Publications by authors named "Lars-Peer Hoelzel"

Purpose: Little is known about the effect of SARS-CoV-2 infection on glioblastoma (GBM) growth, metabolism, and prognosis. Immunological changes within GBM tissue are potentially symptomatic, underlining the urgent need for a better understanding of this phenomenon. To date, the complex underlying biology has not been fully elucidated.

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The persistence of neurodegenerative diseases has necessitated the development of new strategies to monitor protein homeostasis (proteostasis). Previous efforts in our laboratory have focused on the development of fluorogenic strategies to observe the onset and progression of proteostatic stress. These works utilized solvatochromic and viscosity sensitive fluorophores to sense protein folded states, enabling stressor screening with an increase in the emission intensity upon aggregation.

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Populations and species are threatened by human pressure, but their fate is variable. Some depleted populations, such as that of the northern elephant seal (Mirounga angustirostris), recover rapidly even when the surviving population was small. The northern elephant seal was hunted extensively and taken by collectors between the early 1800s and 1892, suffering an extreme population bottleneck as a consequence.

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Article Synopsis
  • Anthropogenic activities have significantly affected the diversity and evolution of species, with European fallow deer (Dama dama) as a prime example of this impact.
  • Using time-calibrated mitochondrial DNA data, researchers analyzed the historical distribution changes and lineage structure of fallow deer across Europe, highlighting founder effects in northern regions compared to consistent populations in the south.
  • The study suggests that human intervention has played a key role in deer recolonization and indicates that the lineage found in modern Italy is closely related to fallow deer from the Eemian interglacial period, providing insights into how anthropogenic and natural factors intertwine in species evolution.
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Article Synopsis
  • - Over the past 10,000 years, humans have actively influenced fallow deer populations, leading to various outcomes, including the endangered Persian fallow deer and the widespread European fallow deer, which holds unique statuses in different regions.
  • - Genetic and archaeological studies reveal that European fallow deer have two main genetic groups in Anatolia and the Balkans, which served as their primary glacial refuges, and demonstrate how humans translocated these deer across regions, often sourcing them from distant populations.
  • - The historical movement of fallow deer, influenced by myths and cultural practices, highlights the complexity between wild and domestic species, providing insights that could inform modern wildlife management strategies.
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Estimates of whale mutation rates contribute to understanding evolutionary processes.

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Half a century after its foundation, the neutral theory of molecular evolution continues to attract controversy. The debate has been hampered by the coexistence of different interpretations of the core proposition of the neutral theory, the 'neutral mutation-random drift' hypothesis. In this review, we trace the origins of these ambiguities and suggest potential solutions.

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The designation of units for conservation has been a necessary but challenging objective since conservation efforts began. Most species are divided, typically by environment, into populations with independent evolutionary trajectories. There are practical conservation objectives for defining these boundaries.

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The visualization of single-molecule reactions provides crucial insights into chemical processes, and the ability to do so has grown with the advances in high-resolution transmission electron microscopy. There is currently a limited mechanistic understanding of chemical reactions under the electron beam. However, such reactions may enable synthetic methodologies that cannot be accessed by traditional organic chemistry methods.

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Article Synopsis
  • * Researchers used advanced SNP analysis to examine the genetic differentiation, finding that the Mediterranean population likely formed around the last glacial maximum and experienced significant demographic changes, especially a decline in population size.
  • * Results indicate distinct genetic structures between the Mediterranean's eastern and western basins, influenced by historical gene flow, which raises conservation concerns and highlights the need for tailored strategies to protect these populations.
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The Saimaa ringed seal () is endemic to Lake Saimaa in Finland. The subspecies is thought to have originated when parts of the ringed seal population of the Baltic region were trapped in lakes emerging due to postglacial bedrock rebound around 9000 years ago. During the 20th century, the population experienced a drastic human-induced bottleneck.

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The software is designed to analyse diffraction data from loading experiments on polycrystalline samples for the determination of single-crystal elastic constants (SECs) and elasto-plastic self-consistent (EPSC) modelling of lattice strains. The SECs can be obtained from powder-diffraction elastic constants using a variety of grain-to-grain interaction models, namely Voigt, Reuss, Hill, Kröner, de Wit and Matthies approaches. The texture of the polycrystalline sample can be taken into account using the orientation distribution function of the grains.

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Global warming is affecting the population dynamics and trophic interactions across a wide range of ecosystems and habitats. Translating these real-time effects into their long-term consequences remains a challenge. The rapid and extreme warming period that occurred after the Last Glacial Maximum (LGM) during the Pleistocene-Holocene transition (7-12 thousand years ago) provides an opportunity to gain insights into the long-term responses of natural populations to periods with global warming.

