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Figure 1 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157

Figure 1 Hyphessobrycon piorskii sp. n. A CICCAA 00695, holotype, 25.9 mm SL, Brazil: Maranhão State: Munim River basin B CICCAA 00881, paratype, 29.4 mm SL, Brazil: Maranhão State: Munim River basin (photographed by Felipe Ottoni).

opencc-by-4.0Jun 2018View details →
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Figure 2 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157

Figure 2 Hyphessobrycon piorskii sp. n. A CICCAA 00698, paratype, 26.9 mm SL, Brazil: Maranhão State: Munim River basin; living specimen photographed immediately after collection B CICCAA 00089, paratype, 25.2 mm SL, Brazil: Maranhão State: Munim River basin; living specimen photographed immediately after collection (photographed by Felipe Ottoni).

opencc-by-4.0Jun 2018View details →
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Figure 5 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157

Figure 5 Hyphessobrycon piorskii sp. n. CICCAA 00697, male, 19.3 mm SL, bony hooks on pelvic fin (photographed by Erick Guimarães).

opencc-by-4.0Jun 2018View details →
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Figure 8 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157

Figure 8 Collecting sites of Hyphessobrycon piorskii sp. n. A stream at the Anapurus municipality B stream at Mata de Itamacaoca C stream at Mata de Itamacaoca D stream at Mata Fome, Barreirinhas municipality (photographed by Felipe Ottoni).

opencc-by-4.0Jun 2018View details →
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Figure 4 from: Guimarães EC, De Brito PS, Feitosa LM, Carvalho-Costa LF, Ottoni FP (2018) A new species of Hyphessobrycon Durbin from northeastern Brazil: evidence from morphological data and DNA barcoding (Characiformes, Characidae). ZooKeys 765: 79-101. https://doi.org/10.3897/zookeys.765.23157

Figure 4 Hyphessobrycon piorskii sp. n. CICCAA 00697, male, 19.3 mm SL, bony hooks on anal fin (photographed by Erick Guimarães).

opencc-by-4.0Jun 2018View details →
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Figure 7 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829

Figure 7 Evolutionary relationship between Trouessartia species inferred using the Neighbor-Joining method. The bootstrap test result (10000 replicates) is shown next to each branch.

opencc-by-4.0Oct 2018View details →
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Figure 6 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829

Figure 6 Trouessartianiltavae Constantinescu, sp. n., A–D details of female legs, dorsal view: A–leg I, B–leg II, C–leg III, D–leg IV; E–spermatheca and spermaducts of female; Abbreviations: hs – head of spermatheca; pd – primary spermaduct; sd – secondary spermaduct.

opencc-by-4.0Oct 2018View details →
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Figure 8 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829

Figure 8 Evolutionary relationship between Trouessartia species inferred using the Maximum Likelihood method based on the Tamura-Nei model. The bootstrap test (10000 replicates) shown next to the branches.

opencc-by-4.0Oct 2018View details →
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Figure 3 from: Constantinescu IC, Popa OP, Popa LO, Cobzaru I, Khlur B MD, Adam C (2018) A new feather mite species of the genus Trouessartia Canestrini, 1899 (Acarina, Trouessartiidae) – an integrative description (morphology and DNA barcoding data). ZooKeys 789: 19-35. https://doi.org/10.3897/zookeys.789.27829

Figure 3 Trouessartianiltavae Constantinescu, sp. n., A–D details of male legs, dorsal view: A–leg I, B–leg II, C–leg III, D–leg IV; E–opisthosoma of male, ventral view. Abbreviations: bs – basal sclerite, ea – epiandrum, gp – genital papillae, pm – parameres, pp – postgenital plaque.

opencc-by-4.0Oct 2018View details →
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Supplementary material 1 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

: Data type: multimedia

opencc-zeroMar 2019View details →
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Supplementary material 3 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

: Data type: multimedia

opencc-zeroMar 2019View details →
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Supplementary material 2 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

: Data type: multimedia

opencc-zeroMar 2019View details →
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Figure 7 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 7 Spore morphology and symptoms on fern fronds of Milesinawoodwardiana sp. nov. a Fronds of the host Woodwardiaradicans at the collection site in La Palma. Dark spots indicate areas where sori are formed on the underside (La Palma, Cubo de la Galga, ca. 1.2 km SW of parking lot W San Bartolomé, 11 Aug 2017) b Host leaf with uredinia. Sori (arrows) are restricted to areas between leaf veins (KR-M-0048787, dissecting microscope) c Transverse section of uredinium E=epidermis, P=peridial cells, U=urediniospore, M=mesophyll of host plant (KR-M-0048787, LM, interference contrast) d Urediniospores with long echinulae (KR-M-0049036, paratype, SEM) e Urediniospores, cracked, without plasma, germ pores scattered (KR-M-0049033, paratype; LM, phase contrast) f Germinating urediniospores, arrows point to germ tubes (KR-M-0049033, paratype, LM, phase contrast).

