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25 results for “Tuscan Archipelago”

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Fig. 4 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 4 Non-metric multidimensional scaling (NMDS) in RGB (red, green, and blue) color space for Sørensen (βsor) (a), Simpson (βsim) (b), and nestedness indices (βnest) (c) showing land snail presence/ absence in the Tuscan Archipelago using the database of all species except aliens. CAP, Capraia; ELB, Elba; GIA, Giannutri; GIG, Giglio; GOR, Gorgona; MCO, Montecristo; PIA, Pianosa; CER, Cerboli; PAL, Palmaiola; FDG, Formiche di Grosseto; ARG, Monte Argentario

opennotspecifiedAug 2018View details →
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Fig. 5 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 5 Biogeographical categories of land snail species on islands of the Tuscan Archipelago: (a) including and (b) excluding widespread species

opennotspecifiedAug 2018View details →
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Fig. 1 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 1 Location of the Tuscan Archipelago in the northern Tyrrhenian Sea, between the Tuscan coast and Corsica

opennotspecifiedAug 2018View details →
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Fig. 6 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 6 Cluster analysis (a) and non-metric multidimensional scaling (NMDS) in RGB (red, green, and blue) color space (b) for Simpson index (βsimp) showing relationships between Tuscan Archipelago islands and their source pool (Tuscany/Sardo-Corsican complex) considering species of biogeographical interest (SC, Sardo-Corsican species; T, Tuscan species). In cluster analysis, multiscale bootstrap procedure resulted in two different values for each node: on the left,

opennotspecifiedAug 2018View details →
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Fig. 2 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 2 Cluster analysis for the Sørensen index (βsor) (a all species; b without alien species), Simpson index (βsim) (c all species; d without alien species) and nestedness index (βnest) (e all species; f without alien species). Multiscale bootstrap analysis resulted in two different values for each node: on the left, node support involving the exact number of species in the original dataset; on the right, node support when more resampled species were used. Highly and weakly supported nodes are indicated in black and red, respectively. CAP, Capraia; ELB, Elba; GIA, Giannutri; GIG, Giglio; GOR, Gorgona; MCO, Montecristo; PIA, Pianosa; CER, Cerboli; PAL, Palmaiola; FDG, Formiche di Grosseto; ARG, Monte Argentario

opennotspecifiedAug 2018View details →
zenodo32/100

Fig. 3 in The biogeography of non-marine molluscs in the Tuscan Archipelago reveals combined effects of current eco-geographical drivers and paleogeography

Fig. 3 Non-metric multidimensional scaling (NMDS) in RGB (red, green, and blue) color space for Sørensen (βsor) (a), Simpson (βsim) (b), and nestedness indices (βnest) (c) showing land snail presence/ absence in the Tuscan Archipelago using the database of all species. CAP, Capraia; ELB, Elba; GIA, Giannutri; GIG, Giglio; GOR, Gorgona; MCO, Montecristo; PIA, Pianosa; CER, Cerboli; PAL, Palmaiola; FDG, Formiche di Grosseto; ARG, Monte Argentario

opennotspecifiedAug 2018View details →
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FIGURE 13 in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 13. Vitis ×instabilis. Leaf blade variability: a–d, g–j) adaxial surface; e–f) abaxial surface.

opennotspecifiedApr 2014View details →
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FIGURE 4. A–D in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 4. A–D) Leaf bases; E–H) leaf margin teeth. A) U-shaped leaf base in V. ×instabilis; B) Lyre-shaped leaf base in V. vinifera; C) V-shaped leaf base in V. ×ruggerii; D) truncate leaf base in V. rupestris; E, G) acute teeth in V.riparia (E) and in V. ×instabilis (G); F, H) obtuse teeth in V ×ruggerii (F) and in V. ×koberi (H).

opennotspecifiedApr 2014View details →
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FIGURE 3. A–H in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 3. A–H) Abaxial leaf surface pubescence. A) V. vinifera; B) V. labrusca; C) V. riparia; D) V. ×koberi; E) V. rupestris; F) V. ×instabilis; G) V. cinerea; H) V. ×ruggerii. All photos by Michele Zilioli.

opennotspecifiedApr 2014View details →
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FIGURE 11 in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 11. Geographical distribution in Elba Island of V. vinifera and V. ×instabilis. The white dot identifies the two close historical growing sites of V. vinifera.

