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183 results for “Genome conservation”

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dryad36/100

The GENOMES UNCOUPLED1 protein has an ancient, highly conserved role but not in retrograde signalling

<p><span>The pentatricopeptide repeat protein GENOMES UNCOUPLED1 (GUN1) is required for chloroplast-to-nucleus signalling in response to plastid stress during chloroplast development in <em>Arabidopsis thaliana</em> but its exact molecular function remains unknown. Current data on GUN1 function is limited to <em>Arabidopsis</em>, so we set out to investigate the origin and evolution of the land plant GUN1 proteins. We retrieved GUN1 sequences from 76 phylogenetically diverse land plants and developed a GUN1 sequence profile using <em>hmmbuild</em> </span><span>(<a href="http://hmmer.org/">http://hmmer.org</a>)</span><span>. We then used this profile to systematically analyse the presence/absence of GUN1 sequences in transcriptomes from land plants and streptophyte algae. This dataset includes the GUN1 profile we developed, the code we used to analyse the results of screening over 500,000 PPR protein sequences with the profile, and an alignment of the 893 GUN1 sequences that we obtained.</span></p> <p><span>We used this data to show that GUN1 is an ancient protein that is highly conserved across land plants but missing from the <em>Rafflesiaceae</em> that lack chloroplast genomes. Our findings suggest that GUN1 is an ancient protein that evolved within the streptophyte algal ancestors of land plants before the first plants colonised land more than 470 million years ago. </span></p> <p><span>This dataset also includes transcript count data from an RNA-seq experiment looking at gene expression in liverwort <em>Marchantia polymorpha</em> wild type and <em>Mpgun1</em> mutant spore samples grown in the presence or absence of spectinomycin. We used this data to show that GUN1 does not act significantly in chloroplast retrograde signalling in the liverwort <em>M. polymorpha</em>. Its primary role is likely to be in chloroplast gene expression and its role in chloroplast retrograde signalling probably evolved more recently.</span></p>

opencc-zeroJun 2022View details →
dryad36/100

Re-evaluating coho salmon (Oncorhynchus kisutch) conservation units in Canada using genomic data

<p><span>Conservation units (CUs) are important tools for supporting the implementation of standardized management practices for exploited species. Following the adoption of the Wild Salmon Policy in Canada, CUs were defined for Pacific salmon based on characteristics related to ecotype, life history, and genetic variation using microsatellite markers as indirect measures of local adaptation. Genomic datasets have the potential to improve the definition of CUs by reducing variance around estimates of population genetic parameters, thereby increasing the power to detect more subtle patterns of population genetic structure and by providing an opportunity to incorporate adaptive information more directly with the identification of variants putatively under selection. We used one of the largest genomic datasets recently published for a non-model species, comprising 5,662 individual Coho salmon (<em>Oncorhynchus kisutch</em>) from 149 sampling locations and a total of 24,542 high-quality SNPs obtained using genotyping-by-sequencing and mapped to the Coho salmon reference genome to 1) evaluate the current delineation of CUs for Coho in Canada and 2) compare patterns of population structure observed using neutral and outlier loci from genotype-environment association analyses to determine whether separate CUs that capture adaptive diversity are needed. Our results reflected CU boundaries on the whole, with the majority of sampling locations managed in the same CU clustering together within genetic groups. However, additional groups not currently represented by CUs were also uncovered. We observed considerable overlap in the genetic clusters identified using neutral or candidate loci, indicating a general congruence in patterns of genetic variation driven by local adaptation and gene flow in this species. Consequently, we suggest that the current CU boundaries for Coho salmon are largely well-suited for meeting the Canadian Wild Salmon Policy's objective of defining biologically distinct groups, but we highlight specific areas where CU boundaries may be refined.</span></p>

opencc-zeroOct 2022View details →
dryad36/100

Extant and extinct bilby genomes combined with indigenous knowledge improve conservation of a unique Australian marsupial

<p>The Ninu (Greater bilby, <em>Macrotis lagotis</em>) is a desert-dwelling, culturally and ecologically important marsupial. In collaboration with Indigenous rangers and conservation managers, we generated the first Ninu chromosome-level genome assembly (3.66 Gbp) and genome sequences for the extinct Yallara (Lesser bilby, <em>Macrotis leucura</em>). We developed and tested a scat SNP panel, based on our genomic datasets, to inform current and future conservation actions, to undertake future ecological assessments, and improve our understanding of Ninu genetic diversity in managed and wild populations. We also assessed the beneficial impact of targeted conservation actions, like translocations, in the contemporary metapopulation (N=363 Ninu). Resequenced genomes (temperate Ninu=6; semi-arid Ninu=6; Yallara=4) revealed two major population crashes during global cooling events for both species and differences in Ninu genes involved in anatomical and metabolic pathway adaptations to aridity. Despite their 45-year long captive history, Ninu have fewer long runs of homozygosity than other larger mammals, which may be attributable to their boom-bust life-history. We also investigated the unique Ninu biology using 12 tissue transcriptomes revealing expression of all 115 conserved eutherian chorioallantoic placentation genes in the uterus; an XY<sub>1</sub>Y<sub>2</sub> sex chromosome system generated by fusion of the X with a large telocentric autosome; and expansions in olfactory receptor genes. Together, we demonstrate the holistic value of genomics in improving key conservation management actions, understanding unique biological traits, and developing tools for Indigenous rangers to monitor remote wild populations.</p>

