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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×.
Figure 3 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 3 Cross-section of the fruit of Microteaglochidiata, showing the embryo and perisperm covered by the tegmen (Brazil, Bahia, Tucano Mun., 20 Feb 1992, A.M. de Carvalho & D.J.N. Hind 3841, PACA). Abbreviations: P – pericarp with plumose outgrowths, T – testa of the seed coat (tegmen covers perisperm and embryo), PE – perisperm, E – embryo. Magnification – 50×.
Figure 2 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 2 The phylogenetic tree from maximum likelihood analysis of ITS region sequences. The tree with the highest log likelihood (-2848.78) is shown. The analysis involved 9 nucleotide sequences. There were a total of 754 positions in the final dataset.
Contrasting evolutionary patterns between sexual and asexual lineages in a genomic region linked to reproductive mode variation in the pea aphid
<p>SNP dataset and outputs from BayPass, Popoolation and npstat, together with the script used to plot these data in a submited article entitled "Contrasting evolutionary patterns between sexual and asexual lineages in a genomic region linked to reproductive mode variation in the pea aphid" by M. Rimbault, F. Legeai<sup>,</sup>J. Peccoud, L. Mieuzet, E. Call, P. Nouhaud, H. Defendini, F. Mahéo, W. Marande, N. Théron, D. Tagu, G. Le Trionnaire, J.-C. Simon, J. Jaquiéry<sup>.</sup></p>
Data from: Evidence for a discrete evolutionary lineage within Equatorial Guinea suggests that the tsetse fly Glossina palpalis palpalis exists as a species complex
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Data from: Aging asexual lineages and the evolutionary maintenance of sex
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Data from: Differential response to heat-stress among evolutionary lineages of an aquatic invertebrate species complex
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Data from: Lineage-specific sequence evolution and exon edge conservation partially explain the relationship of evolutionary rate and expression level in A. thaliana
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Data from: Evaluating alternative explanations for an association of extinction risk and evolutionary uniqueness in multiple insular lineages.
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Data from: Stochastic character mapping of state-dependent diversification reveals the tempo of evolutionary decline in self-compatible Onagraceae lineages
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Data from: Ecological and evolutionary dynamics of coexisting lineages during a long-term experiment with E. coli
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A new method for quantifying heterochrony in evolutionary lineages
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Evolutionary rewiring of wheat abiotic stress responsive network by lineage-specific transposable elements [DAP-Seq]
GEO Series GSE167227. Triticum urartu. 119 samples. Type: Genome binding/occupancy profiling by high throughput sequencing.
In vivo single cell transcriptomics reveals Klebsiella pneumoniae-governed polarization of ontogenetically distinct macrophage lineages by targeting an evolutionary conserved type I IFN-IL10-STAT6 axi
GEO Series GSE184290. Mus musculus. 6 samples. Type: Expression profiling by high throughput sequencing.
Figure 15 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 15 Distribution map of Microteacelosioides.
Figure 18 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 18 Distribution map of Microteascabrida.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.