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452 results for “Mitogenomics”

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zenodo32/100

FIGURE 14 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 14. Rhaphidophora shii sp. nov. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–I. apex of abdomen: D. apico-ventral view, E. apical view, F, I. ventral view, G. lateral view, H. apical and ventral view; J–K. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 11 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 11. Rhaphidophora mohanensis sp. nov. Female: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–G. apex of abdomen: D. dorsal and apical view, E. lateral view, F. ventral view; G. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 8 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 8. Rhaphidophora incilis Bian, Zhu & Shi, 2017. Male (from Liuwanshan, Yulin, Guangxi): A, C. head: A. frontal view, C. dorsal view; B, D. head and thoraces: B. dorsal view, D. lateral view; E–H. apex of abdomen: E. lateral view, F. apical and slightly ventral view, G. dorsal view, H. ventral view; I. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 6 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 6. Rhaphidophora duxiu sp. nov. Female nymph: A. head in frontal view; B–C. head and thoraces: B. lateral view, C. dorsal view; D–F. apex of abdomen: D. apico-dorsal view, E. lateral view, F. ventral view; G. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 10 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 10. Rhaphidophora incilis Bian, Zhu & Shi, 2017. Female (Daweishi Tiankeng, Leye, Guangxi): A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–F. apex of abdomen: D. apico-dorsal view, E. lateral view, F. ventral view; G. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 4 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 4. Rhaphidophora digitata sp. nov. Female: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–F. apex of abdomen: D. dorsal view, E. lateral view, F. ventral view; G. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 9 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 9. Rhaphidophora incilis Bian, Zhu & Shi, 2017. Female (From Damingshan, Guangxi): A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–G. apex of abdomen: D. lateral view, E. apico-dorsal view, F. dorsal view, G. ventral view; H–I. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 7 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 7. Rhaphidophora duxiu sp. nov. Female: A–B. head: A. frontal view, B. dorsal view; C–D. head and thoraces: C. lateral view, D. dorsal view; E–G. apex of abdomen: E. lateral view, F. apico-dorsal view, G. ventral view; H. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 12 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 12. Rhaphidophora quadrula Bian, Zhu & Shi, 2017. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–E. apex of abdomen: D. apico-dorsal view, E. lateral view, F. ventral view; G. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 5 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 5. Rhaphidophora duxiu sp. nov. Male: A, C. head: A. frontal view, C. dorsal view; B, D. head and thoraces: B. dorsal view, D. lateral view; E–H. apex of abdomen: E. lateral view, F. ventral view, G. ventral view, H. apico-dorsal view; I. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 17. Rhaphidophora xishuang Gorochov, 2012 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 17. Rhaphidophora xishuang Gorochov, 2012. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–H. apex of abdomen: D. dorsal view, E. apical view, F. lateral view, G–H. ventral view; I. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 2 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 2. Rhaphidophora digitata sp. nov. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–I. apex of abdomen: D. lateral view, E. dorsal view, F–G. apical view, H–I. ventral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 3 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 3. Rhaphidophora digitata sp. nov. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–H. apex of abdomen: D. lateral view, E. dorsal view, F. dorsal and slightly apical view, G. apico-ventral view, H. ventral view; I. subgenital plate in ventral view; J. tarsus of hind leg in lateral view.

opennotspecifiedJan 2022View details →
zenodo32/100

FIGURE 1 in Contribution to the Chinese subfamily Rhaphidophorinae Walker, 1869 (Orthoptera: Rhaphidophoridae: Rhaphidophorinae) IV: Seven new species of Rhaphidophora and one new mitogenome

FIGURE 1. Rhaphidophora complanatis sp. nov. Male: A. head in frontal view; B–C. head and thoraces: B. dorsal view, C. lateral view; D–L. apex of abdomen: D. lateral view, E. dorsal view, F–G. apical view, H. apico-lateral view, I. apical and slightly ventral view, J. apical and ventral view, K–L. ventral view.

opennotspecifiedJan 2022View details →
dryad32/100

Distinctive mitogenomic lineages within populations of white-tailed eagles (Haliaeetus albicilla)

<p>Using whole mitochondrial DNA sequences from 89 white-tailed eagles (<i>Haliaeetus albicilla</i>) sampled from Iceland, Greenland, Norway, Denmark and Estonia between 1990-2018, we investigate the mitogenomic variation within and between countries. We show that there is a substantial population differentiation between the countries, reflecting similar major phylogeographic patterns obtained previously for the control region of the mitochondria, which suggested two main refugia during the last glacial period of Ice Age. Distinct mitogenomic lineages are observed within countries which divergence times exceeds the time since last glacial period of Ice Age ended. The lineages appear to have been maintained by natural selection. An excess of segregating amino acids in comparison with number of fixations, as revealed by the neutrality index suggests a load of deleterious mutations. The maintenance of mtDNA lineages within countries inflates our estimates of effective national population sizes and the times of their divergence.</p>

opencc-zeroJan 2022View details →
zenodo32/100

FIGURE 1 in Mitogenomic features of three species of Entomobryoidea (Collembola) from China

FIGURE 1. Circular representation of the mitogenomes of Coecobrya sp., Sinhomidia bicolor, and Alloscopus bannaensis, respectively from top to bottom. The innermost circle shows the GC content, the middle circle shows the reads coverage and the outermost circle shows the gene features, rRNA, tRNA, and CDS.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE 4 in Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

FIGURE 4. Pairwise dN/dS (ω) ratio of the 13 protein coding genes and the concatenated matrix in 48 taxa. The boxplot shows the median (central line), first and third quartiles (box limits), and outlier values (dots).

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE 1 in Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

FIGURE 1. Mitochondrial genomes of Diceraeus melacanthus, Euschistus heros, Piezodorus guildinii, and Stiretrus anchorago. Direction of gene transcription is as indicated by the strand arrows. Transfer RNAs (tRNAs) are represented by the three-letter IUPAC-IUB amino acid code.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE 3 in Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

FIGURE 3. Phylogenetic tree of Pentatomidae based on mitochondrial genomes. Tree built based on 13 protein coding genes and 2 ribosomal RNA genes using Bayesian Inference. Species whose mitogenomes were assembled in this work are labeled in bold. Branch labels are the Bayesian posterior probabilities. The length of the branches is proportional to the genetic distance. Outgroup branches are not to scale (dashed lines). The subfamilies of Pentatomidae are shown by vertical bars.

opennotspecifiedMar 2022View details →
zenodo32/100

FIGURE 2 in Four new stink bug mitogenomes corroborate the internal inconsistencies in the classification of Pentatomidae (Hemiptera)

FIGURE 2. Uncommon transfer RNA (tRNA) structures predicted for the assembled mitochondrial genomes. The tRNA-His of Euschistus heros lacks the TΨC arm (T-arm), while tRNA-Val of Diceraeus melacanthus lacks the dihydrouridine arm (Darm).

opennotspecifiedMar 2022View details →

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International Brain Laboratory public data

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