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33 results for “infraspecific taxa”

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dryad36/100

Phylogeny of species, infraspecific taxa, and forms in Iris subgenus Xiphium (Iridaceae) that have centers of diversity in the Mediterranean Basin biodiversity hotspot

Open the record for dataset details and reuse information.

publicFeb 2023View details →
zenodo32/100

FIGURE 4 in Morpho-colorimetric characterization of the perigonium of the Alstroemeria pulchra complex (Alstroemeriaceae, Alstroemerieae) as an aid to delimit its infraspecific taxa

FIGURE 4. Color reflectance of A. pulchra through the visible spectrum, differentiated by tepal set; A: external tepals; B: Internal lower tepals; C: Internal upper tepals.

opennotspecifiedOct 2023View details →
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FIGURE 3. Digitalized tepals with labels. A1, A2, A3 in Morpho-colorimetric characterization of the perigonium of the Alstroemeria pulchra complex (Alstroemeriaceae, Alstroemerieae) as an aid to delimit its infraspecific taxa

FIGURE 3. Digitalized tepals with labels. A1, A2, A3: External tepal set; I1, I2: internal upper tepal set; UL: internal lower tepal set.

opennotspecifiedOct 2023View details →
zenodo32/100

FIGURE 2 in Morpho-colorimetric characterization of the perigonium of the Alstroemeria pulchra complex (Alstroemeriaceae, Alstroemerieae) as an aid to delimit its infraspecific taxa

FIGURE 2. Dot map indicating the infraspecific taxa of A. pulchra with different colors; labels: Population numbers (collector numbers) included in this study. A: A. pulchra var. pulchra; B: A. pulchra var. maxima; C: A. pulchra subsp. lavandulacea; Background color of the map: Elevation.

opennotspecifiedOct 2023View details →
zenodo32/100

FIGURE 6 in Morpho-colorimetric characterization of the perigonium of the Alstroemeria pulchra complex (Alstroemeriaceae, Alstroemerieae) as an aid to delimit its infraspecific taxa

FIGURE 6. Morpho-colorimetric variability expressed through the PC obtained in each approximation. A. Traditional morphometrics; vectors: influence of the selected variables on the PCs; B: Overall shape of tepal set A; C: Overall shape of tepal set I; D: Combined analysis. Figures in scatter plot: light color circles: A. pulchra var. pulchra; purple circles: A. pulchra var. maxima; darker squares: A. pulchra subsp. lavandulacea. Boxplots: group variability on the PCs; box: range 25%–75%; whiskers: min-max; center line: mean; black dots: outliers.

opennotspecifiedOct 2023View details →
zenodo32/100

FIGURE 5 in Morpho-colorimetric characterization of the perigonium of the Alstroemeria pulchra complex (Alstroemeriaceae, Alstroemerieae) as an aid to delimit its infraspecific taxa

FIGURE 5. Morpho-colorimetric variability expressed through the PC or PCO obtained in each approximation. A: CIELab colorimetry of tepals UL; vectors: influence of the variables on the PCs; B: Reflectance of tepals A; C: Color proportions of tepals I represented as histograms above the scatter plot; D: Maculae patterns of tepals I represented as heatmaps on the scatter plot. Figures in scatter plots: light color circles: A. pulchra var. pulchra; purple circles: A. pulchra var. maxima; darker squares: A. pulchra subsp. lavandulacea. Boxplots: group variability on the PCs or PCOs; box: range 25%–75%; whiskers: min-max; center line: mean; black dots: outliers.

opennotspecifiedOct 2023View details →
zenodo32/100

FIGURE. Distribution of nomenclatural etymological categories of currently accepted specific and infraspecific cycad taxa over time (taxonomic framework sensu Calonje et al. 2022). in Etymological compendium of cycad names

FIGURE. Distribution of nomenclatural etymological categories of currently accepted specific and infraspecific cycad taxa over time (taxonomic framework sensu Calonje et al. 2022).

opennotspecifiedJun 2022View details →
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FIGURE. Authors (or co-authors) of more than five currently accepted specific and infraspecific cycad taxa (author abbreviations follow Calonje et al. 2022). in Etymological compendium of cycad names

FIGURE. Authors (or co-authors) of more than five currently accepted specific and infraspecific cycad taxa (author abbreviations follow Calonje et al. 2022).

opennotspecifiedJun 2022View details →
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FIGURE 7. Gelidocalamus stellatus var. wugongshanensis. A in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 7. Gelidocalamus stellatus var. wugongshanensis. A. habit; B. new shoot; C–F. culm leaf sheath; G. hollow internode, longitudinal section; H. node and buds; I. foliage leaf, the abaxially basal; J. foliage leaf sheath. (Scale bars = 0.5 m [A]; 1 cm [B–F]; 0.5 cm [G–J])

opennotspecifiedJun 2018View details →
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FIGURE 2 in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 2. Specimens of the taxa of Gelidocalamus analyzed in this study. A. Gelidocalamus monophyllus (Zhang & Liu 20161024001); B. G. stellatus var. stellatus (Yang & Zhang JGS003); C. G. stellatus var. mangshanensis (Zhang & Liu RJD0102); D. G. stellatus var. wugongshanensis (Yang & Zhang JGS107).

