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FIGURE 2. Ordination plots. A in A taxonomic revision of Aloe sect. Purpurascentes (Asphodelaceae subfam. Alooideae)

FIGURE 2. Ordination plots. A. All members of A. sect. Purpurascentes and two putative members of the section (green—A. framesii; yellow—A. gariepensis; orange—A. khamiesensis; purple—A. knersvlakensis; blue—A. microstigma; red—A. succotrina; black— A. chlorantha; brown—A. pictifolia). B. Aloe succotrina (circles—mainland populations; triangles—peninsula populations). C. Aloe gariepensis (circles—eastern populations; triangles—western populations; framed triangles—populations next to the Orange River). New classification: Aloe knersvlakensis = A. khamiesensis subsp. knersvlakensis.

opennotspecifiedNov 2023View details →
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FIGURE 5 in A taxonomic revision of Aloe sect. Purpurascentes (Asphodelaceae subfam. Alooideae)

FIGURE 5. Minimum spanning network for members of A. sect. Purpurascentes. Allele numbers for specimens are indicated on the map at the collecting locality. Number of nucleotide differences between the alleles are shown adjacent to the connection lines. If the minimum number of possible mutations to obtain these differences are less than the number of nucleotide differences, then the number of mutational steps are indicated in brackets. New classification: Aloe knersvlakensis = A. khamiesensis subsp. knersvlakensis.

opennotspecifiedNov 2023View details →
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FIGURE 3. Ordination plots. A in A taxonomic revision of Aloe sect. Purpurascentes (Asphodelaceae subfam. Alooideae)

FIGURE 3. Ordination plots. A. Aloe framesii (green), A. khamiesensis (orange), A. knersvlakensis (purple) and A. microstigma (blue). B. Aloe microstigma (circles—southern populations; triangles—Namibian populations; open circles—yellow-flowering populations). C. Aloe khamiesensis (orange circles—Namaqualand populations; framed orange triangles—Hantam populations) and A. knersvlakensis (purple circles). D. Aloe framesii (circles—northern populations; framed diamonds—southern populations; framed triangles—eastern populations). New classification: Southern populations of A. microstigma = A. microstigma subsp. microstigma; Namibia populations of A. microstigma = A. microstigma subsp. juttae; Namaqualand populations of A. khamiesensis = A. khamiesensis subsp. khamiesensis; Hantam populations of A. khamiesensis = A. khamiesensis subsp. hantamensis; A. knersvlakensis = A. khamiesensis subsp. knersvlakensis; Northern populations of A. framesii = A. framesii subsp. framesii; Southern populations of A. framesii = A. framesii subsp. maraisii; Eastern populations of A. framesii = A. framesii subsp. amoena.

opennotspecifiedNov 2023View details →
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FIGURE 1 in Atlas of leaf surface micromorphology in Aloe L. (Asphodelaceae) from the Horn of Africa region

FIGURE 1. Leaf surfaces of Aloe taxa from the Horn of Africa presenting no infraspecific variation in the data from this study. For subspecies listed here, no variation within this infraspecific delineation was detected. Two images per taxon at magnifications with 100 µm and 20 µm scale bars, respectively, are given. When the stoma shown at the higher magnification is located in the lower magnification image, a black line connects the two for ease of comparison. Longitudinal axes of the leaves are oriented ± vertically. a. A. ankoberensis. b. A. calidophila. c. A. camperi. d. A. gilbertii subsp. gilbertii. e. A. gilbertii subsp. megalacanthoides. f. A. harlana. g. A. kefaensis. h. A. macrocarpa. i. A. mcloughlinii. j. A. megalacantha subsp. alticola.

opennotspecifiedNov 2021View details →
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FIGURE 2 in Atlas of leaf surface micromorphology in Aloe L. (Asphodelaceae) from the Horn of Africa region

FIGURE 2. Leaf surfaces of Aloe taxa from the Horn of Africa that exhibit infraspecific variation in the data in this study. Two images per taxon at magnifications with 100 µm and 20 µm scale bars, respectively, are given. Longitudinal axes of the leaves are oriented + vertically. a. A. debrana. b. A. elegans. c. A. jucunda. d. A. pirottae. e. A. pubescens. f. A. secundiflora subsp. secundiflora. The different images for A. debrana, A. pirottae, and A. pubescens (b, d & e) exemplify how cuticular waxes can be lost during preparation for SEM, and how specimens with and without waxes differ in the characters they reveal.