opencc-zeroApr 2024View details →
dryad36/100

Reversing the decline of threatened koala (Phascolarctos cinereus) populations in New South Wales: Using genomics to enhance conservation outcomes

<p>Genetic management is a critical component of threatened species conservation. Understanding spatial patterns of genetic diversity is essential for evaluating the resilience of fragmented populations to accelerating anthropogenic threats. Nowhere is this more relevant than on the Australian continent, which is experiencing an ongoing loss of biodiversity that exceeds any other developed nation. Using a proprietary genome complexity reduction-based method (DArTSeq), we generated a data set of 3,239 high quality Single Nucleotide Polymorphisms (SNPs) to investigate spatial patterns and indices of genetic diversity in the koala (<em>Phascolarctos cinereus</em>), a highly specialised folivorous marsupial that is experiencing rapid and widespread population declines across much of its former range.<strong> </strong>Our findings demonstrate that current management divisions across the state of New South Wales (NSW) do not fully represent the distribution of genetic diversity among extant koala populations, and that care must be taken to ensure that translocation paradigms based on these frameworks do not inadvertently restrict gene flow between populations and regions that were historically interconnected. We also recommend that koala populations should be prioritised for conservation action based on the scale and severity of the threatening processes that they are currently faced with, rather than placing too much emphasis on their perceived value (e.g., as reservoirs of potentially adaptive alleles), as our data indicate that existing genetic variation in koalas is primarily partitioned amongst individual animals. As such, the extirpation of koalas from any part of their range represents a potentially critical reduction of genetic diversity for this iconic Australian species.</p>

opencc-zeroJul 2024View details →
zenodo36/100

Fig. 1 in Chloroplast genome of the conserved Aster altaicus var. uchiyamae B2015-0044 as genetic barcode

Fig. 1. Plastid genomic map of Aster altaicus var. uchiyamae.

opencc-by-4.0Dec 2021View details →
dryad36/100

Data from: Remarkably conserved plastid genomes of Quercus Group Cerris in China: comparative and phylogenetic analyses

Quercus is one of the most important genera for considering its economic and ecological values, with approximately 500 species worldwide. Quercus group Cerris is endemic to Eurasia (including 11 species), and three species (Quercus acutissima, Quercus chenii and Quercus variabilis) are widely distributed in China. Here, we sequenced the complete plastid genomes of Q. acutissima and Q. chenii by Illumina pair-end sequencing, and obtained an additional plastome of Q. variabilis from GenBank. Although geographically distant sampling, the three plastomes in group Cerris were remarkably conserved with regard to genome size, gene organization, GC content, and IR/SC boundary regions. The phylogenetic analysis showed that group Cerris nested in group Ilex, forming a Cerris-Ilex clade. The current study provided plastid genomic-scale data for the less intensively studied group Cerris, which would be useful for studying speciation processes, geographical structure and phylogeny within the group Cerris in the future.

opencc-zeroDec 2017View details →
dryad36/100

Conservation prioritisation through genomic reconstruction of demographic histories applied to two endangered suids in the Malay Archipelago

<p><strong>Aim</strong>: The biodiversity of the Malay Archipelago is the product of the region's rich biogeographical history with periods of island connectivity and isolation during the Pleistocene glacial cycles. Here, the case of two endemic suid species, the Javan (<em>Sus verrucosus</em>) and Bawean (<em>S. blouchi</em>) warty pigs, was used to illustrate how biogeographic processes and recent anthropogenic pressures can shape demographic histories with significant implications for species conservation.</p> <p><strong>Location</strong>: Malay Archipelago, with focus on Bawean and Java.</p> <p><strong>Methods</strong>: We employed genome-wide single nucleotide polymorphisms from the Porcine SNP60 v2 BeadChip to assess interspecific genetic differentiation, to estimate divergence times, and to perform demographic model selection.</p> <p><strong>Results</strong>: In contrast to the hypothesis of recent divergence during the last glacial maximum, <em>S. blouchi</em> was found to have diverged from <em>S. verrucosus</em> at least 166k years ago following a founder event. The contemporary <em>S. blouchi</em> population was characterised by a recent bottleneck that reduced the effective population size to less than 20. The genomic assessment supports the single species status of <em>S. blouchi</em>, as was previously proposed based on morphometrics. The demographic history of <em>S. verrucosus</em> showed evidence of secondary contact with the sympatric banded pig (<em>S. scrofa vittatus</em>) that colonised Java 70k years ago.</p> <p><strong>Main</strong> <strong>conclusions</strong>: While the Javan and Bawean warty pigs have persisted throughout the Pleistocene climatic oscillations, contemporary pressures from human activities threaten their survival and immediate action should be taken to grant legal protection to both <em>S. verrucosus</em> and <em>S. blouchi</em>. This study highlighted the use of demographic history modelling using genomic data to identify evolutionary significant units and inform conservation.</p>

