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Understanding and preventing the photocatalytic cycle responsible for the occurrence of light-struck flavor in white wines and Champagnes – DeLight
The light-struck fault is now in plain light! Thanks to the De-Light project, we have elucidated the photochemical mechanisms responsible for the formation of the drop of light and proposed technical solutions that can prevent its formation while respecting the constraints linked to the viticultural processes in force.
Understanding how animals generate and regenerate cell diversity: integrating live imaging, lineage tracking, deep learning and big image data visualization – DeepLineage
Integrating live imaging, lineage tracking and big image data visualization
Understanding volatile phenol production in fermented beverages – UnderPhe
The main scientific questions addressed in this project are to understand what are the physiological benefits of volatile phenol formation for Brettanomyces bruxellensis and Brettanomyces anomalus strains and how this production makes these species more competitive in stressful environments, in relation to genetic diversity.
Une nouvelle chaire de recherche industrielle pour lutter contre l’esca, une maladie du bois de la vigne
Le lancement officiel de la chaire industrielle WinEsca a eu lieu mercredi 5 avril 2023 à Pau. Cette chaire, soutenue par l’Agence Nationale de la Recherche (ANR) et portée par l’université de Pau et des Pays de l’Adour, Jas Hennessy & Co, et la société GreenCell, vise à développer des stratégies de protection agroécologique pour lutter contre l’esca, une maladie du bois de la vigne.
Universally high throughput Mass spectrometry-Tag Quantification in biological matrices: Alternative to radiolabeling – MTaQ
Mesuring the concentration of organic compounds at trace level in complex media is a challenging issue encountered in various domains (health, pharmacy, toxicology, environment, chemistry, …). The projet aims to provide an innovative answer based on mass spectrometry associated with specific chemical tagging in order to specifically target the compound of interest with a high detection sensitivity (expected quantification level for sub-nanomolar concentrations).
Unraveling AMPA receptor subpopulations nanoscale organization and traffic – AMPAR_SubPopTraffic
receptors and their physiology, provides an exceptional opportunity to address a fundamental question
Unraveling the pathophysiology of Bethlem Myopathy using a unique zebrafish model for the disease – FishandCol6
Bethlem myopathy (BM) is a misunderstood and uncurable disorder characterized by abnormal contractures and muscle weakness. The BM results from mutations in one of the genes encoding the 3 major a-chains of collagen VI (ColVI), a component of the myomatrix, but the mechanisms of action have not been elucidated. Our working hypothesis is that muscle dysfunction caused by BM mutation results from alteration in muscle excitation and/or intracellular Ca2+ homeostasis.
Unravelling the Mars’ atmosphere Main Mysteries (MCUBE) – MCUBE
Unravelling the Mars’atmosphere Main Mysteries
Unravelling the molecular mechanisms of action of PilC/PilY1, a key player in type 4 pilus biology found at the pilus tip in hundreds of bacterial species – T4Ptip
y present in bacteria and archaea, and (2) exceptionally versatile, being involved in adhesion, motility
Using the most powerful explosion as probes of the high-redshift Universe – BEaPro
Thanks to their exceptional brightness, the afterglows of gamma-ray bursts (GRBs) can be used as extra-galactic background sources capable of unveiling the properties of the universe at different redshifts. The class of long GRBs (LGRB) is associated with the collapse of the most massive stars, making them a tool to investigate star formation in the early Universe.