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202 results for “Bon”
FIG. 2 in Hygrophorus roseodiscoideus Bon & Chevassut: epitypification and updated biogeography of a poorly known but widespread thermophilous species
FIG. 2. — Macro- and microcharacters of the epitype of Hygrophorus roseodiscoideus Bon & Chevassut. In situ photograph, violet hues are exaggerated as the photo has been taken with a flash. A, photo by P.-A. Moreau; B, pileipellis structure; C, lamellar trama structure; D, spore drawing; E, basidia drawing of PAM00103101 (LIP[LIP 0402283]). Scale bars: A, 1 cm; B, C, 100 µm; D, E, 10 µm.
FIG. 1 in Hygrophorus roseodiscoideus Bon & Chevassut: epitypification and updated biogeography of a poorly known but widespread thermophilous species
FIG. 1. — Original material of Hygrophorus roseodiscoideus Bon & Chevassut: A, hand-written description sheet and color drawing of specimens of the holotype of H. roseodiscoideus by M. Bon; B, photograph of the dried basidiomata (holo-, Bon 84391 kept in LIP).
FIG. 4 in Hygrophorus roseodiscoideus Bon & Chevassut: epitypification and updated biogeography of a poorly known but widespread thermophilous species
FIG. 4. — Basidiomata of Hygrophorus roseodiscoideus Bon & Chevassut: A, Czech Republic, Čtvrtě, photo by J. Holec (PRM[PRM 955166]); B, Czech Republic, Sivický les, photo by D. Dvořák (BRNU[BRNU 677820]); C, France, Cucuron, photo by D. Borgarino (DiBo041202); D, Hungary, Mt. Széchenyi-hegy, photo by B. Dima (DB 2020-11-12-2); E, Italy, Cipresseta S. Agnese, photo by E. Campo (EC16102825); F, Italy, Passo Cantoniera, photo by A. Hausknecht (WU[WU-Myc 25200]). All collections were sequenced. For full collection data, see section Additionnal material examined.
FIG. 6. — Russula nigrocarpa S.Y.Zhou, Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 6. — Russula nigrocarpa S.Y.Zhou, Y.Song & L.H.Qiu, sp. nov. (GDGM 79720, holotype): A, basidia; B, cheilocystidia; C, pleurocystidia; D, terminal elements of pileipellis; E, pileocystidia. Scale bars: A-E, 10 μm.
FIG. 1 in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 1. — Maximum Likelihood tree of Russula Pers. subg. Archaeae Buyck & V.Hofst. and Compactae (Fr.) Bon based on ITS sequences, bootstrap values higher than 70% were displayed around nodes. Scale bar: 0.03 substitutions.
FIG. 5. — Russula nigrocarpa S.Y.Zhou, Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 5. — Russula nigrocarpa S.Y.Zhou, Y.Song & L.H.Qiu, sp. nov. (GDGM 79720, holotype): A, B, fruiting bodies; C-E, pleurocystidia; F-H, pileocystidia; I, J, scanning electronic micrographs of basidiospores. Scale bars: A, B, 1 cm; C-H, 10 μm; I, J, 1 μm.
FIG. 8. — Russula ochrobrunnea S.Y.Zhou, Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 8. — Russula ochrobrunnea S.Y.Zhou, Y.Song & L.H.Qiu, sp. nov. (GDGM 79718, holotype): A, basidia; B, pleurocystidia; C, cheilocystidia; D, caulocystidia; E, terminal elements of pileipellis. Scale bars: A-D, 10 μm.
FIG. 2 in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 2. — Maximum Likelihood tree of Russula Pers. subg. Archaeae Buyck & V.Hofst. and Compactae (Fr.) Bon based on LSU-mtSSU-tef1-rpb2-rpb1 combined sequences, bootstrap values higher than 70% were displayed around nodes. Scale bar: 0.02 substitutions.
