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1,918 results for “molecular evidence”
Supplementary material 3 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
: Data type: molecular data
Supplementary material 2 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
: Data type: molecular data
Supplementary material 1 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
: Data type: molecular data
Figure 1 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
Figure 1 Known biogeographic breaks for co-distributed animal species in South Africa, including the A Hottentots Holland Mountains (blue) B The Breede River Valley (red) and C the Bedford gap (Yellow). The Duberrial.lutrix localities sampled throughout South Africa during the present study. Locality numbers correspond to the sample site numbers in Table 1.
Figure 3 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
Figure 3 A minimum spanning network derived from combined mtDNA (ND 4 + cyt b) analyses demonstrating the five haploclades for Duberrial.lutrix. The number inside the boxes correspond to the haplotypes in Table 3. The closed black dots represent unsampled or missing haplotypes.
Figure 4 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
Figure 4 A Bayesian inference topology for the total evidence data sets (ND4 + cyt b + SPTBN1) amongst the South African Duberrial.lutrix species complex. The posterior probability value (pP) values are presented above each node. Only pP values >0.95 are shown. Values below each node are bootstrap values for MP. Only bootstrap values >75% are shown. An asterisk (*) below or above a node indicates the absence of statistical support.
Figure 2 from: Kulenkampff K, Van Zyl F, Klaus S, Daniels SR (2019) Molecular evidence for cryptic species in the common slug eating snake Duberria lutrix lutrix (Squamata, Lamprophiidae) from South Africa. ZooKeys 838: 133-154. https://doi.org/10.3897/zookeys.838.32022
Figure 2 A Bayesian inference topology derived from the combined mtDNA analyses (ND4 + cyt b) amongst the South African Duberrial.lutrix. The posterior probability value (pP) values are presented above each node. Only pP values >0.95 are shown. Values below each node are bootstrap values for MP. Only bootstrap values >75% are shown. An asterisk (*) below or above a node indicates the absence of statistical support. The insert shows the typical Duberrialutrixlutrix.
Figure 1 from: Song Z-Q, Yao G, Pan B, Li J-W, Huang X-X, Tan Y-H, Xu D-X (2019) Return Verdesmum menglaense to the genus Hylodesmum (Fabaceae) based on morphological and molecular evidence. PhytoKeys 126: 1-12. https://doi.org/10.3897/phytokeys.126.34599
Figure 1 Hylodesmummenglaense (≡Verdesmummenglaense). A habitat B adaxial leaf surface C abaxial leaf surface, showing scattered white spots D stipules E a node of inflorescences, showing a primary bract (PB) and a secondary bract (SB), but without bracteoles at base of calyx, (F) a flower with the different parts separated, especially showing the terminal minute capitate stigma of the ovary, (G) linear pods with very narrow obovate-elliptic articles, bar = 2 mm.
Figure 2 from: Song Z-Q, Yao G, Pan B, Li J-W, Huang X-X, Tan Y-H, Xu D-X (2019) Return Verdesmum menglaense to the genus Hylodesmum (Fabaceae) based on morphological and molecular evidence. PhytoKeys 126: 1-12. https://doi.org/10.3897/phytokeys.126.34599
Figure 2 Phylogenetic relationships amongst 53 species from 30 genera of the tribe Desmodieae based on the trnL-F sequence data using Maximum Likelihood analysis. Numbers at the nodes are posterior probabilities and bootstrap percentages (PP, BP) from Bayesian and Maximum Likelihood analysis, respectively. A dash (--) indicates PP < 0.5 or BP < 50%. The grey cover shows the representative of Hylodesmum within which Verdesmummenglaense (indicated by bold font) was deeply embedded.
Figure 4 from: Zheng H-D, Zhuang W-Y (2019) Three new species of Dicephalospora from China as revealed by morphological and molecular evidences. MycoKeys 55: 87-99. https://doi.org/10.3897/mycokeys.55.33859
Figure 4 Dicephalosporayunnanica (HMAS 279699, holotype) a fresh apothecia on natural substrate b dried apothecia c longitudinal section of apothecium d structure of margin, flank and hymenium e, f asci g IKI reaction of apical rings h ascospores. Mouting media: c–e, h lacto-phenol cotton f, g lugol's solution. Scale bars: 5 mm (a); 2 mm (b); 200 μm (c); 20 μm (d); 10 μm (e–g); 5 μm (h).
