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1,696 results for “DNA sequence”
Figures 1-3 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 1-3 - Collecting localities of Neuratelia salmelai sp. n. (1, 2) and Neuratelia jabalmoussae sp. n. (3). 1 Palupõhja in Estonia (holotype) 2 Kaita-aapa (Sodankylä) in Finland (a paratype) 3 Mar Elias in Jabal Moussa Biosphere Reserve, Lebanon (holotype).
Figures 9-14 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 9-14 - Male terminalia of Neuratelia jabalmoussae sp. n. (9, 10), Neuratelia caucasica Zaitzev, 1994 (11, 12) and Neuratelia minor (Lundström, 1912) (13, 14). 9, 11, 13 internal view of gonostylus 10, 12, 14 ventral view of ventral branch of gonostylus. Scale bars = 0.1 mm. Abbreviations: gst db = dorsal branch of gonostylus; gst ib = internal branch of gonostylus; gst mb = medial branch of gonostylus;gst vb = ventral branch of gonostylus; vb il = internal lobe of ventral branch of gonostylus; vb ll = lateral lobe of ventral branch of gonostylus; vb ml = medial lobe of ventral branch of gonostylus.
Figures 5-6 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 5-6 - Habitus of Neuratelia species. 5 Neuratelia salmelai sp. n., terminalia detached 6 Neuratelia jabalmoussae sp. n. Scale bar = 1 mm.
Figure 4 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figure 4 - Neighbour-joining tree of the COI 'barcode' region of Neuratelia spp. Scale bar: Kimura 2-parameter genetic distance. Bootstrap supports are presented above the branches. Maximum likelihood analysis of the concatenated (COI, 28S, ITS2) dataset yielded a tree with similar topology, bootstrap supports for the divergencies obtained in this analysis are given below the branches. Support values inferior to 60 are not shown.
Figure 18 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figure 18 - Head and thorax of Neuratelia salmelai sp. n. Scale bar = 0.5 mm. Abbreviations: anepst = anepisternum; aprnt = antepronotum; clyp = clypeus; cx = coxa; fc = face; flgm = flagellar segment; hlt = halter; ltg = laterotergite; mtepst = metepisternum; mtg = mediotergite; oc = ocellus; ped = pedicell; plp = palpal segment; preepst = preepisternum; proepst = proepisternum; sc = scutum; scp = scape; vrt = vertex; wg = wing.
Figures 19-22 from: Kurina O, Õunap E, Põldmaa K (2015) Two new Neuratelia Rondani (Diptera, Mycetophilidae) species from Western Palaearctic: a case of limited congruence between morphology and DNA sequence data. ZooKeys 496: 105-129. https://doi.org/10.3897/zookeys.496.9315
Figures 19-22 - Male terminalia of Neuratelia nemoralis (Meigen, 1818) (19, 21) and Neuratelia salmelai sp. n. (20, 22). Ventral view (19, 20) and dorsal view (21, 22). Scale bar = 0.1 mm. For abbreviations: see Figs 7–8, except: gc dl = dorsoapical lobe of gonocoxite; par = parameres.
Figure 43 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figure 43 - Neighbour-joining tree for Mollitrichosiphum samples based on Cytb sequences. Numbers above branches indicate bootstrap values (>50%).
Figures 27-37 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figures 27-37 - Mollitrichosiphum tumorisiphum Qiao & Jiang, sp. n. Alate viviparous female: 27 dorsal view of body 28 dorsal view of head 29 antennal segments I–IV 30 antennal segments V–VI 31 ultimate rostral segment 32 hind tibia, tarsi and claws 33 spinules on venter of abdominal segment V 34 siphunculus 35 cauda and anal plate 36 genital plate. Second instar larva: 37. dorsal view of body. Scale bars = 0.10 mm.
