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Figure 99 from: Onuferko TM (2018) A revision of the cleptoparasitic bee genus Epeolus Latreille for Nearctic species, north of Mexico (Hymenoptera, Apidae). ZooKeys 755: 1-185. https://doi.org/10.3897/zookeys.755.23939
Figure 99 Metasoma (in dorsal view) dampened with water to show differences in integument coloration between T1 of male A E. nebulosus paratype, which is entirely black, and B E. novomexicanus, which is red beneath the apical fascia. Scale bars 2 mm. Note that lightly wetting the terga with ethanol allows for this feature to be seen without having to remove the tomentum.
Figure 2 from: Ummul-Nazrah AR, Mohd Hairul MA, Imin K, Kiew R, Ong PT (2018) Vatica najibiana (Dipterocarpaceae), a new species from limestone in Peninsular Malaysia. PhytoKeys 98: 99-106. https://doi.org/10.3897/phytokeys.98.23903
Figure 2 Vatica najibiana. A Leafy shoot with fruits B Calyx C Petal D–E Fruit F Long & short calyx lobes of fruit G Stellate hair H Fruit nut. (Drawn by N. Mohamad-Aidil from Ummul-Nazrah et al. FRI 86369).
Figure 1 from: Ummul-Nazrah AR, Mohd Hairul MA, Imin K, Kiew R, Ong PT (2018) Vatica najibiana (Dipterocarpaceae), a new species from limestone in Peninsular Malaysia. PhytoKeys 98: 99-106. https://doi.org/10.3897/phytokeys.98.23903
Figure 1 Vatica najibiana. A Plant in its natural habitat B Bole C Inner bark D–E Leafy shoots with infructescences F Fruit. (Photographs by K. Imin & A.R. Ummul-Nazrah).
Figure 9 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 9 Pollen of Exallosperma and Helictosperma. A–D, M Exallosperma longiflora E–H, N Helictosperma malacophylla I–L H. poissoniana. A, E, I polar view B, F, J equatorial view C, G, K mesocolpium D, H, L ectoaperture M, N pollen grain wall. A, M Nusbaumer & Ranirison 1992 B–D De Block et al. 1132 E–H, N Phillipson 3068 I–L Leandri 573.
Figure 5 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 5 Exallosperma longiflora: pyrene and seed. A fruit with exocarp and mesocarp removed, showing two pyrenes B abaxial view of pyrene, showing apical preformed germination slit C adaxial view of pyrene, showing apical preformed germination slit and open centre D lateral view of seed, showing irregular ridges on the seed surface E cross-section through pyrene and seed, showing the adaxial opening of the pyrene, the entire endosperm and the irregular ridges formed by strongly elongated exotesta cells F longitudinal section of seed, showing the embryo position. A–F Capuron 24663-SF.
Figure 4 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 4 Exallosperma longiflora. A habit B stipules C inflorescence D bracteole, ovary and calyx E corolla and stigma F longitudinally opened flower, showing the position of stamens and style G stigma H placenta and ovules, abaxial view I fruit (with bracteole). A–G Capuron 24425-SF H De Block et al. 1132 I Capuron 24663-SF.
Figure 10 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 10 Pseudocoptosperma menabense. A fruiting branch B stipule C triad of flowers (corollas removed) D bracteole, ovary and calyx E corolla, style, stigma and anthers F placenta and ovules, abaxial view G fruit H pyrene I seed J longitudinal section through seed. A, B Groeninckx et al. 108 C–F Martin 8252-SF G–J Rabarivola 19861-SF.
Figure 13 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 13 Pollen of Pseudocoptosperma and Tulearia. A–C, J Pseudocoptosperma menabense D–F, K Tulearia capsaintemariensis G–I, L, M T. splendida. A, D, G polar view B, E, H equatorial view C, F, I mesocolpium J–L ectoaperture M pollen grain wall. A–C, J Capuron 20569-SF; D–F, K Groeninckx et al. 309 G–I, L, M Capuron 20777-SF.
Figure 2 from: Neto NR, Ronqui RA, Seidinger LC, Udulutsch RG (2018) Climbers of the Estação Ecológica de Assis, State of São Paulo, Brazil: floristics and identification keys. PhytoKeys 99: 67-84. https://doi.org/10.3897/phytokeys.99.13659
Figure 2 Apocynaceae (A Blepharodon pictum B Odontadenia lutea). Asteraceae (C Chromolaena maximiliani). Bignoniaceae (D Fridericia craterophora E F. florida F Distictella mansoana G Pyrostegia venusta). Convolvulaceae (H Ipomoea aristolochiaefolia I Merremia macrocalyx).
