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zenodo28/100

Supplementary material 1 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure S1. Type specimen of Calceolaria asperula Phil. (SGO 055831)

opencc-zeroNov 2021View details →
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Figure 6 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 6 Habitat of Calceolaria flavidaA NW-facing slopes dominated by Puya coerulea var. coerulea, Lithraea caustica and Gochnatia foliolosa (Natural Sanctuary Cerro El Roble, Región Metropolitana, Chile) B, C habit of Calceolaria flavida.

opencc-by-4.0Nov 2021View details →
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Figure 5 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 5 Calceolaria flavidaA habit B upper side view of flower C lateral view of flower D frontal view of flower with upper lip open E frontal view of flower F detail of abaxial side of leaf G detail of adaxial side of leaf H detail of stems I detail of early-flowering inflorescence.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 4 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 4 Lateral cross-section view of flowers of Calceolaria and detail of elaiophores A, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n).

opencc-by-4.0Nov 2021View details →
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Figure 2 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 2 Indumentum type in leaves of CalceolariaA, C, E upper leaf surface B, D, F lower leaf surface A, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n). Scale bar: 1 mm.

opencc-by-4.0Nov 2021View details →
zenodo28/100

Figure 3 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 3 Lateral and frontal view of flowers (from left to right) of CalceolariaA, BCalceolaria asperula (Lavandero 409 (SGO)) C, DCalceolaria flavida (Lavandero & Santilli 201027 (SGO)) E, FCalceolaria petioalaris (B. Rosende s/n).

opencc-by-4.0Nov 2021View details →
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Figure 1 from: Lavandero N, Santilli L, Pérez F (2021) Calceolaria flavida (Calceolariaceae) a new endemic species to central Chile. PhytoKeys 185: 99-116. https://doi.org/10.3897/phytokeys.185.71755

Figure 1 Distribution map of Calceolaria flavida (triangles) in Chile. Roman numbers represent administrative regions (IV Coquimbo, V Valparaiso, RM Metropolitan Region, VI O'Higgins, VII Maule). Green polygons represent protected areas (La Campana National Park and Natural Sanctuary Cerro El Roble).

opencc-by-4.0Nov 2021View details →
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FIGURE 4 in Lagenandra wayambae (Araceae), a new endemic species from a freshwater swamp forest of Sri Lanka

FIGURE 4. Lagenandra wayambae; A. Habit. B. Spathe. C. Infructescence. D. Seed.

opennotspecifiedMar 2021View details →
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FIGURE 2 in Novelties in Phoradendron killipii (Viscaceae): an endemic and rare species from Colombia

FIGURE 2. Map of known locations of Phoradendron killipii.

opennotspecifiedMar 2021View details →
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FIGURE 2 in Novelties in Persicaria (Polygonaceae): description of a narrowly endemic new species from southern Brazil, and typification of the name Polygonum minus

FIGURE 2. Distribution map of Persicaria humboldtiana.

opennotspecifiedMar 2021View details →
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FIGURE 16 in Thirteen new species of Chilecicada Sanborn, 2014 (Hemiptera: Auchenorrhyncha: Cicadidae: Tibicininae) expand the highly endemic cicada fauna of Chile

FIGURE 16. Chilecicada songs resolved on a scatterplot of mean dominant frequency vs. echeme rate.

opennotspecifiedDec 2021View details →
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Fig. 3 in Two new species of Xyris L. (Xyridaceae) endemic to Madagascar with a key to the Malagasy species

Fig. 3. – Xyris labatii Rakoton., Callm. & Phillipson. A. Whole plant showing swollen bulbous base; B. Infructescence; C. Fruit; D. Fruit with sepal pair showing toothed keels; E. Seed; F. Inflorescence. [A-B, D-F: Labat 3050, TAN; C: ScHatz & al. 4130, TAN] [Drawing: R. L. Andriamiarisoa]

opencc-by-4.0Nov 2014View details →
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Fig. 5 in Endemic Families of Madagascar. XIII. New, restricted range species of Eremolaena Baill. and Schizolaena Thouars (Sarcolaenaceae)

Fig. 5. – Schizolaena parvipetala Randrian. & Hong-Wa A. Branch with flowers; B. Detail of leaf; C. Peduncle with 2 flowers subtended by undeveloped involucre. [RandriataFika 877] [Drawing: R. L. Andriamiarisoa]

opencc-by-4.0Nov 2014View details →
dryad28/100

Crataegus bretschneideri (Rosaceae), a separate species endemic to Northeast of China