Figure 2 from: Zheng H-D, Zhuang W-Y (2019) Three new species of Dicephalospora from China as revealed by morphological and molecular evidences. MycoKeys 55: 87-99. https://doi.org/10.3897/mycokeys.55.33859
Figure 2 Dicephalosporaalbolutea (HMAS 279693, holotype). a fresh apothecia on natural substrate b longitudinal section of apothecium c structure of margin and hymenium d structure of flank e asci f IKI reaction of apical rings g ascospores. Mouting media: b–e, g lacto-phenol cotton f lugol's solution. Scale bars: 5 mm (a); 200 μm (b); 20 μm (c, d); 10 μm (e, f); 5 μm (g).
Figure 3 from: Zheng H-D, Zhuang W-Y (2019) Three new species of Dicephalospora from China as revealed by morphological and molecular evidences. MycoKeys 55: 87-99. https://doi.org/10.3897/mycokeys.55.33859
Figure 3 Dicephalosporashennongjiana (HMAS 279698, holotype) a fresh apothecia on natural substrate b dried apothecia c longitudinal section of apothecium d structure of margin, flank and hymenium e asci f IKI reaction of apical rings g ascospores in an ascus h ascospores. Mouting media: c–e, g, h lacto-phenol cotton f fugol's solution. Scale bars: 2 mm (a); 0.4 mm (b); 200 μm (c); 20 μm (d); 10 μm (e–h).
Figure 1 from: Zheng H-D, Zhuang W-Y (2019) Three new species of Dicephalospora from China as revealed by morphological and molecular evidences. MycoKeys 55: 87-99. https://doi.org/10.3897/mycokeys.55.33859
Figure 1 One of the MP trees inferred from ITS sequences. Bootstrap support values (≥50%) of MP and NJ are shown at nodes from left to right. New proposed species are shown in bold. New species are in bold. Sequences derived from holotypes are marked with an asterisk (*).
Figures 21-28 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figures 21-28 Centruroidesromeroi sp. nov., female paratype: 21 carapace 22 mesosoma 23 tergite VII 24 sternite VII 25 coxoesternal region 26 femur 27 pedipalp patella in dorsal aspect 28 metasomal segment V and telson.
Figures 12-17 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figures 12-17 Centruroidesromeroi sp. nov., male holotype: 12 sternites 13 coxoesternal region and sternite III 14 lateral view of metasomal segment V 15 lateral view of telson 16 right chelicera 17 dorsal aspect of pedipalp femur.
Figures 6-11 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figures 6-11 Centruroidesromeroi sp. nov., male holotype: 6 carapace 7 dorsal aspect of mesosoma 8 dorsal aspect of pedipalp 9 manus 10 lateral aspect of metasomal segments III–V and telson 11 tergites I–IV.
Figure 32 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figure 32 Phylogenetic trees of the Centruroidesinfamatus subgroup obtained by A maximum parsimony and B maximum likelihood analysis from 500 replicates bootstrap consensus. The specimens used as terminal belong to populations of the species that inhabit localities near the Coalcomán Range. Population identifications are represented by different colors.
Figure 29 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figure 29 Centruroidesromeroi sp. nov., ventral aspect of hemispermatophores of adult ♂ from "La Nieve" of Coalcomán municipality, Michoacán, Mexico. a Left side b Right side. Abbreviations: il, internal lobe. el, external lobe. ml, medial lobe. pf, pedal flexure. Tf, trunk flexure. Scale bar: 0.5 mm.
Figure 30 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figure 30 Comparison among pedipalps, metasomal segment V and telson of Centruroidesromeroi sp. nov. (a, c, i); C.ruana (b, f, j); C.infamatus (c, g, k) and C.ornatus (d, h, l).
Figures 2-5 from: Quijano-Ravell AF, de Armas LF, Francke OF, Ponce-Saavedra J (2019) A new species of the genus Centruroides Marx (Scorpiones, Buthidae) from western Michoacán State, México using molecular and morphological evidence. ZooKeys 859: 31-48. https://doi.org/10.3897/zookeys.859.33069
Figures 2-5 Centruroidesromeroi sp. nov., habitus. 2–3 dorsal and ventral views of the male holotype 4–5 dorsal and ventral view of female paratype.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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