opennotspecifiedNov 2021View details →
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FIGURE 3 in Atlas of leaf surface micromorphology in Aloe L. (Asphodelaceae) from the Horn of Africa region

FIGURE 3. Intraspecific variation in A. lateritia and A. wollastonii. Each letter represents a different individual, and the individuals in blue boxes are most similar to previously published data for the species (Grace et al. 2009). Images were taken at a magnification of 300× or 1000× for the images of stomata. Individuals are arranged to illustrate expression as spectra of variation within the morpho-types observed. Differences in wax preservation can also be observed in both species. In A. lateritia, morpho-type I is represented by 4/7 of the individuals in our data and Morpho-type II by 3/7 individuals. Morpho-type I is primarily categorized based on the presence of singular central papillae of the periclinal walls. Specimen a exhibits the mildest expression, b, c, and d are individuals that can be considered intermediate in their expression, and e is the individual that most strongly expresses this character. Within this morpho-type anticlinal walls present as single-raised ridges. The singular central papillae of the periclinal walls of Morpho-type I are not seen in Morpho-type II, which also differs in that the anticlinal walls present as single and/or double-raised ridges. The variation included here clarifies that considering a wide circumscription for the species A. lateritia.

opennotspecifiedNov 2021View details →
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FIGURE 1 continued. k. A. megalacantha subsp. megalacantha. l. A. pulcherrima. m. A. rivae. n. A. rugosifolia. o. A. schoelleri. p. A. sinana. q. A. steudneri. r. A. tewoldei. s. A. trichosantha subsp. trichosantha. t. A in Atlas of leaf surface micromorphology in Aloe L. (Asphodelaceae) from the Horn of Africa region

FIGURE 1 continued. k. A. megalacantha subsp. megalacantha. l. A. pulcherrima. m. A. rivae. n. A. rugosifolia. o. A. schoelleri. p. A. sinana. q. A. steudneri. r. A. tewoldei. s. A. trichosantha subsp. trichosantha. t. A. trichosantha subsp. longiflora.

opennotspecifiedNov 2021View details →
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Mean ground velocities from ALOS-2 data at Changbaishan volcano (China/North Korea) during 2018-2020

<p>This archive&nbsp;contains the link to the mean ground velocity at the Changbaishan Volcano (China/North Korea) from ALOS-2 satellite data during 2018-2020.&nbsp;Raw data property of JAXA (Japan).</p> <p>Find more on processing and results in the related paper:</p> <p>&#39;Upward Magma Migration within the Multi-level Plumbing System of the Changbaishan Volcano (China/North Korea) Revealed by the Modeling of 2018-2020 SAR Data&#39;</p> <p>by E. Trasatti, C. Tolomei, L. Wei, G. Ventura. DOI: 10.3389/feart.2021.741287 .</p> <p>Data available at&nbsp;</p> <p>https://reliance.rohub.org/overview?61bceafe-5b48-4548-8caf-4142153b1b1b&amp;activetab=overview</p> <p>With the following doi: https://doi.org/10.24424/vfp6-r230</p>

opencc-by-4.0Dec 2021View details →
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Data for Aloe vera for Ischemic-Reperfusion Injury after Tourniquet Application

<p>Raw data for&nbsp;Aloe vera for Ischemic-Reperfusion Injury after Tourniquet Application</p> <p>Arrive checklist for&nbsp;Aloe vera for Ischemic-Reperfusion Injury after Tourniquet Application</p>

