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10 results for “plant debris”
Figs 23–27 in The genus Xylocoris found from plant debris in Thailand, with description of a new species of the subgenus Arrostelus (Hemiptera: Heteroptera: Anthocoridae)
Figs 23–27. Xylocoris (Arrostelus) ampoli Yamada & Yasunaga sp. nov. 23, 24 – pygophore with paramere, dorsal (23) and ventral (24) views; 25–27 – paramere, three different aspects. Scale bars: 0.1 mm for 23, 24; 0.05 mm for 25–27.
Figs 17–22 in The genus Xylocoris found from plant debris in Thailand, with description of a new species of the subgenus Arrostelus (Hemiptera: Heteroptera: Anthocoridae)
Figs 17–22. Xylocoris (Arrostelus) ampoli Yamada & Yasunaga sp. nov., male (17, 19–22) and female (18). 17 – head and pronotum, macropterous form, dorsal view; 18 – hemelytron, macropterous form, dorsal view; 19 – ditto, brachypterous form, dorsal view: 20 – right fore leg, outer view; 21 – right middle leg, outer view; 22 – right hind leg, outer view. Scale bars: 0.5 mm for 18, 19; 0.3 mm for 17; 0.2 mm for 20–22.
Figs 13–16 in The genus Xylocoris found from plant debris in Thailand, with description of a new species of the subgenus Arrostelus (Hemiptera: Heteroptera: Anthocoridae)
Figs 13–16. SEM images of Xylocoris (Arrostelus) ampoli Yamada & Yasunaga sp. nov., male (16) and female (13–15). 13 – ostiolar peritreme and evaporatorium, left lateroventral view; 14 – ostiolar peritreme, left lateroventral view; 15 – supracoxal area, left lateroventral view; 16 – protibia, ventral view. Scale bars: 0.05 mm.
Figs 5–12 in The genus Xylocoris found from plant debris in Thailand, with description of a new species of the subgenus Arrostelus (Hemiptera: Heteroptera: Anthocoridae)
Figs 5–12. Xylocoris (Arrostelus) ampoli Yamada & Yasunaga sp. nov. (5–8, 11, 12) and X. (Proxylocoris) cerealis Yamada & Yasunaga, 2006 (9, 10). 5, 6 – brachypterous form, male holotype, dorsal (5) and lateral (6) views; 7, 8 – macropterous form, male, dorsal (7) and lateral (8) views; 9, 10 – male, dorsal (9) and lateral (10) views; 11, 12 – head and pronotum, brachypterous (11, female) and macropterous (12, male) forms, dorsal view. Scale bars: 1.0 mm for 5–10; 0.3 mm for 11, 12.
Figs 1–4 in The genus Xylocoris found from plant debris in Thailand, with description of a new species of the subgenus Arrostelus (Hemiptera: Heteroptera: Anthocoridae)
Figs 1–4. Habitus images of Xylocoris spp., living individuals (Thailand). 1, 2 – X. (Arrostelus) ampoli Yamada & Yasunaga sp. nov., brachypterous form; 3 – ditto, macropterous form; 4 – X. (Proxylocoris) cerealis Yamada & Yasunaga, 2006.
Erosion data of debris flows on banks with herbaceous plants
Open the record for dataset details and reuse information.
Figure 4 from: Nie Y, Cai Y, Gao Y, Yu D-S, Wang Z-M, Liu X-Y, Huang B (2020) Three new species of Conidiobolus sensu stricto from plant debris in eastern China. MycoKeys 73: 133-149. https://doi.org/10.3897/mycokeys.73.56905
Figure 4 Conidiobolus variabilis sp. nov. a Colony on PDA after 3 d at 21 °C b mycelia rarely branched at the colony edge c mycelia d, e primary conidiophores bearing primary conidia f–i primary conidia with different shapes j secondary conidia arising from primary conidia k microconidia arising from conidia l globose microconidia m ellipsoidal microconidia. Scale bars: 10 mm (a); 100 μm (b); 20 μm (c–m).
Figure 3 from: Nie Y, Cai Y, Gao Y, Yu D-S, Wang Z-M, Liu X-Y, Huang B (2020) Three new species of Conidiobolus sensu stricto from plant debris in eastern China. MycoKeys 73: 133-149. https://doi.org/10.3897/mycokeys.73.56905
Figure 3 Conidiobolus taihushanensis sp. nov. a colony on PDA after 3 d at 21 °C b mycelia unbranched at the colony edge c young mycelia d, e primary conidiophores arising from mycelia segments f two branches germinated from hyphal bodies and each bearing a primary conidium (arrows) g– j two, three, four or five branches germinated from hyphal bodies and each bearing a primary conidium k globose to subglobose primary conidia l secondary conidia arising from primary conidia m zygospores formed between adjacent segments of the same hypha n young zygospores o mature zygospores. Scale bars: 10 mm(a); 100 μm (b, c, f); 20 μm (d, e, g–o).
Figure 2 from: Nie Y, Cai Y, Gao Y, Yu D-S, Wang Z-M, Liu X-Y, Huang B (2020) Three new species of Conidiobolus sensu stricto from plant debris in eastern China. MycoKeys 73: 133-149. https://doi.org/10.3897/mycokeys.73.56905
Figure 2 Conidiobolus bifurcatus sp. nov. a Colony on PDA after 3 d at 21 °C b mycelium c septate mycelium and distended segments d, e primary conidiophores bearing primary conidia f, g primary conidia h, i a single secondary conidium produced from primary conidia j two secondary conidia arising from a branched conidiophore k secondary conidia falling from primary conidia l the relic of secondary conidiophores on secondary conidia (arrows) m microconidia arising from a conidium n, o globose microconidia p, q ellipsoidal microconidia r zygospores formed between adjacent segments of the same hypha s zygospores. Scale bars: 10 mm (a); 100 μm (b); 20 μm (c–s).
Figure 1 from: Nie Y, Cai Y, Gao Y, Yu D-S, Wang Z-M, Liu X-Y, Huang B (2020) Three new species of Conidiobolus sensu stricto from plant debris in eastern China. MycoKeys 73: 133-149. https://doi.org/10.3897/mycokeys.73.56905
Figure 1 Phylogenetic tree of Conidiobolus s.s. reconstructed by maximum likelihood analyses of nucLSU, mtSSU and TEF1 sequences, with six Conidiobolus s.l. species as outgroups. Three new species of Conidiobolus are shown in bold. Maximum parsimony bootstrap values (≥ 70%) / Maximum likelihood bootstrap values (≥ 70%) / Bayesian posterior probabilities (≥ 0.95) of each clade are indicated along branches. Scale bar indicates substitutions per site.
ScienceDex guides
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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.