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The neurons in the rostral ventromedial medulla (RVM) play a major role in pain modulation. We have previously shown that early-life noxious bladder stimuli in rats resulted in an overall spinal GABAergic disinhibition and a long-lasting bladder/colon sensitization when tested in adulthood. However, the neuromolecular alterations within RVM neurons in the pathophysiology of early life bladder inflammation have not been elucidated.

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The ancestors of marine mammals once roamed the land and independently committed to an aquatic lifestyle. These macroevolutionary transitions have intrigued scientists for centuries. Here, we generated high-quality genome assemblies of 17 marine mammals (11 cetaceans and six pinnipeds), including eight assemblies at the chromosome level.

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Orange-colored crystals of the oxoferrate tellurate K Fe Te O [x=0.222(4)] were synthesized in a potassium hydroxide hydroflux with a molar water-base ratio n(H O)/n(KOH) of 1.5 starting from Fe(NO )  ⋅ 9H O, TeO and H O at about 200 °C.

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Many marine species exhibit fine-scale population structure despite high mobility and a lack of physical barriers to dispersal, but the evolutionary drivers of differentiation in these systems are generally poorly understood. Here we investigate the potential role of habitat transitions and seasonal prey distributions on the evolution of population structure in the Indo-Pacific bottlenose dolphin, Tursiops aduncus, off South Africa's coast, using double-digest restriction-site associated DNA sequencing. Population structure was identified between the eastern and southern coasts and correlated with the habitat transition between the temperate Agulhas (southern) and subtropical Natal (eastern) Bioregions, suggesting differentiation driven by resource specializations.

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Land-use intensification is a major driver of biodiversity loss. However, understanding how different components of land use drive biodiversity loss requires the investigation of multiple trophic levels across spatial scales. Using data from 150 agricultural grasslands in central Europe, we assess the influence of multiple components of local- and landscape-level land use on more than 4,000 above- and belowground taxa, spanning 20 trophic groups.

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We use genomics to identify the natal origin of a grey whale found in the South Atlantic, at least 20 000 km from the species core range (halfway around the world). The data indicate an origin in the North Pacific, possibly from the endangered western North Pacific population, thought to include only approximately 200 individuals. This contributes to our understanding of Atlantic sightings of this species known primarily from the North Pacific, and could have conservation implications if grey whales have the potential for essentially global dispersion.

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Singular reaction events of small molecules and their dynamics remain a hardly understood territory in chemical sciences since spectroscopy relies on ensemble-averaged data, and microscopic scanning probe techniques show snapshots of frozen scenes. Herein, we report on continuous high-resolution transmission electron microscopic video imaging of the electron-beam-induced bottom-up synthesis of fullerene C through cyclodehydrogenation of tailor-made truxene derivative (CH), which was deposited on graphene as substrate. During the reaction, CH transformed in a multistep process to fullerene C.

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Article Synopsis
  • Understanding the genetics of adaptation is essential for studying evolution and predicting species responses to environmental changes, as shown by spinner dolphins in the eastern tropical Pacific (ETP), which have four distinct ecotypes with varied morphology and behavior despite close genetic similarities and no barriers to gene flow.
  • Genome scans identified specific single nucleotide polymorphisms (SNPs) associated with strong selection pressures between these ecotypes, particularly in genes related to social behavior and brain development, including those linked to autism in humans.
  • Differences in mating systems among the ecotypes suggest that social behavior is a significant driver of evolution for these dolphins, with some exhibiting polygynous and others polygynandrous mating strategies, indicating
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Founder populations are of special interest to both evolutionary and conservation biologists, but the detection of genetic signals of selection in these populations is challenging due to their demographic history. Geographically separated founder populations likely to have been subjected to similar selection pressures provide an ideal but rare opportunity to overcome these challenges. Here we take advantage of such a situation generated when small, isolated founder populations of reindeer were established on the island of South Georgia, and using this system we look for empirical evidence of selection overcoming strong genetic drift.

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SNP data sets can be used to infer a wealth of information about natural populations, including information about their structure, genetic diversity, and the presence of loci under selection. However, SNP data analysis can be a time-consuming and challenging process, not in the least because at present many different software packages are needed to execute and depict the wide variety of mainstream population-genetic analyses. Here, we present SambaR, an integrative and user-friendly R package which automates and simplifies quality control and population-genetic analyses of biallelic SNP data sets.

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