Figures 1-12 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figures 1-12 - Mollitrichosiphum tumorisiphum Qiao & Jiang, sp. n. Apterous viviparous female: 1 dorsal view of head 2 antenna 3 ultimate rostral segment 4 mesosternal furca 5 hind tibia 6 dorsal seta on abdominal tergite I 7 spinules on venter of abdominal segment V 8 siphunculus 9 cauda 10 anal plate 11 genital plate. Alate viviparous female: 12. antennal segment III. Scale bars = 0.10 mm.
Figure 42 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figure 42 - Neighbour-joining tree for Mollitrichosiphum samples based on COI sequences. Numbers above branches indicate bootstrap values (>50%).
Figures 13-26 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figures 13-26 - Mollitrichosiphum tumorisiphum Qiao & Jiang, sp. n. Apterous viviparous female: 13 dorsal view of body 14 dorsal view of head 15 compound eyes 16 antennal segments I–IV 17 antennal segments V–VI 18 ultimate rostral segment 19 mesosternal furca 20 hind tibia, tarsi and claws 21 dorsal seta on abdominal tergite I 22 spinules on venter of abdominal segment V 23 siphunculus 24 cauda; 25 anal plate 26 genital plate. Scale bars = 0.10 mm.
Figures 38-41 from: Jiang L-Y, Chen J, Qiao G-X (2015) A new species of Mollitrichosiphum Suenaga from Taiwan Island (Hemiptera, Aphididae), based on morphological characteristics and DNA sequences. ZooKeys 524: 45-63. https://doi.org/10.3897/zookeys.524.6075
Figures 38-41 - Mollitrichosiphum tumorisiphum Qiao & Jiang, sp. n. 38 colony on the bud of the host 39 colony on the underside of the leaf 40 apterous viviparous female and larvae 41 apterous, alate viviparous females and larvae.
Figure 3 from: Zhao L, Gao T, Lu W (2015) Complete mitochondrial DNA sequence of the endangered fish (Bahaba taipingensis): Mitogenome characterization and phylogenetic implications. ZooKeys 546: 181-195. https://doi.org/10.3897/zookeys.546.5964
Figure 3 - Phylogenetic relationships among Sciaenidae species based on the combined 9988 bp nucleotide positions. The posterior probability value of BI analyses and bootstrap support values of ML analyses (in the order: BI, ML) are indicated near the branches.
Figure 2 from: Zhao L, Gao T, Lu W (2015) Complete mitochondrial DNA sequence of the endangered fish (Bahaba taipingensis): Mitogenome characterization and phylogenetic implications. ZooKeys 546: 181-195. https://doi.org/10.3897/zookeys.546.5964
Figure 2 - Potential secondary structure of the origin of L-strand replication (OL) of Bahaba taipingensis mtDNA.
DNA sequencing
<p>DNA seuening</p>
Supplementary material 1 from: Röder N, Schwenk K (2023) Direct PCR meets high-throughput sequencing – metabarcoding of chironomid communities without DNA extraction. Metabarcoding and Metagenomics 7: e102455. https://doi.org/10.3897/mbmg.7.102455
Overview of chironomid size classes
Supplementary material 2 from: Röder N, Schwenk K (2023) Direct PCR meets high-throughput sequencing – metabarcoding of chironomid communities without DNA extraction. Metabarcoding and Metagenomics 7: e102455. https://doi.org/10.3897/mbmg.7.102455
Composition of the two artificial chironomid communities
DNA sequencing at picogram level to investigate life on Mars and Earth
<p>For studying life within the rocks of Earth and Mars, we demonstrate, in an ISO 5 clean room, a procedure based on MinION nanopore technology that correctly identifies organisms with only 2 pg of DNA without amplification, which represents unprecedented sensitivity. The folder contains fast5 and fastq passed and failed sequencing files of all the experiments conducted to investigate ONT's MinION ability to detect and characterize extremely low biomass. </p>
All DNA sequences in datasets D1-D7
<p>All DNA sequences in datasets D1-D7.</p>
Data from: PSMC (pairwise sequentially Markovian coalescent) analysis of RAD (restriction site associated DNA) sequencing data
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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.