opennotspecifiedApr 2014View details →
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FIGURE 2. A, C, E–G in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 2. A, C, E–G) Petiole insertion (abaxial surface); B, D, H) petiole insertion detail. A–B) V. cinerea; C–D) V. ×koberi; E–F, H) V. vinifera; G) V. labrusca. All photos by Michele Zilioli.

opennotspecifiedApr 2014View details →
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FIGURE 7. A–H in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 7. A–H) Vein axils (abaxial leaf surface). Tuft of hairs are distinctly visible in (B), (D), (H). A) V. vinifera; B) V. riparia; C–D) V. ×instabilis; E) V. rupestris; F) V.×ruggerii; G) V.cinerea; H) V. ×koberi. All photos by Michele Zilioli.

opennotspecifiedApr 2014View details →
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FIGURE 6. A, C–E, G in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 6. A, C–E, G) Petiole insertion (abaxial surface); B, F, H) petiole insertion detail. A) V. riparia; B–D) V. ×instabilis; E–F) V. rupestris; G–H) V.×ruggerii. All photos by Michele Zilioli.

opennotspecifiedApr 2014View details →
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Supplementary material 1 from: Carta A, Forbicioni L, Frangini G, Pierini B, Peruzzi L (2018) An updated inventory of the vascular flora of Elba island (Tuscan Archipelago, Italy). Italian Botanist 6: 1-22. https://doi.org/10.3897/italianbotanist.6.26568

Supplementary data :

opencc-zeroJul 2018View details →
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Figure 2 from: Carta A, Forbicioni L, Frangini G, Pierini B, Peruzzi L (2018) An updated inventory of the vascular flora of Elba island (Tuscan Archipelago, Italy). Italian Botanist 6: 1-22. https://doi.org/10.3897/italianbotanist.6.26568

Figure 2 Life form spectra for each Operational Geographic Unit. CH = Chamaephytes, G = Geophytes, H = Hemicryptophytes, HE = Helophytes, I = Idrophytes, NP = Nanophanerophytes, P = Phanerophytes, T = Therophytes.

opencc-by-4.0Jul 2018View details →
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Figure 3 from: Carta A, Forbicioni L, Frangini G, Pierini B, Peruzzi L (2018) An updated inventory of the vascular flora of Elba island (Tuscan Archipelago, Italy). Italian Botanist 6: 1-22. https://doi.org/10.3897/italianbotanist.6.26568

Figure 3 Chorological spectra for each Operational Geographic Unit. Alien = alien species, Endem = Italian endemic species, Extraholarctic = species showing range larger than Holarctic floristic kingdom, Eurosiberian = species showing range within the Eurosiberian floristic region, Eurosib-Medit = species showing range across Eurosiberian and Mediterranean floristic regions, Medit = species showing range within the Mediterranean floristic region.

opencc-by-4.0Jul 2018View details →
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Figure 1 from: Carta A, Forbicioni L, Frangini G, Pierini B, Peruzzi L (2018) An updated inventory of the vascular flora of Elba island (Tuscan Archipelago, Italy). Italian Botanist 6: 1-22. https://doi.org/10.3897/italianbotanist.6.26568

Figure 1 Localisaton of Elba island (red circle) in the Central Mediterranean area and subdivision of the island into 12 Operational Geographic Units. The numbers distinguish the western (1), central (2), and eastern (3) portion of the island, while the letters distinguish ecological belts as follows: (a) alluvial plains, stream banks and shores, (b) hilly areas below 250 m a.s.l., mostly characterised by a mesomediterranean thermotype and a subhumid ombrotype, (c) hilly and mountain areas generally above 250 and below 700 m a.s.l. characterised by mesomediterranean thermotype and humid ombrotype, (d) coastal hilly areas with a thermomediterranean thermotype, and (e) mountain areas above 700 m a.s.l. characterised by mesomediterranean and supramediterranean thermotypes.

opencc-by-4.0Jul 2018View details →
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FIGURE 17 in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 17. Holotype of V. ×ruggerii Ardenghi, Galasso, Banfi & Lastrucci (MSNM).

opennotspecifiedApr 2014View details →
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FIGURE 14 in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 14. Holotype of V. ×koberi Ardenghi, Galasso, Banfi & Lastrucci (MSNM).

opennotspecifiedApr 2014View details →
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FIGURE 5 in A taxonomic survey of the genus Vitis L. (Vitaceae) in Italy, with special reference to Elba Island (Tuscan Archipelago)

FIGURE 5. Vitis riparia. Leaf blade variability: a–b, d) adaxial surface; c) abaxial surface.

opennotspecifiedApr 2014View details →

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