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7 results for “Lepas”
Figure 5 in Endorsing Darwin: global biogeography of the epipelagic goose barnacles Lepas spp. (Cirripedia, Lepadomorpha) proves cryptic speciation
Figure 5. Haplotype genealogy of the COI genes from Lepas anatifera and Lepas testudinata populations, computed with Fitchi. A separation of oceanic regions described in the main text and depicted in Figure 6 can be seen, as well as one global group in L. anatifera. The L. testudinata haplotype recovered from Australia is set apart from the South African haplotypes.
Figure 3 in Endorsing Darwin: global biogeography of the epipelagic goose barnacles Lepas spp. (Cirripedia, Lepadomorpha) proves cryptic speciation
Figure 3. Phylogenetic (maximum-likelihood and Bayesian) tree based on the analysis of a fragment of the 18S ribosomal gene, including two out-group species. Posterior probabilities and bootstrap values are indicated; where support is maximal, only posterior probabilities are given. A neighbour net constructed in SplitsTrees indicates a clear tree-like signal in the sequence data, in conflict with the data for Lepas anserifera, which led us to analyse mitochondrial loci independently.
Figure 4 in Endorsing Darwin: global biogeography of the epipelagic goose barnacles Lepas spp. (Cirripedia, Lepadomorpha) proves cryptic speciation
Figure 4. Comparsion of mitochondrial single locus phylogenies based on PhyMl and MrBayes. All major groupings are retrieved from both loci. The faster evolving COI gene provides more intra-group resolution. Bootstrapping values are given above branches; posterior probabilities are given below branches.
Figure 2 in Endorsing Darwin: global biogeography of the epipelagic goose barnacles Lepas spp. (Cirripedia, Lepadomorpha) proves cryptic speciation
Figure 2. Initial phylogeny based on three genes (18S, 16S, and COI) from a subset of samples from the major oceans (PAUP*, re-confirmed with PhyML and MrBayes). A split in subtypes is found in Lepas anatifera and Lepas australis. The red arrows indicate 'outliers' in L. anatifera and Lepas pectinata. In L. anatifera, these were later found to belong to a global group, whereas in L. pectinata no obvious biogeographic subgroup was found.
Figure 1 in Endorsing Darwin: global biogeography of the epipelagic goose barnacles Lepas spp. (Cirripedia, Lepadomorpha) proves cryptic speciation
Figure 1. Major oceanic current systems and the distribution of Lepas anatifera (blue), Lepas australis (green), and Lepas pectinata (orange, vertically ruled), after Hinojosa et al. (2006). Lepas anatifera is restricted to waters warmer than 15 °C, whereas L. australis is found in cooler water masses.
Translation elongation factor 4 (LepA) contributes to tetracycline susceptibility by stalling elongating ribosomes
GEO Series GSE106448. Escherichia coli BW25113. 8 samples. Type: Expression profiling by high throughput sequencing.
RNAseq of LepA knock-out in M. smegmatis
GEO Series GSE126130. Mycolicibacterium smegmatis MC2 155. 9 samples. Type: Expression profiling by high throughput sequencing.
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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.