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zenodo32/100

FIGURE 3. Limonium busianum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E in Taxonomic revision of the Limonium cancellatum group (Plumbaginaceae) in Croatia

FIGURE 3. Limonium busianum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E. Inner bract (lateral view). F. Inner bracts (dorsal view). G. Calyces. H. Calyx lobes. I. Leaves. J. Leaf indumentum (adaxial face). K. Leaf indumentum (abaxial face) (Illustration by Salvatore Brullo based on Bogdanović s.n.. type CAT).

opennotspecifiedJun 2015View details →
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FIGURE 7. Limonium dictyophorum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E in Taxonomic revision of the Limonium cancellatum group (Plumbaginaceae) in Croatia

FIGURE 7. Limonium dictyophorum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E. Inner bracts (dorsal view). F. Inner bract (lateral view). G. Calyces. H. Calyx lobes. I. Leaves (Illustration by Salvatore Brullo based on Brullo. Bogdanović & Giusso s.n. CAT).

opennotspecifiedJun 2015View details →
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FIGURE 6. Limonium croaticum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E in Taxonomic revision of the Limonium cancellatum group (Plumbaginaceae) in Croatia

FIGURE 6. Limonium croaticum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E. Inner bract (lateral view). F. Inner bracts (dorsal view). G. Calyces. H. Calyx lobes. I. Leaves. J. Leaf indumentum (adaxial face). K. Leaf indumentum (abaxial face) (Illustration by Salvatore Brullo based on Liber s.n.. type CAT).

opennotspecifiedJun 2015View details →
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FIGURE 4. Limonium cancellatum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E in Taxonomic revision of the Limonium cancellatum group (Plumbaginaceae) in Croatia

FIGURE 4. Limonium cancellatum. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E. Inner bract (lateral view). F. Inner bracts (dorsal view). G. Calyces. H. Calyx lobes. I. Leaves. J. Leaf indumentum (adaxial face). K. Leaf indumentum (abaxial face) (Illustration by Salvatore Brullo based on Brullo. Bogdanović & Giusso s.n.. CAT).

opennotspecifiedJun 2015View details →
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FIGURE 2. Limonium brusnicense. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E in Taxonomic revision of the Limonium cancellatum group (Plumbaginaceae) in Croatia

FIGURE 2. Limonium brusnicense. A. Inflorescence branches. B. Spikelets. C. Outer bracts. D. Middle bracts. E. Inner bract (lateral view). F. Inner bracts (dorsal view). G. Calyces. H. Calyx lobes. I. Leaves. J. Leaf indumentum (adaxial face). K. Leaf indumentum (abaxial face) (Illustration by Salvatore Brullo based on Bogdanović s.n.. CAT).

opennotspecifiedJun 2015View details →
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FIGURE 4 in Cystoderma carpaticum (Basidiomycota, Agaricales), a rare fungus newly recorded from Croatia

FIGURE 4. Cystoderma carpaticum: A. pileipellis (CNF 1/7034), B–C. basidia (under PhC) (CNF 1/6652), D. basidiospores (under PhC) (CNF 1/6652). Scale bars A = 20 μm, B–C = 5 μm (in C), D = 5 μm. Photos by Z. Tkalčec.

opennotspecifiedJul 2016View details →
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FIGURE 3 in Cystoderma carpaticum (Basidiomycota, Agaricales), a rare fungus newly recorded from Croatia

FIGURE 3. Cystoderma carpaticum. Fresh basidiomes: A = CNF 1/6652, B = CNF 1/7034. Scale bars 10 mm. Photos by M. Čerkez (A), A. Mešić & Z. Tkalčec (B).

opennotspecifiedJul 2016View details →
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FIGURE 2 in Cystoderma carpaticum (Basidiomycota, Agaricales), a rare fungus newly recorded from Croatia

FIGURE 2. Phylogenetic placement of Cystoderma carpaticum based on ITS sequence data and inferred by MP analysis. Bootstrap support ≥70% and the posterior probabilities ≥95% are shown above and below the branches (bs/pp), respectively.

opennotspecifiedJul 2016View details →
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FIGURE 1 in Cystoderma carpaticum (Basidiomycota, Agaricales), a rare fungus newly recorded from Croatia

FIGURE 1. Phylogenetic placement of Cystoderma carpaticum based on LSU sequence data and inferred by MP analysis. Bootstrap support ≥70% and the posterior probabilities ≥95% are shown above and below the branches (bs/pp), respectively.

opennotspecifiedJul 2016View details →
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FIGURES 43–62 in Gomphosphenia plenkoviciae sp. nov. A new species from Crveno jezero, Croatia

FIGURES 43–62. Gomphosphenia plenkoviciae Gligora Udovič & Žutinić sp. nov. LM and SEM pictures of small-sized specimens. Figs 43–56. Small sized specimens with longer striae. Fig. 57. Girdle view of entire frustule showing the mantle striae composed of series of 2–4 small round areolae. Fig. 58. Frustules in girdle view. Mantle striae are composed of a single areola. Figs 59, 60. External view of the whole valve. Fig. 61. Internal view of the whole valve. Fig. 62. Detailed view of the mid-valve showing the occluded striae and proximal raphe endings. LM scale bar = 10 μm. SEM scale bar in Figs 57, 59–61 = 5 μm in Figs 58, 62 = 2 μm.

