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865 results for “Mitochondrial genomes”
Figure 3 in The mitochondrial genome of the endemic and endangered trumpet-nosed bat Musonycteris harrisoni (Chiroptera: Phyllostomidae)
Figure 3. Secondary structure of the 22 tRNAs in the mitochondrial genome of Musonycteris harrisoni.
Figure 2 in Whole and nearly complete mitochondrial genomes of an endemic and endangered neotropical rabbit (Romerolagus diazi) assembled using non-invasive eDNA metagenomics (field droppings)
Figure 2. Relative codon usage analysis for protein coding genes (PCGs) in the mitochondrial genome of Romerolagus diazi assembled from eDNA (field collected droppings, sample SRR14209493 [top] and SRR14209494 [bottom]).
Figure 1 in Whole and nearly complete mitochondrial genomes of an endemic and endangered neotropical rabbit (Romerolagus diazi) assembled using non-invasive eDNA metagenomics (field droppings)
Figure 1. Circular DNA mitochondrial genome map of Romerolagus diazi assembled from eDNA (field collected droppings, sample SRR14209493). The annotated map depicts 13 protein-coding genes (PCGs), two ribosomal RNA genes (rrnS: 12S ribosomal RNA and rrnL: 16S ribosomal RNA), 22 transfer RNA (tRNA) genes, and the putative control region (not annotated). Photo credit: J.A. Guerrero.
Figure 5 in The mitochondrial genome of the endemic and endangered trumpet-nosed bat Musonycteris harrisoni (Chiroptera: Phyllostomidae)
Figure 5. (A) Schematic organisation of the control region (CR) in the mitochondrial genome of Musonycteris harrisoni. CR is composed of three functional domains: extended termination associated sequence (ETAS), central domain, and conserved sequence block (CSB). (B) Secondary structure of the tandem repeat located in the CSB domain. (C) Domains and features in the CR sequence of Musonycteris harrisoni. Conserved blocks within each domain are highlighted.
FIGURE 6 in Mitochondrial genomes of three Mylabris (Pseudabris) species (Coleoptera: Meloidae, Mylabrini) and their phylogenetic implications
FIGURE 6. Secondary structure of the tRNAs of M. longiventris mitochondrial genome. The base differences among three Mylabris (Pseudabris) species are marked in green.
FIGURE 8 in Mitochondrial genomes of three Mylabris (Pseudabris) species (Coleoptera: Meloidae, Mylabrini) and their phylogenetic implications
FIGURE 8. Phylogenetic trees of Meloidae inferred using maximum likelihood and Bayesian inference methods based on the nucleotide sequences of the 13 PCGs + 2 rRNAs. The posterior probabilities (pp) and ultra-fast bootstrap values (uBV) are indicated by dot colors on branches.
FIGURE 4 in Mitochondrial genomes of three Mylabris (Pseudabris) species (Coleoptera: Meloidae, Mylabrini) and their phylogenetic implications
FIGURE 4. Nucleotide diversity (Pi) and non-synonymous (Ka) to synonymous (Ks) substitution rate ratios of 13 PCGs of M. hingstoni, M. longiventris, and M. przewalskyi.
FIGURE 3 in Mitochondrial genomes of three Mylabris (Pseudabris) species (Coleoptera: Meloidae, Mylabrini) and their phylogenetic implications
FIGURE 3. Relative synonymous codon usage in the protein-coding genes of the mitochondrial genomes of M. hingstoni, M. longiventris, and M. przewalskyi.
FIGURE 1 in Mitochondrial genomes of three Mylabris (Pseudabris) species (Coleoptera: Meloidae, Mylabrini) and their phylogenetic implications
FIGURE 1. Mitochondrial genome maps of M. hingstoni, M. longiventris, and M. przewalskyi. The arrows indicated the orientation of gene transcription. The tRNAs are denoted by the color blocks and are labelled according to the IUPACIUB single-letter amino acid codes (L1: CUN; L2: UUR; S1: AGN; S2: UCN). The GC content was plotted using a black sliding window, as the deviation from the average GC content of the entire sequence. GC-skew was plotted as the deviation from the average GC-skew of the entire sequence. The inner cycle indicated the location of the genes in the mt genome.
Data from: Evolutionary history of chimpanzees inferred from complete mitochondrial genomes
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Data from: Mitochondrial genomes of Australian chicken Eimeria support the presence of ten species with low genetic diversity among strains
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Data from: The complete mitochondrial genome of the sea urchin, Echinometra sp. EZ
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Data from: Ultraconserved elements sequencing as a low-cost source of complete mitochondrial genomes and microsatellite markers in non-model amniotes
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Data from: The complete mitochondrial genome sequence of the Little Egret (Egretta garzetta)
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Data from: The complete sequence of the mitochondrial genome of Butomus umbellatus - a member of an early branching lineage of monocotyledons
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Mother’s curse and indirect genetic effects: do males matter to mitochondrial genome evolution?
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Data from: The sugarcane mitochondrial genome: assembly, phylogenetics and transcriptomics
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Data from: "Complete mitochondrial and partial nuclear genomes for the jack species Caranx ignobilis (Forsskål, 1775) and C. melampygus (Cuvier, 1833) (Perciformes:Carangidae) from the High Hawaiian Islands" in Genomic Resources Notes accepted 1 October 2013 – 30 November 2013
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Data from: Tunicate mitogenomics and phylogenetics: peculiarities of the Herdmania momus mitochondrial genome and support for the new chordate phylogeny
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Data for: Both Conifer II and Gnetales are characterized by a high frequency of ancient mitochondrial gene transfer to the nuclear genome
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