opennotspecifiedJun 2018View details →
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FIGURE 1 in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 1. SEM images of the abaxial leaf epidermis. A. Gelidocalamus monophyllus (Jiuyi Mountain, Hunan, China). B. G. stellatus var. stellatus (Jinggang Mountain, Jiangxi, China). C. G. stellatus var. wugongshanensis (Wugong Mountain, Jiangxi, China). D. G.stellatus var. mangshanensis (Mangshan, Hunan, China).

opennotspecifiedJun 2018View details →
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FIGURE 6. Gelidocalamus stellatus var. mangshanensis. A in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 6. Gelidocalamus stellatus var. mangshanensis. A. habit; B. fully mature plant; C. new shoot; D. branching and leaves; E. node and branches; F. young culm, transverse section; G. node and internodes; H–K. culm leaves; L. the apical of new shoot; M. foliage leaf sheath. (Scale bars = 1 m [A]; 10 cm [B–D, L]; 0.5 cm [E–K, M])

opennotspecifiedJun 2018View details →
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FIGURE 4 in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 4. Geographical distribution of Gelidocalamus monophyllus (rhombus) and Gelidocalamus stellatus (pentacle). Solid pentacles, empty pentacles and gray pentacles represent three varieties, i.e. G. stellatus var. stellatus, G. stellatus var. wugongshanensis and G. stellatus var. mangshanensis, respectively.

opennotspecifiedJun 2018View details →
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FIGURE 5. Gelidocalamus stellatus var. stellatus. A in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 5. Gelidocalamus stellatus var. stellatus. A. habit; B. mature plant; C. new shoot; D–F. culm and branches; G–K. culm leaves; L. twig; M. foliage leaf. (Scale bars = 1 m [A]; 5 cm [B–E, G, H, L, M]; 0.5 cm [F, I–K])

opennotspecifiedJun 2018View details →
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FIGURE 3. Gelidocalamus monophyllus. A in Re-evaluation of the taxonomy of Gelidocalamus stellatus (Poaceae: Bambusoideae) and its infraspecific taxa from southern China

FIGURE 3. Gelidocalamus monophyllus. A. habit; B. mature culm; C–E. new shoot and rhizomes; F. branches and foliage leaf; G–M. young culm and node (G and H), culm leaf sheath when young (H and I), old culm and node (J), culm leaf sheath when old (K and L), and branches (M). (Scale bars = 0.5 m [A–B]; 5 cm [C–F]; 1 cm [G–M])

opennotspecifiedJun 2018View details →
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FIGURE 6. Redundancy Analysis biplot ordination diagram, obtain from a in The recognition of infraspecific taxa in Juniperus brevifolia (Cupressaceae)

FIGURE 6. Redundancy Analysis biplot ordination diagram, obtain from a matrix of 12 populations and 10 abiotic variables (not all variables are shown) (Abbreviations: see Table 1) (adapted from Elias 2007).

opennotspecifiedDec 2014View details →
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FIGURE 5 in The recognition of infraspecific taxa in Juniperus brevifolia (Cupressaceae)

FIGURE 5. Male cones (top) and microsporophils (down) from J. brevifolia subsp. maritima (A), J. brevifolia subsp. brevifolia var. brevifolia (B) and J. brevifolia subsp. brevifolia var. montanum (C) (illustration by R.B.Elias).

opennotspecifiedDec 2014View details →
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FIGURE 2 in The recognition of infraspecific taxa in Juniperus brevifolia (Cupressaceae)

FIGURE 2. Leaf area (A) and seed weight (B) classes distribution in the infra-specific taxa of J. brevifolia (adapted from Elias 2007).

opennotspecifiedDec 2014View details →
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FIGURE 3 in The recognition of infraspecific taxa in Juniperus brevifolia (Cupressaceae)

FIGURE 3. Adaxial view and cross section profiles of leaves from J. brevifolia subsp. maritima (A), J. brevifolia subsp. brevifolia var. brevifolia (B) and J. brevifolia subsp. brevifolia var. montanum (C) (illustration by R.B.Elias).

opennotspecifiedDec 2014View details →
zenodo32/100

FIGURE 1. Redundancy Analysis biplot ordination diagram, obtain from a in The recognition of infraspecific taxa in Juniperus brevifolia (Cupressaceae)

FIGURE 1. Redundancy Analysis biplot ordination diagram, obtain from a matrix of 12 populations and 17 morphological variables (not all variables are shown) (Abbreviations: see Table 1) (adapted from Elias 2007).

opennotspecifiedDec 2014View details →

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