Results 171 to 180 of about 1,547 (208)

Mitigating Human–Large Carnivore Conflicts via Time‐Regulated Management of Free‐Ranging Livestock in the Sanjiangyuan Region, China

open access: yesIntegrative Zoology, EarlyView.
The graphical abstract illustrates the comprehensive workflow of our study, from the deployment of infrared cameras at sites with high activity of four large carnivores, through data collection and assessment of activity patterns, to the prediction of time periods with potential human–large carnivore conflicts and the proposal of corresponding ...
Dong Wang   +3 more
wiley   +1 more source

Chromosome‐Level Genome Assemblies of Two Softshell Turtles with ZZ/ZW Provide Insights into TE‐Driven Recombination Suppression in Sex Chromosomes

open access: yesIntegrative Zoology, EarlyView.
This study presents the first genomic identification and characterization of ZW sex chromosomes in two soft‐shelled turtle species through genome assembly and resequencing. We reveal the structural organization of ZW chromosomes, identifying both pseudoautosomal regions (PARs) and differentiated regions.
Jianjun Liu   +9 more
wiley   +1 more source

Geographic Patterns of Head Morphology in Syngnathus typhle Across Marine Regions

open access: yesIntegrative Zoology, EarlyView.
Morphometric analysis of Syngnathus typhle head shape shows distinct geographic patterns across Baltic, North, Atlantic, and Mediterranean marine regions, driven by variation in snout length, head depth, and eye position. Findings provide a non‐invasive baseline for conservation monitoring.
Miriam Ravisato   +16 more
wiley   +1 more source

How genomics can help biodiversity conservation [PDF]

open access: yesTrends in Genetics, 2023
The availability of public genomic resources can greatly assist biodiversity assessment, conservation, and restoration efforts by providing evidence for scientifically informed management decisions. Here we survey the main approaches and applications in biodiversity and conservation genomics, considering practical factors, such as cost, time ...
Pampoulie Christophe   +2 more
exaly   +30 more sources

Genomics and the making of yeast biodiversity [PDF]

open access: yesCurrent Opinion in Genetics and Development, 2015
Yeasts are unicellular fungi that do not form fruiting bodies. Although the yeast lifestyle has evolved multiple times, most known species belong to the subphylum Saccharomycotina (syn. Hemiascomycota, hereafter yeasts). This diverse group includes the premier eukaryotic model system, Saccharomyces cerevisiae; the common human commensal and ...
Chris Hittinger   +2 more
exaly   +4 more sources

Biodiversity and functional genomics in the human microbiome [PDF]

open access: yesTrends in Genetics, 2013
Over the course of our lives, humans are colonized by a tremendous diversity of commensal microbes, which comprise the human microbiome. The collective genetic potential (metagenome) of the human microbiome is orders of magnitude more than the human genome, and it profoundly affects human health and disease in ways we are only beginning to understand ...
Curtis Huttenhower   +2 more
exaly   +4 more sources
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Biodiversity: an atlas of European reference genomes

Nature, 2023
The European Reference Genome Atlas (ERGA) aims to coordinate the production of high-quality genome sequences that represent eukaryotic biodiversity in Europe. As part of the Earth BioGenome Project, it will foster the widespread use of genomic resources for biodiversity protection, restoration and conservation.
Camila J. Mazzoni   +2 more
openaire   +3 more sources

Pangenome graphs and their applications in biodiversity genomics

open access: yesNature Genetics
Complete datasets of genetic variants are key to biodiversity genomic studies. Long-read sequencing technologies allow the routine assembly of highly contiguous, haplotype-resolved reference genomes. However, even when complete, reference genomes from a single individual may bias downstream analyses and fail to adequately represent genetic diversity ...
Guido Gallo   +2 more
exaly   +4 more sources

Mouse biodiversity in the genomic era

Cytogenetic and Genome Research, 2004
Comparative genomics has developed by comparison of distantly related genomes, for which the link between the reported evolutionary changes and species development/physiology/ecology is not obvious. It is argued that the mouse (genus <i>Mus</i>) is an optimal model for microevolutionary genomics in vertebrates.
N, Galtier   +9 more
openaire   +2 more sources

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