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Clement Vinauger

@thevinaugerlab.bsky.social
260 followers 221 following 21 posts

Associate Professor, Biochemistry Dpt & School of Neuroscience at Virginia Tech. Disease vector insects, medical entomology, neuroethology, mosquitoes.

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Reposted by Clement Vinauger
Julien Devilliers @juliendevilliers.bsky.social · 04/05/2026
We reviewed our knowledge on #mosquitoes #circadian clocks, highlighting tissue and species specific modulation of the clocks! kwnsfk27.r.eu-west-1.awstrack.me/L0/https:%2F... @thevinaugerlab.bsky.social @lahonderelab.bsky.social @joshuabenoit.bsky.social
kwnsfk27.r.eu-west-1.awstrack.me
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Clement Vinauger @thevinaugerlab.bsky.social · 22/01/2026
Check out this new preprint from the lab: www.biorxiv.org/content/10.6... Lan Lou, @juliendevilliers.bsky.social, @karthikeyanc.bsky.social, @lahonderelab.bsky.social, the Tu Lab, and @joshuabenoit.bsky.social show that mosquito olfactory rhythms are synced with daily rhythms in how we smell.
biorxiv.org
Temporal synchrony between human odor rhythms and mosquito olfactory preference shapes host attraction
For anthropophilic mosquitoes such as Aedes aegypti, aligning host-seeking with human availability enhances foraging efficiency and reproductive success. Although time of day modulates mosquito activity and olfactory sensitivity, it remains unknown whether human hosts display rhythmic changes in odor cues and whether mosquitoes adjust their sensory responses accordingly. Here, we combine chemical, behavioral, genetic, and transcriptomic approaches to reveal that both mosquitoes and their human hosts in this interaction are temporally synchronized. Gas chromatography-mass spectrometry showed systematic daily shifts in human body odor composition between morning and evening. Correspondingly, mosquitoes prefer host odors that match their own active phase, a time-specific preference abolished in timeless mutants and under constant darkness. Silencing the timeless gene further induced an aversion for the host scent under light-dark conditions. Transcriptomic analysis of mosquito heads and antennae uncovered rhythmic expression of sensory and neuromodulatory genes, driven by both circadian and light-dark cycles and which peaks during mosquitoes' active periods, with rhythmic co-expression networks collapsing in timeless knockouts. Together, these results show that mosquito attraction to humans is temporally tuned by the interplay of host odor rhythms and mosquito sensory rhythms, revealing a previously unrecognized form of interspecific temporal synchronization in vector-host interactions. ### Competing Interest Statement The authors have declared no competing interest. National Institutes of Health, R01AI155785, R21AI166633, R01AI148551 National Institute of Food and Agriculture, VA-160212
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Clement Vinauger @thevinaugerlab.bsky.social · 10/11/2025
If you are attending #EntSoc25 in Portland, Check out the work of Sydney Luff and @mdessart.bsky.social who are representing the lab at the meeting!
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Clement Vinauger @thevinaugerlab.bsky.social · 06/11/2025
Excited to see this story published from a great collaboration and support from the Global Change Center at @virginiatech.bsky.social @vtbiochemistry.bsky.social
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Sweta Agrawal @hokuba.bsky.social · 01/10/2025
The Agrawal lab is moving! This January we will be setting up shop at #UBC in Vancouver, in the department of #Zoology! We are actively recruiting at all levels, especially masters and PhD students. These position are #funded! Please send anyone interested my way!
Agrawal lab logo. A fly in the UBC colors, with dots framing its body.
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Julian F. Hillyer @vandybugs.bsky.social · 30/09/2025
New paper from the lab! When a mosquito ingests blood, the phagocytic activity of hemocytes increases with warmer environmental temperature and aging @vanderbilt.edu @vuartsci.bsky.social @evolutionvu.bsky.social doi.org/10.1016/j.ji...
doi.org
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Clement Vinauger @thevinaugerlab.bsky.social · 01/08/2025
Adaline Bisese, recipient of a Summer Undergraduate Research Fellowship, represented the lab and @vtbiochemistry.bsky.social at the 2025 Undergraduate Research Symposium yesterday. Stay tuned for exciting results on how mosquitoes choose where to land on our bodies!