Figure 1 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 1 BI phylogram of the Afro-Madagascan Pavetteae clade and two outgroup taxa using rps16, trnT-F, petD, accD-psa1, PI and ITS sequences. BPP support is indicated.
Figure 8 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 8 Helictosperma malacophylla: pyrene and seed. A pyrene showing four preformed germination slits, lateral view B pyrene falling apart into four valves along preformed germination slits, lateral view C seed, adaxial view, with embryo position indicated D transverse section through seed. A–D coll. ignot. 19146-SF.
Figure 3 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 3 Tulearia. A–D Tulearia splendida: A habit B flowers C young inflorescence showing calyces and flower buds D young fruits E–K T. capsaintemariensis: E, F habit G branching pattern H top view of flower I lateral view of flower J ovary and calyx K fruit. Photographs: P. De Block (A, B, E, F, J), S. Dessein (C, D), M. Strack Van Schijndel (G–I), I. Van der Beeten (K).
Figure 12 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 12 Tulearia capsaintemariensis. A, habit B adaxial view of leaf C bracteole, ovary and calyx D corolla, style, stigma and anthers E young fruit F transverse section through fruit G seed, lateral view H placenta and ovules, abaxial view I placenta and ovules, adaxial view. A, B, E, F Groeninckx et al. 309 C, D, G–I De Block et al. 2421.
Figure 3 from: Neto NR, Ronqui RA, Seidinger LC, Udulutsch RG (2018) Climbers of the Estação Ecológica de Assis, State of São Paulo, Brazil: floristics and identification keys. PhytoKeys 99: 67-84. https://doi.org/10.3897/phytokeys.99.13659
Figure 3 Dilleniaceae (J. Doliocarpus dentatus). Loganiaceae (K Strychnos bicolor). Malpighiaceae (L Banisteriopsis muricata M B. stellaris N Mascagnia cordifolia). Rhamnaceae (O Gouania latifolia). Sapindaceae (P Serjania confertiflora). Smilacaceae (Q Smilax fluminensis; R. Smilax elastica).
Figure 2 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 2 Exallosperma and Helictosperma. A–C Exallosperma longiflora: A flowering branch B inflorescence C infructescence from herbarium specimen Gautier et al. 4257 D Helictosperma poissoniana, flowering branch E, F Helictosperma malacophylla: E inflorescence F detail of inflorescence. Photographs: P. De Block (A, D), S. Dessein (E, F), L. Nusbaumer (B, C, ©: Conservatoire et Jardin botaniques de la Ville de Genève).
Figure 7 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 7 Helictosperma poissoniana. A flowering branch B dimorphic stipules of vegetative and reproductive nodes C short-shoot bearing young infructescence D bracteole, ovary and calyx E corolla, style, stigma and anthers F fruit G placenta and ovules, abaxial view H placenta and ovules, adaxial view. A, C De Block & Rakotonasolo 797 B De Block 910 D, E Jongkind et al. 3415 F Randriamiera 8795-RN G, H Jongkind et al. 3258.
Figure 11 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 11 Tulearia splendida. A, flowering branch B stipule C bracteole, ovary and calyx D bract E corolla, style, stigma and anthers F fruit G seed H cross-section through seed. A–E De Block et al. 542 F–H Groeninckx et al. 209.
Figure 14 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 14 Distribution maps. A Exallosperma longiflora B Helictosperma malacophylla C H. poissoniana D Pseudocoptosperma menabense E Tulearia splendida F T. capsaintemariensis.
Figure 1 from: Neto NR, Ronqui RA, Seidinger LC, Udulutsch RG (2018) Climbers of the Estação Ecológica de Assis, State of São Paulo, Brazil: floristics and identification keys. PhytoKeys 99: 67-84. https://doi.org/10.3897/phytokeys.99.13659
Figure 1 Study area, Estação Ecológica de Assis, state of São Paulo, Brazil (trails and edges sampled in red).
Figure 6 from: De Block P, Rakotonasolo F, Ntore S, Razafimandimbison SG, Janssens S (2018) Four new endemic genera of Rubiaceae (Pavetteae) from Madagascar represent multiple radiations into drylands. PhytoKeys 99: 1-66. https://doi.org/10.3897/phytokeys.99.23713
Figure 6 Helictosperma malacophylla. A, flowering branch B fruiting branch C flower D bract, bracteole, ovary and calyx E longitudinal section through ovary and calyx F longitudinally opened corolla showing the position of stamens and style G stamens H placenta and ovules, abaxial view I placenta and ovules, adaxial view J fruit. A–C, E–G, J reproduced or adapted from Drake del Castillo (1897: Pl. 422) D De Block et al. 534 H, I De Block et al. 797.
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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.