opencc-zeroFeb 2023View details →
zenodo36/100

Key files for: Comparative genomic analysis of Microcystis strain diversity using conserved marker genes

<p>Key data outputs to accompany the manuscript &quot;Comparative genomic analysis of Microcystis strain diversity using conserved marker genes&quot;</p>

opencc-by-4.0Apr 2023View details →
dryad36/100

Mitochondrial genome evolution in Annelida: A systematic study on conservative and variable gene orders and the factors influencing its evolution

<p><span>The mitochondrial genomes of Bilateria are relatively conserved in their protein-coding, rRNA and tRNA gene complement, but the order of these genes can range from very conserved to very variable depending on the taxon. The supposedly conserved gene order of Annelida has been used to support the placement of some taxa within Annelida. Recently, authors have cast doubts on the conserved nature of the annelid gene order. Various factors may influence gene-order variability including, among others, increased substitution rates, base composition differences, structure of non-coding regions, parasitism, living in extreme habitats, short generation times and biomineralization. However, these analyses were neither done systematically, nor based on well-established reference trees. Several focused on only a few of these factors and biological factors were usually explored ad-hoc without rigorous testing or correlation analyses. Herein, we investigated the variability and evolution of the annelid gene order and the factors that potentially influenced its evolution, using a comprehensive and systematic approach. The analyses were based on 170 genomes, including 33 previously unrepresented species. Our analyses included 706 different molecular properties, 20 life-history and ecological traits and a reference tree corresponding to recent improvements concerning the annelid tree. The results showed that the gene order with and without tRNAs is generally conserved. However, individual taxa exhibit higher degrees of variability. None of the analyzed life-history and ecological traits explained the observed variability across mitochondrial gene orders. In contrast, the combination and interaction of the best predicting factors for substitution rate and base composition explained up to 30% of the observed variability. Accordingly, correlation analyses of different molecular properties of the mitochondrial genomes showed an intricate network of direct and indirect correlations between the different molecular factors. Hence, gene order evolution seems to be driven by molecular evolutionary aspects rather than by life history or ecology. On the other hand, gene order variability does not predict difficulty in placing certain taxa within molecular phylogenetic studies. We also discuss the molecular properties of annelid mitochondrial genomes considering canonical views on gene evolution and potential reasons why they do not always fit to the observed patterns without nuisance.</span></p>

opencc-zeroApr 2023View details →
dryad36/100

Genomic tools for comparative conservation genetics among three recently diverged stag beetles (Lucanus, Lucanidae)

<p>We are witnessing a rapid decline in global biodiversity. International protocols and local conservation laws have been installed to counter such an unprecedented rate of decline. However, quantitatively evaluating how much biodiversity has been lost due to climatic and anthropogenic effects and how much biodiversity has been restored due to conservation efforts remain challenging. We applied a comparative conservation genomic approach to statistically and quantitatively address these questions using three geographical taxa from a stag beetle species complex. We found that the three sky-island taxa formed three independently evolving units without detectable post-divergence gene flow; furthermore, the three taxa, which have been divergent from each other since the mid-Pleistocene, have experienced episodes of demographic decline in the past.  More importantly, even though idiosyncratic anthropogenic exploitations have been hypothesized to impact the recent demographic history (&lt; 100 years) differently, we found a shared pattern of continuous decline in effective population size among the three geographical taxa. We argue that future empirical studies should include more taxa, in addition to the focal species, that may or may not be affected by the focal historical events to avoid making biased conservation plans.</p>

opencc-zeroApr 2023View details →
dryad36/100

Genomic diversity and population structure of teosintes (Zea spp.) and its conservation implications