FIG. 4. — Russula latolamellata Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 4. — Russula latolamellata Y.Song & L.H.Qiu, sp. nov. (GDGM 79561, holotype): A, basidia; B, cheilocystidia; C, terminal elements of pileipellis; D, pleurocystidia. Scale bars: A-D, 10 μm.
FIG. 7. — Russula ochrobrunnea S.Y.Zhou, Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 7. — Russula ochrobrunnea S.Y.Zhou, Y.Song & L.H.Qiu, sp. nov. (GDGM 79718, holotype): A-D, fruiting bodies; E, F, scanning electronic micrographs of basidiospores. Scale bars: A-D, 1 cm; E, F, 1 μm.
FIG. 3. — Russula latolamellata Y.Song & L.H in Three novel species of Russula Pers. subg. Compactae (Fr.) Bon from Dinghushan Biosphere Reserve in southern China
FIG. 3. — Russula latolamellata Y.Song & L.H.Qiu, sp. nov. (GDGM 79561, holotype): A-D, fruiting bodies; E, F, scanning electronic micrographs of basidiospores. Scale bars: A-D, 1 cm; E, F, 1 μm.
Santa Barbara Channel Marine BON: genomics study on 16S primer comparison
This project examined the effects of 16S rRNA gene primer selection on population representation and community ecology of bacteria and archaea in the Santa Barbara Channel. Four 16S rRNA primer sets targeting different hypervariable regions of the gene were compared using both mock communities of known composition constructed from cloned 16S rRNA genes and field samples covering the annual cycle. Amplicon results were compared with shotgun metagenomes prepared from a subset of the field samples. The field samples included in the comparison study are subsets of two more extensive field programs in the Santa Barbara Channel. Samples included from the Plumes and Blooms transect times-series program were collected between February 2012 and August 2014. Samples from University-National Oceanographic Laboratory Systems cruise PS1103 (Wear et al. 2015; DOI: 10.1002/lno.10042) were collected in May 2011. All datasheets represent curated, processed output of the bioinformatics pipeline. Unprocessed sequencing data are archived with the National Center for Biotechnology Information, with accession numbers specified in the individual datasheets. Four dataset entities included primer testing on a known mock community (Entity #1 and #2) as well as the application of the primers to field samples (Entity #3) and shotgun metagenomes from a subset of field samples (Entity #4): 1) Cloned 16S genes used to construct the mock community. 2) Mock community sequencing results - relative abundance of each clone with each of 4 primer sets. 3) Field sequencing results - relative abundance of operational taxonomic units (OTUs) and weighted UniFrac distance matrices. 4) Metagenome results – taxonomic identities of individual 16S rRNA sequences identified in each metagenome. The funding source for this project is: the National Aeronautics and Space Administration Biodiversity and Ecological Forecasting program (Grant NNX14AR62A), the Bureau of Ocean and Energy Management Ecosystem Studies progr
Soil BON Earthworm - Community data template
<p>The Soil BON Earthworm consortium built a data template for everyone to use and format their data, so that it can be collated in a straightforward way. The template is an updated version of the one developed for the EUdaphobase COST Action <a href="https://www.zotero.org/google-docs/?ar5Q1g">(Tsiafouli et al. 2022)</a>. More information on Soil BON Earthworm initiative and the data templates created are available in the associated publication (insert DOI when available).</p><p>It is composed of different leaflets:</p><ol><li>"Readme": this leaflet contains all column names from the next leaflet and provides the necessary information to properly fill the information needed.</li><li>"Template to fill with data": this leaflet is composed of several columns where the data provider can enter the information on dataset, site, methodology and taxa sampled. This leaflet is to be filled with density data, and another file should be produced for biomass data.</li><li>"drop down list": this leaflet is non-modifiable and contains the different lists from which values are taken for certain variables, such as soil type which follow the WRB FAO classification <a href="https://www.zotero.org/google-docs/?XHAIOm">(IUSS Working Group WRB 2015)</a>.</li></ol>
PM_050386_B_Bon_Secours
<u>File Name</u>: PM_050386_B_Bon_Secours.jpg <br><u>Sublocation</u>: Bon-Secours <br><u>Location</u>: Péruwelz <br><u>Province</u>: Hainaut <br><u>Country</u>: Belgium <br><u>Header</u>: Vue de la rue. <br><u>Description</u>: Street view. <br><u>Keywords</u>: Architecture, Belgium, Bon-Secours (Péruwelz), Cultural heritage, Europe, Hainaut, My photography, Public site, Péruwelz <br><br><u>Author</u>: Photo: Paul M.R. Maeyaert <br><u>Copyright</u>: Paul M.R. Maeyaert <br>
Figure 1 in Soil BON Earthworm - A global initiative on earthworm distribution, traits, and spatiotemporal diversity patterns
Figure 1. Summary of essential steps of the earthworm sampling protocol.
