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11 results for “mitochondrial 16S rRNA”
Fig. 4 in MITOCHONDRIAL 16S AND 12S rRNA SEQUENCE ANALYSIS IN FOUR SALMONID SPECIES FROM ROMANIA
Fig. 4. Majority with bootstrap support consensus trees for combined data (16S rRNA and 12S rRNA). (a) Combined data Neighbor Joining tree, distance model Kimura 2 Parameters, transition/transversion ratio 2.3; (b) combined data Maximum Parsimony tree; (c) combined data Maxi-
Fig. 3. Majority with bootstrap support consensus trees for 12S in MITOCHONDRIAL 16S AND 12S rRNA SEQUENCE ANALYSIS IN FOUR SALMONID SPECIES FROM ROMANIA
Fig. 3. Majority with bootstrap support consensus trees for 12S rRNA. (a) 12S rRNA Maximum Parsimony tree; (b) 12S rRNA Neighbor Joining tree, distance model Kimura 2 Parameters, transi-
Fig. 2. Majority with bootstrap support consensus trees for 16S in MITOCHONDRIAL 16S AND 12S rRNA SEQUENCE ANALYSIS IN FOUR SALMONID SPECIES FROM ROMANIA
Fig. 2. Majority with bootstrap support consensus trees for 16S rRNA. (a) 16S rRNA Neighbor Joining tree, distance model Kimura 2 Parameters, transition/transversion ratio 2.3; (b) 16S rRNA Maximum Parsimony tree; (c) 16S rRNA Maximum Likelihood tree
FIGURE 1 in A mitochondrial 12S and 16S rRNA phylogeny of critical genera of Phoridae (Diptera) and related families of Aschiza
FIGURE 1. Maximum likelihood tree derived from analysis of concatenated dipteran 12S and 16S mitochondrial DNA sequences (ln likelihood = 5910.51681, proportion of invariable sites 0.291, gamma shape parameter = 0.480). Taxa as in Table 1. The Hilara maura sequence was assigned as outgroup. The names of suborders, series, families, subfamilies and tribes are also indicated where they are relevant to the discussion in the text. Numbers refer to Bayesian posterior probabilities as percent (top) or percent support in a nonparametric bootstrap analysis by neighborjoining of maximum likelihood distances (bottom). Where only one number occurs it refers to a Bayesian posterior probability: that branch received less than 50% support in the nonparametric bootstrap analysis. Support values for the branch leading to the Phoridae are in bold.
FIGURE 1 in Phylogenetic relationships among the genera of the Penaeidae (Crustacea: Decapoda) revealed by mitochondrial 16S rRNA gene sequences
FIGURE 1. Morphological phylogeny of the penaeid genera proposed by (a) Kubo 1949, reconstructed from text (genera in brackets were not fully analyzed and '?' refers to uncertain relationship) and (b) Burkenroad 1983, reconstructed from key (mentioned by the author as "...a natural key down to the level of genus"), with Penaeini as Peneini, Parapenaeini as Parapeneini, Trachypenaeini as Trachypeneini, and Metapenaeus as Mangalura. *Considered to be the most primitive genus in the family.
FIGURE 2 in Phylogenetic relationships among the genera of the Penaeidae (Crustacea: Decapoda) revealed by mitochondrial 16S rRNA gene sequences
FIGURE 2. BIO-neighbor-joining (BIO-NJ) tree of Penaeidae based on partial mitochondrial 16S rRNA gene sequences. Numbers on branches indicate bootstrap values from BIO-NJ (normal text), maximum parsimony (in italics), maximum likelihood (in bold) analyses and posterior probability values from Bayesian (in italics bold) analyses. Bootstrap values below 50% are not shown. A, B, C refer to the three main clades in the tree. Parapenaeini, Trachypenaeini and Penaeini are the three groups as defined by Burkenroad (1983).
FIGURE 2 in Phylogeny and affiliation of European Anthomyzidae (Diptera) based on mitochondrial 12S and 16S rRNA
FIGURE 2. Resulting phylogram conducted by Bayesian analyses of the combined 12S and 16S rRNA gene sequences. The posterior probabilities (over 0.50) are shown above the branches.
FIGURE 1 in Phylogeny and affiliation of European Anthomyzidae (Diptera) based on mitochondrial 12S and 16S rRNA
FIGURE 1. Anthomyza gracilis Fallén, 1823, female (Russia: Moscow region), body length 2.8 mm. Photo by D. Gavryushin.
Fig. 1 in MITOCHONDRIAL 16S AND 12S rRNA SEQUENCE ANALYSIS IN FOUR SALMONID SPECIES FROM ROMANIA
Fig. 1. Variable sites in 16S rRNA (1) and 12S rRNA (2). The numbers represent the position occupied in the 16S rRNA, and 12S rRNA respectively. Identical sites are indicated by the symbol "·" and
PTCD1 is required for 16S rRNA maturation complex stability and mitochondrial ribosome assembly
GEO Series GSE105406. Mus musculus. 12 samples. Type: Expression profiling by high throughput sequencing.
WBSCR16 Deficiency Drives Adaptive Metabolic Flexibility Via Impaired Mitochondrial 16S rRNA Maturation
GEO Series GSE229693. Mus musculus. 6 samples. Type: Expression profiling by high throughput sequencing.
ScienceDex guides
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These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.