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238 results for “evolutionary relationships”
Figure 4 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 4 Cysts on fin rays of Lipogramma barrettorum, USNM 440439, CUR16008, holotype, 26.5 mm SL A left pectoral fin showing cyst on uppermost ray B elongate first left pelvic-fin ray showing cyst about midway along its length. Photographs by A. Nonaka.
Figure 5 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 5 Lipogramma schrieri sp. n. A USNM 431722, CUR14114, holotype, 49.7 mm SL paratype, photograph by D. R. Robertson and C. C. Baldwin B and C specimen of unknown size collected off Curaçao (specimen not retained), aquarium photographs by Mac Stone D and E specimen of unknown size collected off Curaçao (specimen not retained), aquarium photographs by Barry Brown.
Figure 3 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 3 Preserved holotypes of new Lipogramma species A L. barrettorum, USNM 440439, CUR16008, 26.5 mm SL B L. schrieri, USNM 431722, CUR14114, 49.7 mm SL. Photographs by C. C. Baldwin.
Figure 1 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 1 Lipogramma barrettorum sp. n. UF 239254, CUR11426, paratype, 28.0 mm SL A photographed against a light background and B against a dark background. Photographs by D. R. Robertson and C. C. Baldwin. C and D USNM 440439, CUR16008, holotype, 26.5 mm SL, aquarium photographs by Barry Brown.
Figure 2 from: Baldwin CC, Tornabene L, Robertson RD, Nonaka A, Gilmore GR (2018) More new deep-reef basslets (Teleostei, Grammatidae, Lipogramma), with updates on the eco-evolutionary relationships within the genus. ZooKeys 729: 129-161. https://doi.org/10.3897/zookeys.729.21842
Figure 2 Lipogramma barrettorum sp. n. A USNM 436474, CUR15139, paratype, 10.2 mm SL B and C USNM 414914, CUR12149, paratype, 13.0 mm SL, photographed against light (B) and dark (C) backgrounds. Photographs by D. R. Robertson and C. C. Baldwin.
Figure 2 from: Moctezuma V, Sánchez-Huerta JL, Halffter G (2018) Two new species of Ateuchus with remarks on ecology, distributions, and evolutionary relationships (Coleoptera, Scarabaeidae, Scarabaeinae). ZooKeys 747: 71-86. https://doi.org/10.3897/zookeys.747.22731
Figure 2 Ateuchus benitojuarezi: a dissected accessory lamellae b dissected copulatrix lamellae and raspule c "intact" internal sac of the aedeagus.
Figure 7 from: Moctezuma V, Sánchez-Huerta JL, Halffter G (2018) Two new species of Ateuchus with remarks on ecology, distributions, and evolutionary relationships (Coleoptera, Scarabaeidae, Scarabaeinae). ZooKeys 747: 71-86. https://doi.org/10.3897/zookeys.747.22731
Figure 7 Ateuchus colossus: a dissected accessory lamellae b dissected copulatrix lamellae and raspule c intact internal sac of the aedeagus.
Figure 5 from: Moctezuma V, Sánchez-Huerta JL, Halffter G (2018) Two new species of Ateuchus with remarks on ecology, distributions, and evolutionary relationships (Coleoptera, Scarabaeidae, Scarabaeinae). ZooKeys 747: 71-86. https://doi.org/10.3897/zookeys.747.22731
Figure 5 Ateuchus guatemalensis (redrawn from Kohlmann 2000, in order to allow comparison with those of A. benitojuarezi): a dissected accessory lamellae b dissected copulatrix lamellae c "intact" internal sac of the aedeagus.
Figure 4 from: Moctezuma V, Sánchez-Huerta JL, Halffter G (2018) Two new species of Ateuchus with remarks on ecology, distributions, and evolutionary relationships (Coleoptera, Scarabaeidae, Scarabaeinae). ZooKeys 747: 71-86. https://doi.org/10.3897/zookeys.747.22731
Figure 4 a Wagner (cladistic) analysis for Ateuchus of North America, based on morphological characters (redrawn from Kohlmann 1984, Kohlmann and Halffter 1988) b Same cladogram modified to include putative relationships of A. benitojuarezi, A. colossus and A. guatemalensis (dotted lines).
Figure 9 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 9 Cross-section of Microteaglochidiata fruit (Brazil, Bahia, Tucano Mun., 20 Feb 1992, A.M. de Carvalho & D.J.N. Hind 3841, PACA). A image of the cross-section B schematic representation. Abbreviations: P – pericarp; T – testa; TE – tegmen.
Figure 11 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 11 Microteadebilis: A general view of the plants (La Selva Biological Station, Costa Rica, 2001) B close-up of the inflorescence (La Selva Biological Station, Costa Rica, 2001). Photographs by Orlando Vargas Ramírez. See also https://sura.ots.ac.cr/florula4/find_sp3.php?key_species_code=LS001515.
