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183 results for “Conservation genomics”
Plastid genome structure and phylogenomics of Nymphaeales: conserved gene order and new insights into relationships
<p>The plastid genomes of early-diverging angiosperms were among the first land plant plastomes investigated. Despite their importance to understanding angiosperm evolution, no investigation has so far compared gene content or gene synteny of these plastid genomes with a focus on the Nymphaeales. Here, we report an evaluation and comparison of gene content, gene synteny and inverted repeat length for a set of 15 plastid genomes of early-diverging angiosperms. Seven plastid genomes of the Nymphaeales were newly sequenced for this investigation. We compare gene order and inverted repeat (IR) length across all genomes, review the gene annotations of previously published genomes, generate a multi-gene alignment of 77 plastid-encoded genes and reconstruct the phylogenetic relationships of the taxa under study. Our results show that gene content and synteny are highly conserved across early-diverging angiosperms: All species analyzed display complete gene synteny when accounting for expansions and contractions of the IRs. This conservation was initially obscured by ambiguous and potentially incorrect gene annotations in previously published genomes. We also report the presence of intact open reading frames across all taxa analyzed. The multi-gene phylogeny displays maximum support for the families Cabombaceae and Hydatellaceae, but no support for a clade of all Nymphaeaceae. It further indicates that the genus <em>Victoria</em> is embedded within <em>Nymphaea</em>. Plastid genomes of <em>Trithuria</em> were found to deviate by numerous substitutions and length changes in the IRs. Phylogenetic analyses further indicate that a previously published plastome named <em>Nymphaea mexicana</em> falls into a clade of <em>N. odorata</em> and should be re-evaluated.</p>
Whole genome resequencing data enables a targeted SNP panel for conservation and aquaculture of Oreochromis cichlid fishes
<p>Cichlid fish of the genus <i>Oreochromis</i> form the basis of the global tilapia aquaculture and fisheries industries. Broodstocks for aquaculture are often collected from wild populations, which in Africa may be from locations containing multiple <i>Oreochromis </i>species. However, many species are difficult to distinguish morphologically, hampering efforts to maintain good quality farmed strains. Additionally, non-native farmed tilapia populations are known to be widely distributed across Africa and to hybridize with native <i>Oreochromis </i>species, which themselves are important for capture fisheries. The morphological identification of these hybrids is particularly unreliable. Here, we describe the development of a single nucleotide polymorphism (SNP) genotyping panel from whole-genome resequencing data that enables targeted species identification in Tanzania. We demonstrate that an optimized panel of 96 genome-wide SNPs based on F<sub>ST</sub> outliers performs comparably to whole genome resequencing in distinguishing species and identifying hybrids. We also show this panel outperforms microsatellite-based and phenotype-based classification methods. Case studies indicate several locations where introduced aquaculture species have become established in the wild, threatening native <i>Oreochromis</i> species. The novel SNP markers identified here represent an important resource for assessing broodstock purity in hatcheries and helping to conserve unique endemic biodiversity.</p>
Data from: Informing conservation strategies with museum genomics: Long-term effects of past anthropogenic persecution on the elusive European wildcat
<p>Like many carnivore species, European wildcats (<em>Felis silvestris</em>) have suffered severe anthropogenic population declines in the past, resulting in a strong population bottleneck in the beginning of the 20th century. In Germany, the species has managed to survive its near-extinction in small isolated areas and is currently recolonizing former habitats owing to legal protection and concerted conservation efforts. Here, we SNP genotyped and mtDNA sequenced 56 historical and 650 contemporary samples to assess the impact of massive persecution on genetic diversity, population structure and hybridization dynamics of wildcats. Spatiotemporal analyses suggest that the presumed postglacial differentiation between two genetically distinct metapopulations in Germany is in fact the result of the anthropogenic bottleneck followed by re-expansion from few secluded refugia. We found that, despite the bottleneck, populations experienced no severe genetic erosion, nor suffered from elevated inbreeding or showed signs of increased hybridization with domestic cats. Our findings have significant implications for current wildcat conservation strategies, as the data analyses show that the two presently recognized wildcat population clusters should be treated as a single conservation unit. Although current populations appear under no imminent threat from genetic factors, fostering connectivity through the implementation of forest corridors will facilitate the preservation of genetic diversity and promote long-term viability. The present study documents how museum collections can be used as essential resource for assessing long-term anthropogenic effects on natural populations, e.g., regarding population structure and the delineation of appropriate conservation units, potentially informing todays' species conservation.</p>
