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@umr7144.bsky.social

14 Followers  |  1 Following  |  18 Posts  |  Joined: 05.02.2025  |  1.7523

Latest posts by umr7144.bsky.social on Bluesky

This study examines the taxonomic composition, seasonal, and depth distribution of marine alveolates (MALVs) in the Arctic Ocean, west and north of Svalbard. DOI: 10.1139/as-2024-0016 HAL: hal-04908375 #MarineAlveolates #ArcticOcean #Metabarcoding πŸŒŠπŸ”¬

26.03.2025 12:11 β€” πŸ‘ 1    πŸ” 1    πŸ’¬ 0    πŸ“Œ 1

Oysters, key ecosystem engineers and important food sources, have often been overlooked in sclerochronology studies despite their potential as environmental and life history archives. DOI: 10.1002/lol2.10461 HAL: hal–04968493 #Oysters #Sclerochronology #PalaeoenvironmentalStudies 🌊πŸ¦ͺ

26.03.2025 12:05 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

This study explores the use of Mg/Ca ratios as a temperature proxy in deep-sea hydrothermal vent ecosystems for the first time, focusing on mussels from the mid-Atlantic Ridge and East Pacific Rise. DOI: 10.1016/j.dsr.2025.104485 HAL: hal–04996044 #DeepSea #HydrothermalVents #EnvironmentalTracers πŸŒŠπŸ”¬

26.03.2025 12:01 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

How biotic and abiotic factors shape genetic diversity in deep-sea hydrothermal vent communities? The research highlights the role of both past events and contemporary factors in driving speciation. DOI: 10.1093/molbev/msaf024 #DeepSea #GeneticDiversity #HydrothermalVents πŸŒŠπŸ”¬

26.03.2025 11:58 β€” πŸ‘ 2    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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How institutions can better support international early-career researchers - Nature Human Behaviour Nature Human Behaviour - How institutions can better support international early-career researchers

This study explores how institutions can better support Early-career researchers through targeted policies, funding, and mentorship programs [DOI: 10.1038/s41562-025-02125-5](doi.org/10.1038/s415...) [HAL: hal–04979235]#EarlyCareerResearchers #ResearchSupport #Collaboration

26.03.2025 11:54 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

In the Southwest Pacific, hydrothermal vents face potential mining threats, which could disrupt biodiversity. This study shows how biodiversity is spatially structured in these vents ⟨10.1016/j.scitotenv.2025.178694⟩. ⟨hal–04973664⟩
#Biodiversity #Conservation #HydrothermalVents πŸŒβš’οΈ

26.03.2025 11:53 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

marine protists, like choanoflagellates, form symbioses with bacteria related to animal symbionts. These associations have evolved over time and could expand to new hosts as environments change. #Symbiosis #Protists #Oceans πŸŒŠπŸ”¬
10.1016/j.chom.2025.01.009, hal–04968405

26.03.2025 11:32 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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🚨 Exciting news! Please welcome Norico Yamada to our team! 🌊

Norico joins us with a rich background, on the fascinating dinoflagellates that use diatoms as tertiary plastids.
Ahoy! 🚒

#Research #Dinoflagellates #Protistology #MarineScience #Evolution #NewCollaborations #MarineBiology

28.02.2025 08:07 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 1    πŸ“Œ 0
Selection Can Favor a Recombination Landscape That Limits Polygenic Adaptation Abstract Modifiers of recombination rates have been described but the selective pressures acting on them and their effect on adaptation to novel environments remain unclear. We performed experimental ...

🧬 New study on recombination rate modifiers and adaptation in Caenorhabditis elegans! πŸ”¬

How recombination rate modifiers influence adaptation in Caenorhabditis elegans.

hal.science/hal-04936267

#Genetics #Adaptation #Recombination #CaenorhabditisElegans #Evolution #GeneticVariation

28.02.2025 08:03 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
A Long‐Term Ecological Research Data Set From the Marine Genetic Monitoring Program ARMS ‐ MBON 2018–2020 ABSTRACT Molecular methods such as DNA/eDNA metabarcoding have emerged as useful tools to document the biodiversity of complex communities over large spatio‐temporal scales. We established an internat...