Figure 6 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 6 Fruits and seeds of Microteasulcicaulis and M.bahiensis: A, B fruit of M.sulcicaulis, enclosed in the perianth (Paraguay, Caazapá Dept., Tavai, 7 Dec 1988, F. Mereles 2122, G) C, D seed of M.sulcicaulis (Paraguay, Caazapá Dept., Tavai, 7 Dec 1988, F. Mereles 2122, G) E, F fruit of M.bahiensis (Brazil, Bahia state, Salvador, Dunas de Itapuã, nr Hotel Stella Maris, N from Condomínio Alamedas da Praia, 8 Jun 1993, P. de Queiroz 3211, PACA) G, H seed of M.bahiensis (Brazil, Bahia state, Salvador, Dunas de Itapuã, nr Hotel Stella Maris, N from Condomínio Alamedas da Praia, 8 Jun 1993, P. de Queiroz 3211, PACA). Magnification: A, E – 30×, B, F – 100×, C, G – 50×, D, H – 300×.
Figure 8 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 8 Fruits and seeds of Microteamaypurensis and M.tenuifolia: A, B fruit of M.maypurensis, enclosed in the perianth (Bolivia, La Paz Dept., Beni river, Jul 1886, H.H. Rusby 1379, LE) C, D seed of M.maypurensis (Bolivia, La Paz Dept., Beni river, Jul 1886, H.H. Rusby 1379, LE) E, F fruit of M.tenuifolia enclosed in the perianth (Brazil, Minas Gerais, Serrra das Vertentes, Jun 1893, A. Glaziou 20437, B) G, H seed of M.tenuifolia (Brazil, Jacobina Mountains in Bahia, 1836, Blanchet 2588, P00798998). Magnification: A, E – 30×, B, F – 100×, C, G – 50×, D, H – 300×.
Figure 10 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 10 Classification of Microtea species by group average linkage algorithm of cluster analysis based on 13 characters. Black branches connect significantly (P < 0.05) different groups, red branches – insignificantly different groups.
Figure 1 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 1 The phylogenetic tree from maximum likelihood analysis of matK region sequences. The tree with the highest log likelihood (-2983.53) is shown. The analysis involved 18 nucleotide sequences. Codon positions included were 1st+2nd+3rd+Noncoding. There were a total of 828 positions in the final dataset.
Figure 17 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 17 Microteascabrida: A a fragment of the shoot (São Bento do Sul, Santa Catarina, Brazil, 23 Sep 2016) B inflorescence (São Bento do Sul, Santa Catarina, Brazil, 14 Dec 2013). Photographs by Paulo Schwirkowski.
Figure 7 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 7 Fruits and seeds of Microteaportoricensis and M.glochidiata: A, B fruit of M.portoricensis, enclosed in the perianth (Puerto Rico, Cabo Rojo, 1864, Grosourdy 13, P04598159) C, D seed of M.portoricensis (Puerto Rico, Cabo Rojo, 1864, Grosourdy 13, P04598159) E, F fruit of M.glochidiata (Brazil, Maranhão, Barao do Grajau, 21 Jan 2012, R.M. Harley et al. 56455, K) G, H seed of M.glochidiata (Brazil, Maranhão, Barao do Grajau, 21 Jan 2012, R.M. Harley et al. 56455, K). Magnification: A, E – 30×, B, F – 100×, C, G – 50×, D, H – 300×.
Figure 22 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 22 Lectotype of Ancistrocarpusschrankii (fig. 63 in Schrank, 1821). Image provided by the library of Biological Faculty, Lomonosov Moscow State University.
Figure 4 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 4 Fruits and seeds of Microteadebilis and M.celosioides: A, B fruit of M.debilis, enclosed in the perianth (St. Lucia, Soufrière, 1958, G.R. Proctor 17789, BM000019256) C, D seed of M.debilis (Honduras, nr Cangrejal river, foothills of Ceiba, 29 Jul 1938, T.G. Yuncker et al. 8674, G) E, F fruit of M.celosioides (Retiro das Pedras, Brumadinho, 14 Dec 1998, J.R. Stehmann & C.E.S. Ferreira 2399, PACA) G, H seed of M.celosioides (Retiro das Pedras, Brumadinho, 14 Dec 1998, J.R. Stehmann & C.E.S. Ferreira 2399, PACA). Magnification: A, E – 30×, B, F – 100×, C, G – 50×, D, H – 300×.
Figure 5 from: Sukhorukov AP, Sennikov AN, Nilova MV, Mazei Y, Kushunina M, Marchioretto MS, Hanáček P (2019) Evolutionary relationships and taxonomy of Microtea (Microteaceae), a basal lineage in the core Caryophyllales. PhytoKeys 115: 1-50. https://doi.org/10.3897/phytokeys.115.29041
Figure 5 Fruits and seeds of Microteapapillosa and M.scabrida: A, B fruit of M.papillosa, enclosed in the perianth (Diamantina Mun., Estrada Conselheiro Mata, 11 Apr 1982, L. Rossi et al. 3322, PACA) C, D seed of M.papillosa (Diamantina Mun., Estrada Conselheiro Mata, 11 Apr 1982, L. Rossi et al. 3322, PACA) E, F fruit of M.scabrida, enclosed in the perianth (Paraguay, Alto Paraná, 1909, K. Fiebrig 5468, M) G, H seed of M.scabrida (Paraguay, Alto Paraná, 1909, K. Fiebrig 5468, M). Magnification: A, E – 30×, B, F – 100×, C, G – 50×, D, H – 300×.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
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.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.