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53 results for “mitochondrial cytochrome oxidase”
FIGURE 5 in Recognition of a new species of Carmenta from New Mexico supported by morphology and mitochondrial cytochrome oxidase I data (Lepidoptera: Sesiidae: Sesiinae: Synanthedonini)
FIGURE 5. Lateral view of a male Carmenta wildishorum, n. sp.
Figures 2–3. Mitochondrial cytochrome c oxidase subunit 1 in Molecular confirmation of the occurrence of Anguilla interioris (Actinopterygii: Anguilliformes) in North Maluku of Indonesia and mitochondrial DNA haplotype diversity among existing specimens
Figures 2–3. Mitochondrial cytochrome c oxidase subunit 1 (CO1) 551 bp sequence analyses. (2) Phylogenetic analysis based on maximum likelihood algorithm with the sample codes, GenBank or BOLD accession numbers and sample sites shown. Bootstrap percentages are shown at the tree nodes. (3) Haplotype network with the haplotypes labelled as H1 to H9. The circle size is proportional to the number of samples, and different sample sites are represented by different colours. Small white circle represents median vector which is the hypothesized or missing haplotype. Each dash on the line symbolizes one mutational step.
Figure 3 in A comprehensive phylogenetic analysis of Grapsoidea crabs (Decapoda: Brachyura) based on mitochondrial cytochrome oxidase subunit 1 (CO1) genes
Figure 3. Inferred phylogenetic relationships based on nucleotide sequence of mitochondrial CO1 genes using BI (A) and ML (B) analyses. A. distinguendus was used as the outgroup.
Irp2 mediates cigarette smoke-induced bronchitis and emphysema via regulation of cytochrome c oxidase and mitochondrial iron loading
GEO Series GSE57073. Homo sapiens. 6 samples. Type: Expression profiling by high throughput sequencing.
Figure 2 in A comprehensive phylogenetic analysis of Grapsoidea crabs (Decapoda: Brachyura) based on mitochondrial cytochrome oxidase subunit 1 (CO1) genes
Figure 2. Base composition of the CO1 genes of eight Grapsoidea species.
Figure S2 in A comprehensive phylogenetic analysis of Grapsoidea crabs (Decapoda: Brachyura) based on mitochondrial cytochrome oxidase subunit 1 (CO1) genes
Figure S2. Amino acid sequences alignment information of the CO1 genes of eight Grapsoidea species.
Neuronal Deficiency of Cytochrome c Oxidase Engineered by Mitochondrial DNA Editing Recapitulates Amyotrophic Lateral Sclerosis
GEO Series GSE252875. Rattus norvegicus. 28 samples. Type: Expression profiling by high throughput sequencing.
Inhibiting mitochondrial Cytochrome c oxidase downregulates gene transcription after traumatic brain injury in Drosophila
GEO Series GSE158061. Drosophila melanogaster. 48 samples. Type: Expression profiling by high throughput sequencing.
Irp2 mediates cigarette smoke-induced bronchitis and emphysema via regulation of cytochrome c oxidase and mitochondrial iron loading.
GEO Series GSE57048. Mus musculus. 11 samples. Type: Expression profiling by array.
FIGURE 9 in Phylogenetic analysis of the Prionini (Coleoptera: Cerambycidae: Prioninae) from China based on mitochondrial ribosomal RNA genes and Cytochrome oxidase I gene
FIGURE 9. Phylogeny of the Chinese Prionini based on combined sequences of 12S rRNA, 16S rRNA and COI (excluding Priotyrannus closteroides). A: Bootstrap 50% majority-rule consensus tree of distance method by PAUP* with bootstrap values (%), Wtd. S.S. = 0.0245, APSD = 3.011, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; B: Bootstrap 50% majority-rule consensus tree of maximum likelihood method by PAUP* with bootstrap values (%), -Ln likelihood =8113.8589, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; C: Bootstrap 50% majority-rule consensus tree of parsimony method by PAUP* with bootstrap values (%), tree length = 1415, CI = 0.6919, RI =0.3344, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; D: Bayesian tree by MrBayes with Bayesian posterior probabilities (%), the scale bar in the bottom left corner of the tree meaning 0.1 nucleotide substitutions per site.
FIGURE 5 in Phylogenetic analysis of the Prionini (Coleoptera: Cerambycidae: Prioninae) from China based on mitochondrial ribosomal RNA genes and Cytochrome oxidase I gene
FIGURE 5. Phylogeny of the Chinese Prionini based on partial sequences of COI. A: Bootstrap 50% majority-rule consensus tree of distance method by PAUP* with bootstrap values (%), Wtd. S.S. = 0.0455, APSD = 4.103, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; B: Bootstrap 50% majority-rule consensus tree of maximum likelihood method by PAUP* with bootstrap values (%), -Ln likelihood = 3935.3320, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; C: Bootstrap 50% majority-rule consensus tree of parsimony method by PAUP* with bootstrap values (%), tree length =726, CI = 0.6364, RI = 0.2941, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; D: Bayesian tree by MrBayes with Bayesian posterior probabilities (%), the scale bar in the bottom left corner of the tree meaning 0.1 nucleotide substitutions per site.
FIGURE 8 in Phylogenetic analysis of the Prionini (Coleoptera: Cerambycidae: Prioninae) from China based on mitochondrial ribosomal RNA genes and Cytochrome oxidase I gene
FIGURE 8. Phylogeny of the Chinese Prionini based on combined sequences of 12S rRNA, 16S rRNA and COI. A: Bootstrap 50% majority-rule consensus tree of distance method by PAUP* with bootstrap values (%), Wtd. S.S. = 0.0496, APSD = 3.764, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; B: Bootstrap 50% majority-rule consensus tree of maximum likelihood method by PAUP* with bootstrap values (%), -Ln likelihood = 8567.6164, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; C: Bootstrap 50% majority-rule consensus tree of parsimony method by PAUP* with bootstrap values (%), tree length = 1518, CI = 0.6726, RI = 0.3329, the scale bar in the bottom left corner of the tree being in units appropriate to the tree; D: Bayesian tree by MrBayes with Bayesian posterior probabilities (%), the scale bar in the bottom left corner of the tree meaning 0.1 nucleotide substitutions per site.
Neuronal Deficiency of Cytochrome c Oxidase Engineered by Mitochondrial DNA Editing Recapitulates Amyotrophic Lateral Sclerosis [snRNA-seq]
GEO Series GSE275999. Rattus norvegicus. 6 samples. Type: Expression profiling by high throughput sequencing.
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OpenNeuro
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