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633 results for “Kd”
Figure 1 from: Samarakoon BC, Wanasinghe DN, Samarakoon MC, Phookamsak R, McKenzie EH.C, Chomnunti P, Hyde KD, Lumyong S, Karunarathna SC (2020) Multi-gene phylogenetic evidence suggests Dictyoarthrinium belongs in Didymosphaeriaceae (Pleosporales, Dothideomycetes) and Dictyoarthrinium musae sp. nov. on Musa from Thailand. MycoKeys 71: 101-118. https://doi.org/10.3897/mycokeys.71.55493
Figure 1 Maximum Likelihood tree revealed by RAxML from an analysis of SSU, LSU and ITS and tef1-α sequence data of the genera of Didymosphaeriaceae, showing the phylogenetic position of Dictyoarthrinium musae (MFLUCC 20-0105, MFLUCC 20-0106) and D. sacchari (MFLUCC 20-0107). ML bootstrap supports (≥ 60%) and Bayesian posterior probabilities (≥ 0.95 BYPP) are given above the branches, respectively. The tree is rooted with Bambusistroma didymosporum (MFLU 15-0057 and MFLU 15-0058). Strains generated in this study are indicated in brown bold type. Ex-type strains are indicated in black bold. The scale bar represents the expected number of nucleotide substitutions per site.
Figure 4 from: Samarakoon BC, Wanasinghe DN, Samarakoon MC, Phookamsak R, McKenzie EH.C, Chomnunti P, Hyde KD, Lumyong S, Karunarathna SC (2020) Multi-gene phylogenetic evidence suggests Dictyoarthrinium belongs in Didymosphaeriaceae (Pleosporales, Dothideomycetes) and Dictyoarthrinium musae sp. nov. on Musa from Thailand. MycoKeys 71: 101-118. https://doi.org/10.3897/mycokeys.71.55493
Figure 4 Morphology of conidia and conidiophores of previously described Dictyoarthrinium species a, dD. microsporumb, iD. synnematicumc, eD. lilliputeumf, jD. africanumg, h, kD. rabaulense. Scale bars: 20 μm (a, c, d, e); 10 μm (b, i). Magnification × 650 (f, g, h, j, k). Redrawn from Rao and Rao (1964), Ellis (1971), Kobayasi et al. (1971) and Somrithipol (2007).
Figure 4 from: Kang I, Long KD, Sharkey MJ, Whitfield JB, Lord NP (2020) Orientocardiochiles, a new genus of Cardiochilinae (Hymenoptera, Braconidae), with descriptions of two new species from Malaysia and Vietnam. ZooKeys 971: 1-15. https://doi.org/10.3897/zookeys.971.56571
Figure 4 A Distribution map of Orientocardiochiles joeburrowi sp. nov. in Wang Kelian B distribution map of O. joeburrowi sp. nov. in Malaysia.
Figure 2 from: Kang I, Long KD, Sharkey MJ, Whitfield JB, Lord NP (2020) Orientocardiochiles, a new genus of Cardiochilinae (Hymenoptera, Braconidae), with descriptions of two new species from Malaysia and Vietnam. ZooKeys 971: 1-15. https://doi.org/10.3897/zookeys.971.56571
Figure 2 Orientocardiochiles joeburrowi sp. nov., holotype. A Lateral habitus B dorsal habitus C ventral metasoma; arrow: hypopygium D dorsal propodeum and metasomal terga 1–3; arrow: plateau-like projection E dorsal mesonotum F anterior head G claws.
Figure 6 from: Kang I, Long KD, Sharkey MJ, Whitfield JB, Lord NP (2020) Orientocardiochiles, a new genus of Cardiochilinae (Hymenoptera, Braconidae), with descriptions of two new species from Malaysia and Vietnam. ZooKeys 971: 1-15. https://doi.org/10.3897/zookeys.971.56571
Figure 6 A Distribution map of Orientocardiochiles nigrofasciatus sp. nov. in Cat Tien NP B distribution map of O. nigrofasciatus sp. nov. in Vietnam.
