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589 results for “Vascular Plants”
Figure 15 from: Gillespie LJ, Saarela JM, Sokoloff PC, Bull RD (2015) New vascular plant records for the Canadian Arctic Archipelago. PhytoKeys 52: 23-79. https://doi.org/10.3897/phytokeys.52.8721
Figure 15 - Pinguicula vulgaris: A habitat, Gillespie et al. 7718 B habit, Gillespie et al. 8983b C leaves, Gillespie et al. 7718 D flower, Gillespie et al. 8983b. Photographs by R.D. Bull.
Figure 2 from: Dauby G, Zaiss R, Blach-Overgaard A, Catarino L, Damen T, Deblauwe V, Dessein S, Dransfield J, Droissart V, Duarte MC, Engledow H, Fadeur G, Figueira R, Gereau RE, Hardy OJ, Harris DJ, de Heij J, Janssens S, Klomberg Y, Ley AC, Mackinder BA, Meerts P, van de Poel JL, Sonké B, Sosef MSM, Stévart T, Stoffelen P, Svenning J-C, Sepulchre P, van der Burgt X, Wieringa JJ, Couvreur TLP (2016) RAINBIO: a mega-database of tropical African vascular plants distributions. PhytoKeys 74: 1-18. https://doi.org/10.3897/phytokeys.74.9723
Figure 2 - Examples of the georeferencing verification process. a The georeferenced record falls within a neighbouring country (here Gabon - GAB) of its documented country (here Republic of the Congo - COG). The nearest distance between the occurrence and the border of the documented country is computed b The georeferenced record falls within a non-neighbouring country (here Equatorial Guinea - GNQ) of its documented country (here Republic of the Congo). This record is classified as 'Error' and is discarded c The georeferenced record lies beyond the coastline. The nearest distance between the occurrence and the coastline of the documented country is computed.
Figure 1 from: Dauby G, Zaiss R, Blach-Overgaard A, Catarino L, Damen T, Deblauwe V, Dessein S, Dransfield J, Droissart V, Duarte MC, Engledow H, Fadeur G, Figueira R, Gereau RE, Hardy OJ, Harris DJ, de Heij J, Janssens S, Klomberg Y, Ley AC, Mackinder BA, Meerts P, van de Poel JL, Sonké B, Sosef MSM, Stévart T, Stoffelen P, Svenning J-C, Sepulchre P, van der Burgt X, Wieringa JJ, Couvreur TLP (2016) RAINBIO: a mega-database of tropical African vascular plants distributions. PhytoKeys 74: 1-18. https://doi.org/10.3897/phytokeys.74.9723
Figure 1 - Left map: record density in 2° × 2°cell including all georeferenced records that passed the quality checks. This map includes records that are identified or not to species level. Right map: main extent of RAINBIO geographical coverage from south of Sahel and north of Southern Africa (grey area); extent of tropical rain forest regions adapted from the land cover map published by Mayaux et al. (2004) (green area).
Figure 3 from: Dauby G, Zaiss R, Blach-Overgaard A, Catarino L, Damen T, Deblauwe V, Dessein S, Dransfield J, Droissart V, Duarte MC, Engledow H, Fadeur G, Figueira R, Gereau RE, Hardy OJ, Harris DJ, de Heij J, Janssens S, Klomberg Y, Ley AC, Mackinder BA, Meerts P, van de Poel JL, Sonké B, Sosef MSM, Stévart T, Stoffelen P, Svenning J-C, Sepulchre P, van der Burgt X, Wieringa JJ, Couvreur TLP (2016) RAINBIO: a mega-database of tropical African vascular plants distributions. PhytoKeys 74: 1-18. https://doi.org/10.3897/phytokeys.74.9723
Figure 3 - Most represented families (sorted by number of records) for each of the three divisions of vascular plants represented in the RAINBIO database. A Magnoliophyta B Gymnosperms C Pteridophyta.
Figure 4 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 4 Cuito River source lake, Moxico Province. Extensive moist miombo woodland on the plateau with a few partially cleared areas on the slopes, peaty marsh surrounding the source lake and a narrow strip of fire-maintained grassland between the marsh and the miombo. Photograph D. Goyder.
Figure 1 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 1 Plant distribution records for southern Africa. Raw data from GBIF (https://www.gbif.org). Note the absence of records for the Upper Cuito River.
Figure 6 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 6 Beehive made in Samenunga village, Moxico Province, now displayed in the Economic Botany collection of the Royal Botanic Gardens, Kew, UK. The body of the beehive is a cylinder of bark from the locally dominant legume tree Julbernardiapaniculata. Other species are used to provide stakes, bracing hoops and endcaps. Photograph D. Goyder.
Figure 7 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 7 Bark canoe (foreground) made from Erythrophleumafricanum (Leguminosae) alongside a fibreglass "dugout" brought in by the National Geographic Okavango Wilderness Project from the Okavango Delta. Cuito source lake. Photograph D. Goyder.
Figure 5 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 5 Upper Longa River valley at the southern end of the study area, Cuando Cubango Province. Moist miombo woodland on the plateau with a much broader valley containing more extensive peaty wetlands and fire-maintained grassland zones. The river is fast-flowing in deep sinuous channels with bare sandy bottoms. Photograph D. Goyder.
Figure 2 from: Goyder DJ, Barker N, Bester SP, Frisby A, Janks M, Gonçalves FMP (2018) The Cuito catchment of the Okavango system: a vascular plant checklist for the Angolan headwaters. PhytoKeys 113: 1-31. https://doi.org/10.3897/phytokeys.113.30439
Figure 2 The Okavango Basin and its two principal tributaries the Cuito and Cubango rivers. The core study area is in the more elevated darker green zone of the upper Cuito river.
Supplementary material 1 from: Barone G, Cirlincione F, Di Gristina E, Domina G, Gianguzzi L, Mirabile G, Naselli-Flores L, Raimondo FM, Venturella G (2022) An analysis of botanical studies of vascular plants from Italian wetlands. Italian Botanist 14: 45-60. https://doi.org/10.3897/italianbotanist.14.95072
List of data references on botanical studies of higher plants in Italian wetlands
Supplementary material 2 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Definitions of subcategories used for escape from confinement
Supplementary material 4 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Temporal trends in first record rates from 1845 to 2000 by subcategory of introduction pathway
Supplementary material 1 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Association between the first record rate and import value
Supplementary material 3 from: Egawa C, Koyama A (2023) Temporal trends in the accumulation of alien vascular plant species through intentional and unintentional introductions in Japan. NeoBiota 83: 179-196. https://doi.org/10.3897/neobiota.83.101416
Generalised additive model (GAM) results
Annotated checklist of the vascular plants of Swanton Pacific Ranch
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The list of vascular plants for the city of Toronto
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Data for: Comparing the effect of landscape context on vascular plant and bryophyte communities in a human-dominated landscape
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Data from: Taxonomic and phylogenetic diversity of vascular plants at Ma’anling volcano urban park in tropical Haikou, China: Reponses to soil properties
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Data from: Plastic particles adsorb to the roots of freshwater vascular plant Spirodela polyrhiza but do not impair growth
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International Brain Laboratory public data
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OpenNeuro
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