<p>The wild species of the genus <em>Zea</em> commonly named teosintes, comprise nine different taxa, distributed from northern Mexico to Costa Rica. Although this genus of plants has been extensively studied from a morphological, ecogeographical and genetic point of view, most contributions have been limited to the study of a few populations and taxa. To understand the great variability that exists between and within teosinte species, it is necessary to include the vast majority of known populations. In this context, the objective of this work was to evaluate the diversity and genomic structure of 276 teosinte populations. Molecular analyzes were performed with 3,604 plants and with data from 33,929 SNPs. The levels of genetic diversity by taxonomic group show a marked difference between species, races and sections, where the highest values of genomic diversity were found in ssp. <em>parviglumis</em> and ssp. <em>mexicana</em>. The lower values were obtained for the <em>Luxuriantes</em> section as well as ssp. <em>huehuetenagensis</em> of the section <em>Zea</em>. The results of the structure show that there is a great genetic differentiation in all the taxonomic groups considered. For ssp. <em>parviglumis</em> and <em>mexicana</em>, which are the taxa with the largest number of populations, a marked genomic differentiation was found that is consistent with their geographic distribution patterns. These results showed a loss of diversity in several teosinte populations, making a strong case for further collection, and ex situ and in situ conservation. Also, this study highlights the importance of integrating genomic diversity and structure for the applications of conservation and management.</p>

opencc-zeroSep 2023View details →
dryad36/100

Data from: Conservation genomics of the threatened Trispot Darter (Etheostoma trisella)

<p>The southeastern United States is a hotspot of biodiversity, but aquatic habitats are fragmented by anthropogenic activities such as hydrologic alteration. Small-stream-inhabiting fish can suffer population declines, loss of genetic diversity, and migration impediment from riverine impoundment. The Trispot Darter (<em>Etheostoma trisella</em>) is a small, freshwater fish endemic to the southeastern United States. <em>E. trisella </em>was previously believed to be extinct and has now been listed as threatened under the U.S. Endangered Species Act, due to destruction of its limited habitat and a restricted range. We used mitochondrial DNA (NADH dehydrogenase subunit 2 gene), seven microsatellite loci, and 9732 single nucleotide polymorphisms (SNPs) to evaluate population structure and diversity in <em>E. trisella</em>. Mitochondrial data provided evidence of historical connectivity between populations, with haplotype sharing across populations and weak support for population structure. Microsatellite and SNP data, however, indicate that populations have more recently become isolated. Furthermore, we detect three distinct management units (i.e., genetic groups) which reflect isolated geographic localities (i.e., Little Canoe Creek, Ballplay Creek, and a system including the Conasauga and Coosawattee rivers). We also detected a recent bottleneck event in the Ballplay Creek population as well as a low effective population size. Tests of isolation by distance further suggest that populations are structured by riverine isolation rather than geographic distance. A better understanding about the distribution, abundance, and habitat occupancy of all E. trisella populations will be important for informing future decisions for conservation of the species.</p>

opencc-zeroSep 2023View details →
dryad36/100

Genome Synteny Has Been Conserved Among the Octoploid Progenitors of Cultivated Strawberry Over Millions of Years of Evolution

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publicFeb 2020View details →
dryad36/100

Genomic diversity and population structure of teosintes (Zea spp.) and its conservation implications

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publicSep 2023View details →
dryad36/100

Data from: Detection of evolutionary conserved and accelerated genomic regions related to adaptation to thermal niches in Anolis lizards

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publicMar 2024View details →
dryad36/100

Data from: The conservation genomics of the endangered distylous gypsophile Oreocarya crassipes (Boraginaceae)

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publicSep 2019View details →
dryad36/100

Comparing genome-based estimates of relatedness for use in pedigree-based conservation management

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publicMay 2022View details →
dryad36/100

Data from: A prelude to conservation genomics: First chromosome-level genome assembly of a flying squirrel (Pteromyini: Pteromys volans)

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publicAug 2025View details →
dryad36/100

Data from: Genome-wide diversity in lowland and highland maize landraces from southern South America: Population genetics insights to assist conservation

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publicNov 2024View details →
dryad36/100

Population genomics of flat-tailed horned lizards (Phrynosoma mcallii) informs conservation and management across a fragmented Colorado Desert landscape

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publicApr 2024View details →

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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.

allen-brain-atlas
neuroscienceopenDocumentation, web resources, and API references are available online.
Last verified 2026-04-30Open record

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.

abode-home-cage
behavioral-neuroscienceopenThe DataShare record exposes download links for annotations, documentation, license text, and the zipped per-snippet data directory.
Last verified 2026-04-30Open record

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.

dandi-nwb
electrophysiologyopenPublished Dandiset metadata and archive endpoints are available through the production DANDI API.
Last verified 2026-04-30Open record

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.

ibl
behavioral-neuroscienceopenPublic sessions can be searched and loaded from the IBL public data server through ONE.
Last verified 2026-04-29Open record

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.

openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record