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865 results for “Mitochondrial genomes”
FIGURE 2 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 2. Tree trunk with males of Cardiodactylus muiri Otte, 2007 engaged in singing activity during late afternoon in Kumawa forest (Papua, Indonesia). Red circles mark males' positions; height ca. 4 m.
FIGURE 1 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 1. Habitat of Cardiodactylus muiri Otte, 2007. A, dead tree trunk in Kumawa (Papua, Indonesia); B, C, male sitting on dead tree (A) during the day.
FIGURE 3 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 3. Females of Cardiodactylus muiri Otte, 2007. A, walking on leaf litter during early night; B, ovipositing in a mossy tree root at night; in Kumawa (Papua, Indonesia).
FIGURE 8 in Complete mitochondrial genome and taxonomic revision of Cardiodactylus muiri Otte, 2007 (Gryllidae: Eneopterinae: Lebinthini)
FIGURE 8. Percentage of pairwise identical bases (% identity) of mitogenome and each gene between the two subfamilies and within Gryllinae.
FIGURE 2 in An additional record of Fejervarya manoharani Garg and Biju from the Western Ghats with a description of its complete mitochondrial genome
FIGURE 2. Newly collected specimens of Fejervarya manoharani from a new locality in the Western Ghats. (a-c) Lateral, lateral view with vocal sac and dorsal, (d) Ventral view of snout, ventral view of (e) foot (f) hand of a male in life (ZSI A 14170), and (g–h) lateral and dorsal view of another male (ZSI A 14171).
FIGURE 4 in An additional record of Fejervarya manoharani Garg and Biju from the Western Ghats with a description of its complete mitochondrial genome
FIGURE 4. Map showing the organization of genes in the mitochondrial genome of Fejervarya manoharani. Arrow represents the direction of gene transcription.
FIGURE 1. A in An additional record of Fejervarya manoharani Garg and Biju from the Western Ghats with a description of its complete mitochondrial genome
FIGURE 1. A map showing the distribution of our specimens, F. manoharani and F. rufescens in Western Ghats of India.
Figure 1 in Two new decapod (Crustacea: Malacostraca) complete mitochondrial genomes: bearings on the phylogenetic relationships within the Decapoda
Figure 1. Mitochondrial genome maps of Alpheus distinguendus and Panulirus ornatus. Protein-coding genes in the majority strand (J strand) are transcribed in a clockwise direction, except for those in the minority strand (N strand) indicated by underlining. The two ribosomal RNA genes are encoded by the N strand. All the darkly coloured transfer RNA (tRNA) genes encoded by the J and N strand are presented outside and inside the circular gene map, respectively. The tRNA genes are given as single-letter amino acid codes, except those encoding leucine and serine, which are labelled L1 (trnL(CUN)) and L2 (trnL (UUR)), and as S1 (trnS(AGN)) and S2 (trnS(UCN)), respectively. Numbers inside the circles represent the size of the fragments separating two adjacent genes (positive values) or the amount of shared nucleotides between two overlapping genes (negative values).
Figure 3 in Two new decapod (Crustacea: Malacostraca) complete mitochondrial genomes: bearings on the phylogenetic relationships within the Decapoda
Figure 3. The secondary structures of the noncoding regions in the mt genome of Panulirus ornatus and Panulirus japonicus are labelled by A and B, respectively. The duplicate 89 bp sequences in the noncoding region of P. ornatus are compared in their secondary structures by arrows pointing to four numbers i.e. 1, 89, 428, and 516 sites in A, which correspond to Repeat sequence 1 and 2 (RS1 & RS2), in C.
Figure 2 in Two new decapod (Crustacea: Malacostraca) complete mitochondrial genomes: bearings on the phylogenetic relationships within the Decapoda
Figure 2. Comparisons amongst the putative secondary structures for functional trnR (CGA) (A) and pseudogene-like trnS (AGN) (B) from the mitochondrial (mt) genome of Alpheus distinguendus, and the functional trnS (AGN) (C) from the mt genome of Panulirus ornatus. AU/GC pairs are indicated by dashes and GU bonds are indicated by dots. The nucleotide base located in the third codon positions of pseudogene-like trnS (AGN) is G instead of the usual base U, which is indicated by an arrow.