Figure 5 from: Kang I, Long KD, Sharkey MJ, Whitfield JB, Lord NP (2020) Orientocardiochiles, a new genus of Cardiochilinae (Hymenoptera, Braconidae), with descriptions of two new species from Malaysia and Vietnam. ZooKeys 971: 1-15. https://doi.org/10.3897/zookeys.971.56571
Figure 5 Orientocardiochiles nigrofasciatus sp. nov. A Lateral habitus (holotype, female) B head (dorsal view) C head (anterior view) D head (lateral view) E dorsal mesonotum F lateral mesonotum G metasoma (dorsal view) H forewing I hind wing J propodeum K hamuli on hind wing L hind tarsal claw M ventro-lateral mesonotum N ventral metasoma O apex of ovipositor sheath (lateral view).
Figure 1 from: Kang I, Long KD, Sharkey MJ, Whitfield JB, Lord NP (2020) Orientocardiochiles, a new genus of Cardiochilinae (Hymenoptera, Braconidae), with descriptions of two new species from Malaysia and Vietnam. ZooKeys 971: 1-15. https://doi.org/10.3897/zookeys.971.56571
Figure 1 Austerocardiochiles pollinator, paratype. A Lateral habitus B dorsal habitus C ventral metasoma; arrow: median enfold on hypopygium D dorsal propodeum and metasomal terga 1 to 3; arrow: lens-shaped area E dorsal mesonotum F anterior head G claws.
Figures 2-12 from: Oanh NT, Long KD, Mai PQ, Dzuong NV (2020) First record of the genus Trispinaria Quicke, 1986 (Hymenoptera, Braconidae, Braconinae) in Vietnam, with descriptions of two new species. ZooKeys 996: 107-119. https://doi.org/10.3897/zookeys.996.56562
Figures 2-12 Trispinaria seminigra Long, sp. nov., holotype, female. 2 head, frontal view 3 head, dorsal view 4 propodeum 5 mesopleuron 6 mesonotum 7 fifth and sixth metasomal tergites, lateral view 8 apex of ovipositor 9 metasoma 10 first and second metasomal tergites, lateral view 11 fore wing 12 hind wing.
Figures 14-24 from: Oanh NT, Long KD, Mai PQ, Dzuong NV (2020) First record of the genus Trispinaria Quicke, 1986 (Hymenoptera, Braconidae, Braconinae) in Vietnam, with descriptions of two new species. ZooKeys 996: 107-119. https://doi.org/10.3897/zookeys.996.56562
Figures 14-24 Trispinaria vietnamica Long, sp. nov., holotype, female 14 head, frontal view 15 head, dorsal view 16 mesonotum 17 mesopleuron 18 Fore wing 19 hind telotarsus and tarsal claw 20 apex of ovipositor 21 hind wing 22 propodeum 23 first and second metasomal tergites, lateral view 24 fifth and sixth metasomal tergites, lateral view.
Supplementary material 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Dataset for molecular analyses
Figure 5 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 5 Terriera sigmoideosporaa, b apothecia observed under the dissecting microscope c section of covering stroma d median vertical section through an apothecium e immature ascus f paraphyses and asci in various states of maturity g, h ascospores. Note: c–h mounted in water. Scale bar: 1 mm (a), 500 µm (b), 100 µm (c), 20 µm (d–h).
Figure 3 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 3 Terriera karstia, b apothecia observed under the dissecting microscope c detail of covering stroma in vertical section d vertical section through an apothecium e, f asci in various states of maturity g apices of paraphyses h, i ascospores. Note: c–i mounted in water. Scale bar: 1 mm (a), 500 µm (b), 20 µm (c, e, f), 100 µm (d), 10 µm (g, i).
Figure 2 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 2 Hypoderma paralinderaea, b apothecia observed under a dissecting microscope in face view c vertical section through an apothecium d lips adjacent to the top of covering stroma e section of covering stroma f section of basal stroma g paraphyses and asci in various states of maturity h immature ascus i, j ascospores. Note: c–j mounted in water. Scale bar: 1 mm (a), 500 µm (b), 200 µm (c), 20 µm (d, g, h), 10 µm (e, i, j), 5 µm (f).