<p><span><i>Crataegus b</i></span><span><i>retschneideri</i> is considered a variety of <i>Crataegus pinnatifida</i>, but it has also been proposed as a separate species. We used ITS and three cpDNA sequence fragments (<i>psbA-trnH, trnG-trnS, trnH-trnK</i>) to perform maximum parsimony, maximum likelihood, Bayesian interence and neighbor-joining molecular phylogenetic tree analysis with 108 individuals of 19 hawthorn (<i>Crataegus</i>) species and 4 outgroups (<i>Malus</i>). ITS, cpDNA and cpDNA-ITS molecular phylogenetic trees constructed using 4 methods have similar consistency respectively.</span></p> <p><span>In the cpDNA-ITS molecular phylogenetic tree, <i>C. bretschneideri</i> is an independent clade separated from <i>Crataegus maximowiczii </i>and <i>C. pinnatifida</i>, which provides a separate species condition. In the ITS (nuclear inheritance) molecular phylogenetic tree, <i>C. bretschneideri</i> and <i>C. pinnatifida</i> are closely related and are distantly related to <i>C. maximowiczii</i>. The cpDNA (maternal inheritance) molecular phylogenetic tree indicated that <i>C. bretschneideri</i> is closely related to <i>C. maximowiczii</i> but distantly related to <i>C. pinnatifida</i>. Furthermore, the 108 <i>Crataegus</i> individuals belonged to 15 chloroplast haplotypes, as determined using the DNASP analysis; <i>C. bretschneideri</i> and <i>C. maximowiczii</i> have the same chloroplast haplotype, H1; <i>C. pinnatifida </i>contains three haplotypes, H13-H15. Taken together with previous results of our laboratory, we confirm that <i>C. bretschneideri</i> is not a variety of <i>C. pinnatifida,</i> but a separate species that gradually developed from natural hybrid offspring in mixed forest areas with <i>C. maximowiczii</i> as the female parent and <i>C. pinnatifida</i> as the male parent. </span></p>

opencc-zeroDec 2021View details →
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PLATE 5 in Thirteen new species of Chilecicada Sanborn, 2014 (Hemiptera: Auchenorrhyncha: Cicadidae: Tibicininae) expand the highly endemic cicada fauna of Chile

PLATE 5. Distribution of Chilecicada from records reported in this work.

opennotspecifiedDec 2021View details →
zenodo28/100

FIG. 23 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation

FIG. 23. Box plots summarizing head-and-body length, condyloincisive length, and braincase breadth measurements for members of the Rhoditis Group. Data from Crocidura rhoditis and C. pseudorhoditis are divided into two boxes. Dark gray boxes show all available measurements from across the species range while light gray boxes show only samples taken on Mt. Ambang, where the two species occur in syntopy. Note that the differences between these two species are greater on Mt. Ambang than they are for the islandwide sample. Plots show the median, 1st and 3rd quartiles, the maximum value within 1.5 × interquartile range (distance between 1st and 3rd quartiles; IQR), the minimum value within 1.5 × IQR, and outliers (black circles). Sample sizes are shown along the x-axis. All measurements in mm.

opencc-by-4.0Dec 2021View details →
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FIG. 34 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation

FIG. 34. Images showing dorsal, ventral, and lateral views of the skull and lateral and occlusal views of the dentary of the two members of the Thick-Tailed Group: A, Crocidura brevicauda, MVZ 237632; and B, C. caudicrassa, MZB 34795.

opencc-by-4.0Dec 2021View details →
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FIG. 28 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation

FIG. 28. Images showing dorsal, ventral, and lateral views of the skull and lateral and occlusal views of the dentary from the three members of the Small-Bodied Group that are from the northern peninsula: A, Crocidura baletei, LSUMZ 36959; B, C. lea, LSUMZ 38262; and C, C. tenebrosa, LSUMZ 39272.

opencc-by-4.0Dec 2021View details →
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FIG. 33 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation

FIG. 33. Images showing the ventral surface of the hind foot and dorsal surfaces of the tail base (approximately 1 cm from rump) and tail tip from the two members of the Thick-Tailed Group: A, Crocidura brevicauda, MVZ 237632 (left hind foot); and B, C. caudicrassa, MZB 34795 (right hind foot). In B the upper scale bar applies to the foot and the lower to the tail.

opencc-by-4.0Dec 2021View details →
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FIG. 13 in Fourteen New, Endemic Species Of Shrew (Genus Crocidura) From Sulawesi Reveal A Spectacular Island Radiation

FIG. 13. Elevational records of all species of Crocidura known from Sulawesi. Each point represents a specimen. For specimens associated with a minimum and maximum elevation, we used the center of the given elevational range. Sample sizes are given above the x-axis. Species are grouped according to the species groups used in the text (Thick = Thick-Tailed Group).

opencc-by-4.0Dec 2021View details →

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Allen Brain Atlas

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DANDI Archive for NWB datasets

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International Brain Laboratory public data

The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.

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OpenNeuro

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openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record