Figure 4 in Two new decapod (Crustacea: Malacostraca) complete mitochondrial genomes: bearings on the phylogenetic relationships within the Decapoda
Figure 4. Phylogenetic analyses of the nucleotide sequence (A) and amino acid datasets (B) derived from the Decapoda using the maximum likelihood (ML) analyses and Bayesian inferences (BI), respectively. Bayesian posterior probability (BPP) and bootstrap support (BP) of each node are denoted by the asterisk indicating the well-supported values (BPP = 1.00 and simultaneously BP> 90), or otherwise are presented directly. The phylogram shown is from BI except that the a' clade was based on amino acid datasets from ML analyses. Scale bars represent 0.1 mutations per site.
The complete mitochondrial genome of Argania spinosa
<p>This repository contains the shared data of the mitochondrial genome report of <i>Argania spinosa</i></p>
Supplementary material 1 from: Duan Y-B, Wang Y-J, Zhu D-H, Zeng Y, Wang X-D (2024) Description and mitochondrial genome sequencing of a new species of inquiline gall wasp, Synergus nanlingensis (Hymenoptera, Cynipidae, Synergini), from China. Journal of Hymenoptera Research 97: 105-126. https://doi.org/10.3897/jhr.97.119433
List of universal insect mitochondrial short fragments of the cox1, cob, rrnL and D2 genes primers used for long PCR primer developments
Figure 2 in Genomic survey sequencing and complete mitochondrial genome of the elkhorn coral crab Domecia acanthophora (Desbonne in Desbonne & Schramm, 1867) (Decapoda: Brachyura: Domeciidae)
Figure 2. Visualisation of assembled mitochondrial genome of Domecia acanthophora. Photo by Yun Scholten.
Figure 1 in Genomic survey sequencing and complete mitochondrial genome of the elkhorn coral crab Domecia acanthophora (Desbonne in Desbonne & Schramm, 1867) (Decapoda: Brachyura: Domeciidae)
Figure 1. Repetitive elements in the genome of Domecia acanthophora. Each bar corresponds to a different type of annotated cluster. Numbers between parentheses in the legend represent the total number of annotated clusters in that category.
Figure 4 in Genomic survey sequencing and complete mitochondrial genome of the elkhorn coral crab Domecia acanthophora (Desbonne in Desbonne & Schramm, 1867) (Decapoda: Brachyura: Domeciidae)
Figure 4. Mitochondrial gene order (MGO) of Domecia acanthophora compared to that of the brachyuran basic gene order, with the two transposition events highlighted.
FIGURE 1 in A new species of the genus Tuberfemurus (Orthoptera: Tetrigoidea: Cladonotinae) with comments on the characters of mitochondrial genome
FIGURE 1. Tuberfemurus viridulus sp. nov. A–B. Female body, dorsal and lateral views; C–D. Male body, dorsal and lateral views; E. Female head, frontal view; F–H. Left fore, middle and hind femur, lateral view; I. left hind tarsi, lateral view; J. Female ovipositor, lateral view; K. Female terminalia, ventral view; L. Male subgenital plate, ventral view. Scale bar = 1 mm.
FIGURE 13. A in New additions to the Chinese Agraeciini Redtenbacher, 1891 (Orthoptera, Tettigoniidae: Conocephalinae) with report the complete mitochondrial genome of Palaeoagraecia brunnea Ingrisch, 1998
FIGURE 13. A phylogenetic tree obtained from Bayesian inference analysis based on 13 protein-coding genes.
FIGURE 1 in New additions to the Chinese Agraeciini Redtenbacher, 1891 (Orthoptera, Tettigoniidae: Conocephalinae) with report the complete mitochondrial genome of Palaeoagraecia brunnea Ingrisch, 1998
FIGURE 1. Anelytra (Lichnofugia) symfioma (Ingrisch, 1998). Male: A. head in frontal view; B. fastigium verticis in frontal view; C–D. head and pronotum: C. dorsal view, D. lateral view; E–G. apex of abdomen: E. lateral view, F. dorsal view, G. dorso-apical view; H. subgenital plate in ventral view; I. fore left tibiae in dorsal view.
FIGURE 4 in New additions to the Chinese Agraeciini Redtenbacher, 1891 (Orthoptera, Tettigoniidae: Conocephalinae) with report the complete mitochondrial genome of Palaeoagraecia brunnea Ingrisch, 1998
FIGURE 4. Habitus of Anelytra (Lichnofugia) symfioma (Ingrisch, 1998), lateral view. A–B. male; C–D. female.
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.