opencc-by-4.0Feb 2022View details →
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FIGURE 1 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 1. Two clumps of Aloe davyana var. magdae growing on a grassy slope near the type locality in the northern Free State province, South Africa. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 2 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 2. Close-up of the very densely rosulate leaves of Aloe davyana var. magdae. The leaves are mid-green, usually purplishinfused, and smooth textured. Adaxially the leaves are white-spotted in interrupted, wavy transverse bands. Abaxially the leaves are pale milky green, green-dotted, and longitudinally darker green-lined. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 4 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 4. The flowers of Aloe davyana var. magdae are bright orange-red, as in this form, to bright red, and alternately whitish and darker striped in the apical half. The subglobose bulbous base is slightly smaller than in A. davyana var. davyana and A. davyana var. subolifera. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 3 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 3. Inflorescences of Aloe davyana var. magdae are more or less cylindrical, somewhat tapering upwards, and equally densely flowered throughout. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 5 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 5. In this colony of Aloe davyana var. davyana growing near Pretoria, Gauteng province, South Africa, flower colour varies from flesh pink to dull brick red. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 6 in Aloe davyana var. magdae (Asphodelaceae subfam. Alooideae), a distinctive new variety from central-northeastern South Africa

FIGURE 6. Aloe davyana var. subolifera forms large clumps of up to 20 rosettes, and its flowers vary in colour from dusty pink, as here near Pienaarsrivier, Limpopo province, South Africa, to nearly white. Photograph: Gideon F. Smith.

opennotspecifiedFeb 2022View details →
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FIGURE 1. A. Aloe verecunda has a in Aloe hankeyi (Asphodelaceae subfam. Alooideae; Aloe sect. Leptoaloe), a new species from northern South Africa

FIGURE 1. A. Aloe verecunda has a wide but patchy natural geographical distribution range in northeastern South Africa. This photograph of a form with bright red flowers was taken in the North West province near the western limits of its range. B. A. cooperi growing in dense grassland near Melmoth in KwaZulu-Natal, South Africa. Note the distinctly conical inflorescences and sparsely arranged sterile bracts higher up on the peduncles. C. A large clump of A. hankeyi in full flower. D. Leaves of A. hankeyi are not keeled, unlike those of A. cooperi, which are distinctly keeled abaxially. E. Racemes of A. hankeyi are broadly conical to distinctly flat-topped. F. The sterile peduncular bracts of A. hankeyi (peduncle on the left) are much more densely concentrated towards the raceme than in A. cooperi (peduncle on the right) or A. verecunda. G. The large flowers of A. hankeyi are dull red for ⅔ of their length, with the upper ⅓ being greenish. H. Andrew John Hankey (1968–) on 21 August 2019. I. Type locality of A. hankeyi (red dot). Unvouchered site records in eastern Gauteng and western Mpumalanga are not reflected on the map. All photographs by Gideon F. Smith.

opennotspecifiedJun 2022View details →
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FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors). in An annotated checklist of the vascular flora of Quiçama National Park, Angola

FIGURE. Selected species from the flora of Quiçama National Park. A. Adansonia digitata. B. Euphorbia candelabrum. C. Acacia welwitschii. D. Hyphaene guineensis. E. Rhizophora racemosa. F. Guibourtia carrissoana var. gossweileri. G. Tessmannia camoneana. H. Sterculia setigera. I. Carissa spinarum. J. Boscia urens. K. Maerua angolensis. L. Grewia villosa. M. Sesuvium crithmoides. N. Aloe zebrina. O. Barleria elegans. P. Setaria welwitschii. (Photographs by the authors).

opennotspecifiedAug 2022View details →
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FIGURE 8 in Reinstatement of Aloe longibracteata (Asphodelaceae subfam. Alooideae), a maculate aloe from northeastern South Africa

FIGURE 8. The fruit of Aloe longibracteata, illustrated here, is larger than those of A. davyana. The dimensions of the bottom-most capsule in the photograph are 32 × 18 mm. Photograph: Gideon F. Smith.

opennotspecifiedOct 2022View details →
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FIGURE 6 in Reinstatement of Aloe longibracteata (Asphodelaceae subfam. Alooideae), a maculate aloe from northeastern South Africa

FIGURE 6. The inflorescences of Aloe longibracteata are often cat tail-like curved. Photograph: Gideon F. Smith.

opennotspecifiedOct 2022View details →
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FIGURE 5 in Reinstatement of Aloe longibracteata (Asphodelaceae subfam. Alooideae), a maculate aloe from northeastern South Africa

FIGURE 5. In developing inflorescences, including in the younger, fire scorched one, the long bracts for which the species was named, are very prominent. Photograph: Gideon F. Smith.

opennotspecifiedOct 2022View details →

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