opencc-by-4.0Mar 2019View details →
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Figure 6 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 6 Urediniospores of 11 Milesina species. aMilesinablechni on Struthiopterisspicant (KR-M-0049039, SEM) bMilesinablechni on Struthiopterisspicant, cracked spore with released plasma, germ pores scattered (KR-M-0038523, LM phase contrast) cMilesinacarpatica on Dryopterisfilix-mas (KR-M-0043192, SEM) dMilesinaexigua on Polystichumbraunii, smooth surface (M, M-020547, SEM) eMilesinaexigua on Polystichumbraunii, smooth surface, plasma-free spore, germ pores bipolar (M, M-0205472, LM, phase contrast) fMilesinafeurichii on Aspleniumseptentrionale with smooth areas on surface (KR-M-0043159, SEM) gMilesinafeurichii on Aspleniumseptentrionale, cracked plasma-free spore, germ pores scattered (KR-M-0043159, LM, phase contrast) hMilesinakriegeriana on Dryopteriscarthusiana (KR-M-0048085, SEM) iMilesinamagnusiana on Aspleniumadiantum-nigrum with smooth areas on surface (M, M-0205474, SEM) jMilesinamagnusiana on Aspleniumadiantum-nigrum, spore plasma-free, germ pores scattered (M, M-0205474, LM, phase contrast) kMilesinamurariae on Aspleniumruta-muraria with smooth areas on surface (KR-M-0035461, SEM) lMilesinamurariae on Aspleniumruta-muraria, cracked spore with released plasma, germ pores scattered (KR-M-0043154, LM, phase contrast) mMilesinapolypodii on Polypodiumvulgare with smooth areas on surface (KR-M-0043173, SEM) nMilesinascolopendrii on Aspleniumscolopendrium with smooth areas on surface (KR-M-0049049, SEM) oMilesinavogesiaca on Polystichumaculeatum, surface with very flat warts at the tip of the spore (arrow) (KR-M-0043160, SEM) pMilesinavogesiaca on Polystichumaculeatum, surface smooth (no warts visible at the tip), germ pores bipolar (KR-M-0043175, LM, phase contrast) qMilesinawhitei on Polystichum sp. (KR-M-0039378, SEM) rMilesinawhitei on Polystichumsetiferum, cracked spore with released plasma, germ pores scattered (KR-M-0049177, LM, phase contrast).

opencc-by-4.0Mar 2019View details →
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Figure 4 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 4 Deviations from the consensus ITS sequence of section Scolopendriorum. Description as for Figure 3. Milesinafeurichii deviates from the other three species in positions 288 (A) and 521 (G).

opencc-by-4.0Mar 2019View details →
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Figure 5 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 5 Boxplot of germ pore numbers of urediniospores of 12 Milesina spp. and four sections. For each species 120 spores from two (M.magnusiana), three (M.feurichii) or four (all other species) specimens were evaluated. Median, whisker, quantile and outliers (dots) are shown.

opencc-by-4.0Mar 2019View details →
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Figure 3 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 3 Deviations from the consensus ITS sequence of section Milesina. The first line indicates the nucleotide positions in base pairs, the second line the consensus sequence. The order of specimens is as shown in Figure 1. "Milesina sp" denotes specimens from Abiesalba. Deviations for single specimens can be found at 5 positions. All specimens of M.blechni and M.woodwardiana deviate at position 381 from M.whitei and kriegeriana.

opencc-by-4.0Mar 2019View details →
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Figure 2 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 2 Phylograms of supplementary barcodes. The nad6 phylogram is based on a 550 bp alignment, the 28S phylogram on a 680 bp alignment. The technical description is the same as for Figure 1. All Milesina specimens from Figure 1 were attempted to sequence for the supplementary barcodes. Only the shown specimens resulted in sequences. The non-Milesina species were altered depending on availability. No GenBank sequences were included and the genus Chrysomyxa was replaced by Pucciniastrum.

opencc-by-4.0Mar 2019View details →
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Figure 1 from: Bubner B, Buchheit R, Friedrich F, Kummer V, Scholler M (2019) Species identification of European forest pathogens of the genus Milesina (Pucciniales) using urediniospore morphology and molecular barcoding including M. woodwardiana sp. nov. MycoKeys 48: 1-40. https://doi.org/10.3897/mycokeys.48.30350

Figure 1 ITS Phylogram of 11 Milesina species (excluding M.magnusiana). The phylogram is based on a 733-bp alignment. A Maximum Likelihood (ML) tree is shown with support values for ML, Bayesian Inference (BI) and Neighbour Joining (NJ), in the order ML/BI/NJ. Support values are presented when they are above 50 (ML, NJ) or 0.5 (BI). The host is indicated in brackets. Milesina specimens without species designation (host Abiesalba) are not colour-coded. For comparison, several sequences were included from closely related genera. They were all newly generated within the GBOL project, except the GenBank sequences for Cronartium spp. The drawings on the right side present the typical arrangement of spines and germ pores (grey dots) on the Milesina urediniospores.

opencc-by-4.0Mar 2019View details →
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FIGURE 76 in The ant genus Rhopalomastix (Hymenoptera: Formicidae: Myrmicinae) in Southeast Asia, with descriptions of four new species from Singapore based on morphology and DNA barcoding

FIGURE 76. Distribution of R. javana and R. johorensis in Southeast Asia.

opennotspecifiedDec 2018View details →

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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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Last verified 2026-04-29Open record

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