🌊 New study on marine biodiversity monitoring using ARMS and DNA metabarcoding! πŸ”¬

ARMS with DNA metabarcoding through the ARMS-MBON network to monitor marine biodiversity.

hal.science/hal-04968427

#MarineBiodiversity #DNAmetabarcoding #ARMS #EcologicalResearch #Conservation #MarineScience

28.02.2025 08:02 β€” πŸ‘ 2    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
Survival of the fittest: genomic investigations of the bay scallop reveal a shift in population structure through a summer mortality event

πŸ¦ͺ New study on the genetic impact of Bay Scallop Marosporida (BSM) parasites! 🧬

How BSM parasite outbreaks affect Argopecten irradians populations in New York.

hal.science/hal-04968416

#MarineEcology #Scallops #ParasiteOutbreaks #Genetics #SustainableFisheries #Conservation #Aquaculture

28.02.2025 07:58 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
An Evolutionary Mosaic Challenges Traditional Monitoring of a Foundation Species in a Coastal Environmentβ€”The Baltic Fucus vesiculosus ABSTRACT During periods of environmental change, genetic diversity in foundation species is critical for ecosystem function and resilience, but it remains overlooked in environmental monitoring. In th...

🌊 New insights into genetic diversity in Fucus vesiculosus in the Baltic Sea! 🌿

This study explores the genetic variation of Fucus vesiculosus in response to ocean warming.

hal.science/hal-04968495

#MarineEcology #GeneticDiversity #OceanWarming #Fucus #BalticSea #ClimateChange #MarineScience

28.02.2025 07:56 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
Chromatic acclimation shapes phytoplankton biogeography Marine photoautotrophs have evolved to exploit the ocean’s variable light conditions, with chromatic acclimators being able to adjust their pigment content to better match the ambient light color. The...

🌞 New study on chromatic acclimation in cyanobacteria 🌊

This research explores how Synechococcus adapts to varying light conditions through chromatic acclimation.

hal.science/hal-04962714

#Cyanobacteria #ChromaticAcclimation #MarineScience #Microbiology #Synechococcus #ClimateAdaptation #Biomass

28.02.2025 07:55 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
Unraveling the Impact of Marine Heatwaves on the Eukaryome of the Emblematic Mediterranean Red Coral Corallium rubrum Abstract Global warming is intensifying heatwaves worldwide, leading to more frequent and severe temperature extremes. This study investigates the impact of the unprecedented 2022 Mediterranean heatwa...

🌑️ New study on the impact of 2022 Mediterranean heatwaves on coral health! 🌊

This research investigates how the 2022 heatwaves affected the coral eukaryome.

hal.science/hal-04968489

#CoralReef #ClimateChange #MarineEcology #Heatwaves #Eukaryome #CoralliumRubrum #MarineScience #Biodiversity

28.02.2025 07:51 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

🚨 New findings in carrageenan research! 🚨

This study reveals that κ/ι carrabiose motifs are not just found in gametophytes but also in the tetrasporophytes of Chondrus crispus 🧬

hal.science/hal%E2%80%93...

#Carrageenan #Research #ChondrusCrispus #Biochemistry #Biosynthesis #MassSpectrometry

28.02.2025 07:49 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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πŸŒŠπŸ”¬ Open position Junior Professor Chair at Roscoff!
We are looking for passionate individuals to contribute to groundbreaking research at the intersection of Ecology and Biology on Marine Fungi.

www.sb-roscoff.fr/fr/2025/02/2...

#Research #Oceans #MarineFungi #Ecology #Biology #CNRS #CPJ

28.02.2025 07:37 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0
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NEW PUBLICATION
A study on the impact of a high-amplitude marine heatwave in a cold temperate climate by Robin P.M. Gauff et al. . 🌿🌑️ #ClimateChange #MarineEcology #HeatwaveResilience #MarineBiology #ScientificDiscovery. amu.hal.science/hal-04775806...

10.02.2025 16:37 β€” πŸ‘ 1    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

NEW PUBLICATION
How can microbiota help in distinguishing infection states in two oyster species? Analyses showed that bacterial microbiota were better predictors of infection states than eukaryotic microbiota. ⟨10.1016/j.aquaculture.2024.741363⟩. ⟨hal–04665295⟩

05.02.2025 16:00 β€” πŸ‘ 0    πŸ” 0    πŸ’¬ 0    πŸ“Œ 0

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