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1,918 results for “molecular evidence”
Fig. 4 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 4. Itatingamyia couriae Haseyama and de Carvalho, 2011, female genitalia UFMG-IDI-1600467.(A) Ovipositor, dorsal view.Scale:1 mm; (B) Ovipositor,ventral view. Scale: 1 mm; (C) Spermathecae. Scale: 0.2 mm.
Fig. 1 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 1. Molecular phylogenetic hypothesis using Maximum Likelihood of the combined mitochondrial (COI) and nuclear (AATS, CAD, and EF1-a) protein-coding genes for 68 species of Muscidae highlighting the position of Itatingamyia within the Cyrtoneurininae. Subfamily-level classification follows Haseyama et al. (2015). Numbers on nodes are SH-aLRT, aBayes, and Ultrafast Bootstrap support values.
Fig. 5 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 5. Known collection sites for Itatingamyia species. Blue squares: I. bivittata. Red circles: I. couriae. Darker green area: Atlantic forest biome. Yellowish green area: Cerrado biome. Yellowish gray area: Caatinga biome.
Fig. 3 in New systematic position of Itatingamyia Albuquerque (Diptera, Muscidae) based on molecular evidence, and description of the female of I. couriae
Fig. 3. Itatingamyia couriae Haseyama and de Carvalho, 2011, female UFMG-IDI- 1600467. (A) lateral habitus view. Scale: 3 mm; (B) dorsal habitus view. Scale: 3 mm; (C) head, frontal view. Scale: 0.75 mm; (D) egg, dorsal view. Scale: 0.3 mm.
Fig. 3 in Molecular Phylogenetics Evidence for a Novel Lineage of Amoebae Within Discosea (Amoebozoa: Lobosa)
Fig. 3. Maximum-Likelihood trees including partial sequences retrieved from GenBank, based on the 660-bp Ami fragment (A – LG30-03 positions: 566-1228), and on the first 5' 550-bp portion (B – LG30-03 positions: 1-547). Trees were rooted on the Dermamoebidae. At nodes, BV for ML/NJ/MP (filled circles – 100% BV with all methods; * – node supported but BV <40%). See Fig. 1 for acc. nos.
FIGURE 6 in Two new diploid species of Isoetes (Isoetaceae: Lycopodiopsida) from Southeastern China based on morphological and molecular evidence
FIGURE 6. Distribution of Isoetes changleensis (blue) and I. yuhangensis (red) in China.
FIGURE 3 in Two new diploid species of Isoetes (Isoetaceae: Lycopodiopsida) from Southeastern China based on morphological and molecular evidence
FIGURE 3. Chloroplast of Isoetes yuhangensis and I. changleensis.
Figure 4. A in Description of 17 new species of Semisulcospiridae (Gastropoda: Cerithioidea) from southern China based on morphological and molecular evidence
Figure 4. A Bayesian inference (BI) tree based on the COI sequence. Values at nodes represent support values for BI and maximum likelihood (ML). Only values> 0.5 or 70 are shown.
Fig. 5. A in New Species Of Ilyoplax (Brachyura: Ocypodidae: Dotillinae) From The Philippines And Indonesia: Behavioral, Molecular, And Morphological Evidence
Fig. 5. A, successive postures of waving display by Ilyoplax tansuiensis. Values above crabs indicate time in second from the initial position (the mean value of 59 wavings, 7 males). Drawings are traced from videotapes; B, successive postures of waving display by Ilyoplax pacifica, new species. Values above crabs indicate time in second from the initial position (the mean value of 100 wavings, 10 males). Drawings are traced from videotapes.
Figure 4. Reproductive system. A – D in Dina serbica, a new species of leeches (Annelida: Hirudinea: Erpobdellidae) from Serbia, based on morphological and molecular evidence
Figure 4. Reproductive system. A – D. minuoculata Grosser, Moritz & Pešić, 2007, paratype, a first order stream in the Tara river canyon, Montenegro. B – Dina serbica sp. nov., paratype, spring along the road to Kamena Gora, Serbia. Abbreviations: a = genital atrium, b = vas deferens, c = ovarian sacks, d = testisacs.
FIGURE 4 in Porpomyces submucidus (Hydnodontaceae, Basidiomycota), a new species from tropical China based on morphological and molecular evidence
FIGURE 4. Porpomyces submucidus (holotype). A basidiocarp.
FIGURE 5 in A new species of Maytenus (Celastraceae) from the Brazilian Atlantic Forest, with evidence of molecular phylogeny, and two new synonyms for Maytenus floribunda
FIGURE 5. Maytenus nemorosa. Inflorescence [Pardo et al. 402 (HRCB)].
FIGURE 4 in A new species of Maytenus (Celastraceae) from the Brazilian Atlantic Forest, with evidence of molecular phylogeny, and two new synonyms for Maytenus floribunda
FIGURE 4. Maytenus nemorosa. Flower in detail [Pardo et al. 402 (HRCB)].
FIGURE 2. A in Fulvifomes parviungulatus (Hymenochaetales, Basidiomycota), a new species from China based on morphological and molecular evidence
FIGURE 2. A fresh basidiocarp of Fulvifomes parviungulatus (Holotype). Scale bar = 1 cm.
FIGURE8 in Taxonomic evaluation of Miscanthus nudipes (Poaceae) based on morphological and molecular evidence
FIGURE8. Temperature and precipitation data of habitats of 15 populations of Miscanthus nudipes.
FIGURE 1 in Liparis wenshanensis, a new orchid species from China: Evidence from morphological and molecular analyses
FIGURE 1. Consensus trees based on ITS data.
FIGURE 3 in Liparis wenshanensis, a new orchid species from China: Evidence from morphological and molecular analyses
FIGURE 3. Consensus trees based on ITS and matK data.
FIGURE 2 in Liparis wenshanensis, a new orchid species from China: Evidence from morphological and molecular analyses
FIGURE 2. Consensus trees based on matK data.
FIGURE 4 in Molecular and morphological evidences reveal two new species in Grammothele and Theleporus (Basidiomycota) from southern China
FIGURE 4.—Basidiocarps of Theleporus rimosus (holotype).
FIGURE 2 in Molecular and morphological evidences reveal two new species in Grammothele and Theleporus (Basidiomycota) from southern China
FIGURE 2.—Basidiocarps of Grammothele separabillima (holotype).
ScienceDex guides
Understand access before you commit
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.