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796 results for “oak species”
Figure 1 from: Morano E, Bonal R (2018) Araneus bonali sp. n., a novel lichen-patterned species found on oak trunks (Araneae, Araneidae). ZooKeys 779: 119-145. https://doi.org/10.3897/zookeys.779.26944
Figure 1 Right palp of Araneusbonali sp. n. A ventral B mesal C expanded pedipalp. Abbreviations: c – conductor; cy – cymbium; dh – distal hematodocha; e – embolus; fe – femur; ma – median apophysis; p – patella; r- radix; s – stipes, sta – subterminal apophysis; t – tegulum; ta – terminal apophysis, ti – tibia.
Figure 4 from: Morano E, Bonal R (2018) Araneus bonali sp. n., a novel lichen-patterned species found on oak trunks (Araneae, Araneidae). ZooKeys 779: 119-145. https://doi.org/10.3897/zookeys.779.26944
Figure 4 Araneusbonali sp. n., female under stereoscopic binocular microscope. A dorsal view B ventral view C lateral view (dimensions in mm).
Figure 3 from: Morano E, Bonal R (2018) Araneus bonali sp. n., a novel lichen-patterned species found on oak trunks (Araneae, Araneidae). ZooKeys 779: 119-145. https://doi.org/10.3897/zookeys.779.26944
Figure 3 Images of an Araneusbonali sp. n. female and the surface of an oak trunk showing the lichen mimicry of this spider species.
Figure 7 from: Morano E, Bonal R (2018) Araneus bonali sp. n., a novel lichen-patterned species found on oak trunks (Araneae, Araneidae). ZooKeys 779: 119-145. https://doi.org/10.3897/zookeys.779.26944
Figure 7 Concatenated mitochondrial cox1 and nuclear 28S genes phylogeny. Araneusbonali sp. n. underlined in green within the Holartic Araneus sequences available at GenBank or BOLD (accession codes shown in Table 3). The red-coloured frame shows the clade corresponding to the Araneusdiadematus group. Tree topology was inferred using Bayesian inference analysis (GTR + I + Gamma substitution model).
Figure 6 from: Morano E, Bonal R (2018) Araneus bonali sp. n., a novel lichen-patterned species found on oak trunks (Araneae, Araneidae). ZooKeys 779: 119-145. https://doi.org/10.3897/zookeys.779.26944
Figure 6 Gene tree of the nuclear gene 28SrRNA. Araneusbonali sp. n. underlined in red. Sequences for all species except Araneusbonali sp. n. were downloaded from GenBank (accession codes shown besides the species name). Tree topology was inferred using Bayesian inference analyses (GTR + I + Gamma substitution model).
Figure 9 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 9 Morphology of Dendrostomaqinlingense from Quercuswutaishanica (BJFC-S1539). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidiogenous cells F Conidia. Scale bars: 1 mm (A); 0.5 mm (B–D); 10 μm (E–G).
Figure 8 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 8 Morphology of Dendrostomaparasiticum from Quercuswutaishanica (BJFC-S1570). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidia F Conidiogenous cells. Scale bars: 2 mm (A); 1 mm (B); 0.5 mm (C, D); 10 μm (E–G).
Figure 6 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 6 Morphology of Dendrostomachinense from Castaneamollissima (BJFC-S1563). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidia F Conidiogenous cells. Scale bars: 1 mm (A); 0.5 mm (B–D); 10 μm (E–G).
Figure 5 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 5 Morphology of Dendrostomacastaneicola from Castaneamollissima (BJFC-S1551). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidia F Conidiogenous cells. Scale bars: 1 mm (A); 0.5 mm (B–D); 5 μm (E, G); 10 μm (F).
Figure 13 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 13 Dendrostoma cultures on PDA after 1 month at 25 °C, AD.auroraeBD.castaneaeCD. castaneicolaDD.chinenseED.dispersumF–GD.osmanthiHD.parasiticumID.qinlingenseJD.quercus; KD.shaanxienseLD.shandongense.
Figure 2 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 2 Phylogenetic tree based on an MP analysis of a combined DNA dataset of ITS, LSU, TEF1-α and RPB2 gene sequences for the species of Dendrostoma. Bootstrap values ≥ 50% for MP and ML analyses are presented at the branches. Isolates representing ex-type material are marked with *.
Figure 3 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 3 Morphology of Dendrostomaaurorae from Castaneamollissima (BJFC-S1561). A–C Habit of conidiomata on branches D Transverse section of conidioma E Longitudinal section through conidioma F, H Conidia G Conidiogenous cells. Scale bars: 1 mm (A); 0.5 mm (B, C, E); 0.2 mm (D); 5 μm (F, H); 10 μm (G).
Figure 4 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 4 Morphology of Dendrostomacastaneae from Castaneamollissima (BJFC-S1553). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidia F Conidiogenous cells. Scale bars: 1 mm (A–D); 10 μm (E–G).
Figure 12 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 12 Morphology of Dendrostomashandongense from Castaneamollissima (BJFC-S1567). A–C Habit of conidiomata on branches D Transverse section of conidioma E Longitudinal section through conidioma F Conidiogenous cells G Conidia. Scale bars: 1 mm (A); 0.3 mm (B–D); 5 μm (F); 5 μm (G).
Figure 10 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 10 Morphology of Dendrostomaquercus from Quercus sp. (BJFC-S1547). A–C Habit of psedostromata on branches D Transverse section of pseudostroma E, H Habit of conidiomata on branches F Transverse section of conidioma G Longitudinal section through conidioma I Conidiogenous cells producing dimorphic conidia J Secondary conidia K Asci and ascospores L Ascospores M Primary conidia. Scale bars: 1 mm (A, H); 0.5 mm (B–G); 10 μm (I, K–M); 5 μm (J).
Figure 11 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 11 Morphology of Dendrostomashaanxiense from Castaneamollissima (BJFC-S1549). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidia F Conidiogenous cells. Scale bars: 1 mm (A); 0.5 mm (B–D); 10 μm (E–G).
Figure 7 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 7 Morphology of Dendrostomadispersum from Quercus sp. (BJFC-S1537). A, B Habit of conidiomata on branches C Transverse section of conidioma D Longitudinal section through conidioma E, G Conidiogenous cells F Conidia. Scale bars: 1 mm (A); 0.5 mm (B–D); 10 μm (E, F), 5 μm (G).
Figure 1 from: Jiang N, Fan X-L, Crous PW, Tian C-M (2019) Species of Dendrostoma (Erythrogloeaceae, Diaporthales) associated with chestnut and oak canker diseases in China. MycoKeys 48: 67-96. https://doi.org/10.3897/mycokeys.48.31715
Figure 1 Chestnut plantations and Dendrostoma canker symptoms. A A chestnut plantation on the mountain B A chestnut plantation on the plain C Collection of the dead trees killed by Dendrostoma pathogens D–HDendrostoma canker symptoms on host branches.
Supplementary material 2 from: Naseer A, Khalid AN, Healy R, Smith ME (2019) Two new species of Hygrophorus from temperate Himalayan Oak forests of Pakistan. MycoKeys 56: 33-47. https://doi.org/10.3897/mycokeys.56.30280
: Data type: media
Supplementary material 1 from: Naseer A, Khalid AN, Healy R, Smith ME (2019) Two new species of Hygrophorus from temperate Himalayan Oak forests of Pakistan. MycoKeys 56: 33-47. https://doi.org/10.3897/mycokeys.56.30280
: Data type: media
ScienceDex guides
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.