Grasshopper genome reveals long-term conservation of the X chromosome and temporal variation in X chromosome evolution
<p>We present the first chromosome-level genome assembly of the grasshopper, <em>Locusta migratoria</em>, one of the largest insect genomes. We use coverage differences between females (XX) and males (X0) to identify the X chromosome gene content, and find that the X chromosome shows both complete dosage compensation in somatic tissues and an underrepresentation of testes-expressed genes. Remarkably, X-linked gene content from <em>L. migratoria </em>is highly conserved across four insect orders, namely Orthoptera, Hemiptera, Coleoptera and Diptera, and the 800 Mb grasshopper X chromosome is homologous to the fly ancestral X chromosome despite 400 million years of divergence, suggesting either repeated origin of sex chromosomes with highly similar gene content, or long-term conservation of the X chromosome. We use this broad conservation of the X chromosome to test for temporal dynamics to Fast-X evolution, and find evidence of a recent burst evolution for new X-linked genes in contrast to slow evolution of X-conserved genes. Additionally, our results reveal the X chromosome represents a hotspot for adaptive protein evolution related migration and the locust swarming phenotype. Overall, our results reveal a remarkable case of conservation and adaptation on the X chromosome.</p>
Data from: Informing conservation strategies with museum genomics: Long-term effects of past anthropogenic persecution on the elusive European wildcat
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Data from: Building strong relationships between conservation genetics and primary industry leads to mutually beneficial genomic advances
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Data from: Whole-genome sequencing approaches for conservation biology: advantages, limitations, and practical recommendations
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Data from: Inbreeding and selection shape genomic diversity in captive populations: implications for the conservation of endangered species
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Data from: Using genomic tools to maintain diversity and fitness in conservation programmes
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Hibiscus nextRAD-seq conservation genomics
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Whole genome resequencing data enables a targeted SNP panel for conservation and aquaculture of Oreochromis cichlid fishes
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Genome Data Uncover Conservation Status, Historical Relatedness and Candidate Genes under Selection in Chinese Indigenous Pigs in the Taihu Lake Region
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Population genomics and conservation management of a declining tropical rodent
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Data from: Identifying conserved genomic elements and designing universal bait sets to enrich them
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Genome-wide identification of microRNAs in larch and stage-specific modulation of eleven conserved microRNAs and their targets during somatic embryogenesi
GEO Series GSE27898. Larix kaempferi. 1 samples. Type: Non-coding RNA profiling by high throughput sequencing.
Genome-Wide Identification and Comprehensive Analysis of Conserved MicroRNAs and Phased small Interfering RNAs in Watermelon
GEO Series GSE102030. Citrullus lanatus. 15 samples. Type: Other; Non-coding RNA profiling by high throughput sequencing.
Quantitative genome-wide enhancer activity maps for five Drosophila species show functional enhancer conservation and turnover during cis-regulatory evolution
GEO Series GSE48251. Drosophila melanogaster; Drosophila pseudoobscura; Drosophila ananassae; Drosophila willistoni; Drosophila yakuba. 18 samples. Type: Non-coding RNA profiling by high throughput sequencing; Expression profiling by high throughput sequencing.
ZSCAN4-binding motif - TGCACAC is conserved and enriched in CA/TG microsatellites in both mouse and human genomes
GEO Series GSE243628. Homo sapiens; Mus musculus. 15 samples. Type: Genome binding/occupancy profiling by high throughput sequencing; Expression profiling by high throughput sequencing.
Conservation of parental genomic imprinting by cortex generated from embryonic stem cells [RRBS-seq]
GEO Series GSE75485. Mus musculus. 26 samples. Type: Methylation profiling by high throughput sequencing.
Genomic dissection of conserved transcriptional regulation in intestinal epithelial cells [zebrafish]
GEO Series GSE94933. Danio rerio. 7 samples. Type: Expression profiling by high throughput sequencing; Genome binding/occupancy profiling by high throughput sequencing.
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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.