opennotspecifiedJun 2018View details →
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FIGURES 37–42 in Gomphosphenia plenkoviciae sp. nov. A new species from Crveno jezero, Croatia

FIGURES 37–42. Gomphosphenia plenkoviciae Gligora Udovič & Žutinić sp. nov. SEM pictures of large and medium sized specimens. Figs 37, 39, 40. External view of the whole valve. Fig. 38. Girdle view showing the mantle striae and perforated girdle bands. Fig. 41. Internal valve view. Fig. 42. Detailed view of the mid-valve showing the occluded striae and proximal raphe endings. Scale bar in Figs 37–41 = 10 μm, in Fig. 42 = 2 μm.

opennotspecifiedJun 2018View details →
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FIGURES 2–36 in Gomphosphenia plenkoviciae sp. nov. A new species from Crveno jezero, Croatia

FIGURES 2–36. Gomphosphenia plenkoviciae Gligora Udovič & Žutinić sp. nov. LM pictures of large and medium sized specimens. Valve views showing size diminution series. Scale bar = 10 μm.

opennotspecifiedJun 2018View details →
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FIGURE 5. A in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia

FIGURE 5. A. Metaphase plate of Allium pseudotelmatum (2n = 40). B. Karyotype of A. pseudotelmatum (2n = 40). Length of scale bar represents 10 μm. Photograph by Aloisie POULÍČKOVÁ.

opennotspecifiedJun 2017View details →
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FIGURE 4 in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia

FIGURE 4. The arrangement of micropapillae on the surface of leaf epidermis: A. Allium pseudotelmatum. B. Allium oleraceum. Photographs by Martina OULEHLOVÁ.

opennotspecifiedJun 2017View details →
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FIGURE 3. A in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia

FIGURE 3. A. Leaf cross section of Allium pseudotelmatum. B. Leaf cross section of Allium oleraceum. Anatomical characters of Allium pseudotelmatum: C. Epidermis with well-developed micropapillae, cuticle covers and sunken stoma. D. Detail of palisade tissue and spongy tissue with vascular bundles. E. Colateral closed vascular bundle with sclerenchymatical bundle-sheat around xylem. Length of scale bar represents 500 μm (A, B), 100 μm (D) or 50 μm (C, E). Photographs by Martina OULEHLOVÁ.

opennotspecifiedJun 2017View details →
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FIGURE 2 in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia

FIGURE 2. Comparison of important diagnostic characters of Allium pseudotelmatum and A. oleraceum. A. Flower of A. pseudotelmatum. B. Outer and inner tepals of A. pseudotelmatum. C. Outer and inner tepals of Allium oleraceum. D. Mature bulbils of A. pseudotelmatum. E. Mature bulbils of A. oleraceum. Length of scale bar represents 3 mm. Drawn by Martin DUCHOSLAV.

opennotspecifiedJun 2017View details →
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FIGURE 1. Allium pseudotelmatum. A. Habit. B. Inflorescence. C. Perigon with stamens and anthers. D. Ovary with style. E. Capsule. F. Anther. G in Allium pseudotelmatum (Amaryllidaceae), a new species of Allium sect. Codonoprasum from Croatia

FIGURE 1. Allium pseudotelmatum. A. Habit. B. Inflorescence. C. Perigon with stamens and anthers. D. Ovary with style. E. Capsule. F. Anther. G. Details of aerial bulbils within the inflorescence. H. Bulb with two daughter bulbs. Length of scale bar represents 1 cm (A, B, C, G, H) or 1 mm (D, E, F). Photographs by Martin DUCHOSLAV.

opennotspecifiedJun 2017View details →
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FIGURE 5 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status

FIGURE 5 (a) Correlation between the proportion of endemic species and specific richness in Croatia and several other areas (circle—non- European areas, triangle—European areas) (r = 0.312, p <0.05): areas above the diagonal line exhibit less than the expected endemism, and areas below the line exhibit more than the expected endemism (Croatia (EndS)—Endemics only, Croatia (RRS)—range restricted species and endemics). The compiled data are from Médail & Verlaque (1997), Georghiou & Delipetrou (2010), Casazza et al. (2005), Goldblatt (1997), Grooombridge (1992). (b) Correlation between the proportion of endemic plant taxa with respect to the total flora in a sample of European countries and areas and in eighteen latitude classes (based on the broad position of the country centroid) (r = 0.64, p <0.05).

opennotspecifiedMar 2020View details →
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FIGURE 4 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status

FIGURE 4 (a) Relationship between number of taxa (EndS + RRS) and the longitude-latitude ratio: numbers of taxa found in southeast are higher than the numbers of taxa found in northwest Croatia (based on 1 km2 grid cells) (r = 0.09, p <0.05). (b) The altitudinal distribution of taxa within 100 m altitudinal belts.

opennotspecifiedMar 2020View details →
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FIGURE 3 in The endemic and range restricted vascular plants of Croatia: diversity, distribution patterns and their conservation status

FIGURE 3 Maps depicting the number of (a) endemic (EndS) and (b) range restricted species (RRS) per grid cell.

opennotspecifiedMar 2020View details →

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DANDI Archive for NWB datasets

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International Brain Laboratory public data

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OpenNeuro

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