Supplemental material to the article 'Are Grey Plovers true Jelly Bon lovers? First record of Grey Plovers (Pluvialis squatarola) deliberately feeding on Barrel Jellyfish (Rhizostoma pulmo) in the Western Palearctic'
<p>Video fragments documenting Grey Plover's feeding behaviour provided as Supplemental material to Ornis Fennica article 'Are Grey Plovers true Jelly Bon lovers? First record of Grey Plovers (<i>Pluvialis squatarola</i>) deliberately feeding on Barrel Jellyfish (<i>Rhizostoma pulmo</i>) in the Western Palearctic' </p><p>Article accepted on 1 December 2023.</p>
Îlot Bon Pasteur
Source: Objaverse 1.0 / Sketchfab
Land use and land cover in communities along the Bons Sinais estuary, Mozambique
<p><span>The Bons Sinais estuary (BSE) is one of the most important estuaries in the central region of the Mozambican coast. The BSE plays an important role as main source of food and income for many people living along the estuary. The present data contain information on the land use and cover of eight communities located along the Bons Sinais estuary, Mozambique, over the time period 2019-2020. The dataset was created by drawing shape files over high-resolution satellite imagens obtained from Bing and Google Satellites. All images were analysed using QGIS software. A total of 101 shapefiles were created. These files will help local managers and researchers to better understand the human use of the natural resources and landscape, as well as to predict impacts of the community's growth on natural resources in the BSE.</span></p>
On following pages: 20. Nile Bushbuck (Tragelaphus bon; 21. Lake Tana Bushbuck (Tragelaphus decula); 22. Ethiopian 24. Chobe Bushbuck (Tragelaphus ornatus); 25. Cape Bushbuck (Tragelaphus sylvaticus). Highlands Bushbuck (Tragelaphus meneliki); 23. Eastern Coastal Bushbuck (Tragelaphus fasciatus); in Bovidae
On following pages: 20. Nile Bushbuck (Tragelaphus bon; 21. Lake Tana Bushbuck (Tragelaphus decula); 22. Ethiopian 24. Chobe Bushbuck (Tragelaphus ornatus); 25. Cape Bushbuck (Tragelaphus sylvaticus). Highlands Bushbuck (Tragelaphus meneliki); 23. Eastern Coastal Bushbuck (Tragelaphus fasciatus);
Subspecies and Distribution. N.c.cephalotesPallas,1767—SulaIs(MangoleandSanana),CMoluccas(Buru,Am-bon,andSeram),TanimbarIs(Yamdena),andELesserSundaIs(Timor),althoughitisprobablyextinctonTimor. N. c. aplini Kitchener, 1995 — Sulawesi. in Pteropodidae
Subspecies and Distribution. N.c.cephalotesPallas,1767—SulaIs(MangoleandSanana),CMoluccas(Buru,Am-bon,andSeram),TanimbarIs(Yamdena),andELesserSundaIs(Timor),althoughitisprobablyextinctonTimor. N. c. aplini Kitchener, 1995 — Sulawesi.
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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
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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.