense (GNJ20200814-48, RCEF 6758). A. Fungus on adult cicada. B. Macroconidia on insect host. C. Microconidia on insect host. D–E. Colonies on SDAY/4. F. Conidiophores bearing phialides and conidia on SDAY/4. G. Macro- and microconidia on SDAY/4. H–I. Colonies on PDA. J. Conidiophores bearing phialides and conidia on PDA. K. Macro- and microconidia on PDA. L–M. Colonies on OA. N. Conidiophores bearing phialides and conidia on OA. O. Macro- and microconidia on OA. Scale bars: A = 10 mm, D–E, H–I, L–M = 15 mm, B–C, F–G, J–K, N–O = 10 μm.

opennotspecifiedDec 2022View details →
geo20/100

Comparative transcriptomics of the model entomopathogenic fungi Metarhizium anisopliae and M. acridum during infection on different insects

GEO Series GSE24938. Metarhizium acridum; Metarhizium anisopliae. 4 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenJan 2011View details →
geo20/100

Mycelium growth and conidiogenesis of Metarhizium robertsii

GEO Series GSE80731. Metarhizium robertsii. 4 samples. Type: Expression profiling by high throughput sequencing.

openGEO-OpenFeb 2017View details →
geo20/100

Genome-wide analysis of DNA methylation in phenotypically degenerated Metarhizium robertsii

GEO Series GSE146251. Metarhizium robertsii ARSEF 2575. 2 samples. Type: Methylation profiling by high throughput sequencing.

openGEO-OpenMar 2020View details →

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