Figure 1 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 1 Phylogram of Rhytismataceae is presented as the best tree revealed by MP analysis, based on the concatenated LSU-ITS-mtSSU sequence dataset. MP bootstrap support values (MPBP ≥ 50%) and Bayesian inference posterior probabilities (BYPP ≥ 0.95) are shown near the nodes. The tree is rooted to Marthamyces emarginatus (ICMP 22854), the scale bar showing 10 changes. Type strains are indicated in bold and new sequences, generated in this study, are given in red.
Figure 4 from: Zhang J-F, Liu J-K, Hyde KD, Ekanayaka AH, Liu Z-Y (2020) Morpho-phylogenetic evidence reveals new species in Rhytismataceae (Rhytismatales, Leotiomycetes, Ascomycota) from Guizhou Province, China. MycoKeys 76: 81-106. https://doi.org/10.3897/mycokeys.76.58465
Figure 4 Terriera meitanensisa habit of apothecia on substrate b, c apothecia observed under the dissecting microscope in face view d vertical section through an apothecium e covering stroma f triangular space in section between the covering stroma and basal stroma g basal stroma h paraphyses with anastomoses amongst asci in various states of maturity i, j immature asci k, l ascospores. Note: d–l mounted in water. Scale bar: 1 cm (a), 1 mm (b), 500 µm (c), 100 µm (d), 10 µm (e, g, k, l), 30 µm (f), 20 µm (h–j).
Supplementary material 1 from: Zhang S-N, Hyde KD, Jones EBG, Jeewon R, Cheewangkoon R, Liu J-K (2019) Striatiguttulaceae, a new pleosporalean family to accommodate Longicorpus and Striatiguttula gen. nov. from palms. MycoKeys 49: 99-129. https://doi.org/10.3897/mycokeys.49.30886
Phylogenetic analysis
Figure 3 from: Hurdeal VG, Gentekaki E, Hyde KD, Nguyen TTT, Lee HB (2021) Novel Mucor species (Mucoromycetes, Mucoraceae) from northern Thailand. MycoKeys 84: 57-78. https://doi.org/10.3897/mycokeys.84.71530
Figure 3 Mucor chiangraiensis (MFLU 21–0079) a–e columella with and without collars f, g sporangia h–i chlamydospores j sporangiospores k front and reverse of the colony grown in MEA. Scale bars: 10 µm (a–j).
Figure 2 from: Hurdeal VG, Gentekaki E, Hyde KD, Nguyen TTT, Lee HB (2021) Novel Mucor species (Mucoromycetes, Mucoraceae) from northern Thailand. MycoKeys 84: 57-78. https://doi.org/10.3897/mycokeys.84.71530
Figure 2 Mucor aseptatophorus (MFLU 21–0145) a–c columella with collar d branching of sporangiophores e, f developing sporangium g short sporangiophore with sporangium h rhizoids i granular content in mycelium j sporangiospores k front and reverse of the colony in MEA. Scale bars: 10 µm (a–c, e–h, j); 20 µm (d, i).
Figure 4 from: Hurdeal VG, Gentekaki E, Hyde KD, Nguyen TTT, Lee HB (2021) Novel Mucor species (Mucoromycetes, Mucoraceae) from northern Thailand. MycoKeys 84: 57-78. https://doi.org/10.3897/mycokeys.84.71530
Figure 4 Mucor nederlandicus (MFLU 21–007) a-c columella with highly reduced collar d sterile sporangium e columella with visible collar f-h chlamydospores i mature sporangia j sporangiospores k front and reverse of the colony in MEA. Scale bars: 20 µm (a–e, i); 10 µm (f–h).
Figure 4 from: Karimi O, Chethana KWT, de Farias ARG, Asghari R, Kaewchai S, Hyde KD, Li Q (2024) Morphology and multigene phylogeny reveal three new species of Distoseptispora (Distoseptisporales, Distoseptisporaceae) on palms (Arecaceae) from peatswamp areas in southern Thailand. MycoKeys 102: 55-81. https://doi.org/10.3897/mycokeys.102.112815
Figure 4 Distoseptispora narathiwatensis (MFLU 23-0278, holotype) a host material b colonies on the substrate c–e conidiophores and conidia f conidiogenous cell g–j conidia k, l culture on PDA. Scale bars: 100 μm (b); 50 μm (c–e); 10 μm (f–j).
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.