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Clement Vinauger @thevinaugerlab.bsky.social · 24/06/2025
🚨New preprint from the lab! Work led by our talented former postdoc @karthikeyanc.bsky.social where we show that incomplete larval control can make things worse by producing bigger and meaner adult mosquitoes that are more efficient vectors of Zika. See thread below www.biorxiv.org/content/10.1...
biorxiv.org
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Sinead English @englishse.bsky.social · 17/06/2025
Interesting study! How the thermal tolerance of Aedes mosquito eggs varies depending on urbanisation - shows how critical developmental periods can facilitate adaptation to novel environments. Work from Souvik Chakraborty, @joshuabenoit.bsky.social & others www.sciencedirect.com/science/arti... 🧪
sciencedirect.com
Thermal tolerance of Aedes aegypti mosquito eggs is associated with urban adaptation and human interactions
Climate change will profoundly affect mosquito distributions and their ability to serve as vectors for disease, specifically with the anticipated incr…
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Clement Vinauger @thevinaugerlab.bsky.social · 27/03/2025
The lab is super excited to welcome @juliendevilliers.bsky.social as a new postdoc! Stay tuned for studies to come on mosquito olfactory rhythms and chemical ecology. @vtbiochemistry.bsky.social @vtcals.bsky.social
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Andy Pekosz @andrewpekosz.bsky.social · 22/02/2025
Everyone who ever got funding through NIAID should be aware of this bill and start sending messages to their US legislators. The bill intends to dissolve NIAID. This is Project 2025 www.congress.gov/bill/119th-c...
congress.gov
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Chloé Lahondère @lahonderelab.bsky.social · 18/02/2025
Giving Day is almost there! Initiatives around Global Climate Change need more support than ever! Please consider donating to the @globalchangevt.bsky.social tomorrow!
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David Shiffman, Ph.D. 🦈 @whysharksmatter.bsky.social · 12/02/2025
If we’re renaming bodies of water based on petty grievances, I propose that this be renamed the Kendrick Lamar passage.
Google maps screenshot of the Drake passage between South America and Antarctica
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Reposted by Clement Vinauger
mbonizzoni.bsky.social @mbonizzoni.bsky.social · 04/02/2025
Do you want to know if global warming will impact how mosquito respond to viral infection? check our latest publication in Communications Biology rdcu.be/d8wse
rdcu.be
Prolonged exposure to heat enhances mosquito tolerance to viral infection
Communications Biology - Single versus multi-generational exposure to increased temperature alters mosquito immune response to viral infection, with implications for mosquito-virus interactions...
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Michael Robert (he/him) @marobert.bsky.social · 01/02/2025
turns out several climate-change based NSF programs have been archived. new.nsf.gov/focus-areas/...
new.nsf.gov
Climate
Learn how NSF invests in research to understand the Earth's climate, including climate change and its impacts on nature and society.
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Chloé Lahondère @lahonderelab.bsky.social · 29/01/2025
new.nsf.gov/executive-or...
new.nsf.gov
NSF Implementation of Recent Executive Orders
Information for the NSF community regarding executive orders.
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Clement Vinauger @thevinaugerlab.bsky.social · 05/01/2025
Today at #scib2025, our lab tech Spruha Rami presented her exciting work recording the neural activity of the antennal lobe during mosquito sleep! Stay tuned for more from this work!
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Sweta Agrawal @hokuba.bsky.social · 05/01/2025
attn #SICB2025! a tech from my lab, Wayne Kuo, will be presenting a poster on fly landing! Find out how flies use mechanosensory info to decide when and how to land. Now soliciting names for our assay...we're currently calling it the Hokie Pokie P4-67 on Tues Jan 7, part of "Flying and vision"
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Chloé Lahondère @lahonderelab.bsky.social · 10/12/2024
I created a starter pack highlighting Women in the field of Disease Vector Biology and Ecology: go.bsky.app/E7wuQus Please share and let me know if you’d like to be added! 🦟🦠🪰
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Clement Vinauger @thevinaugerlab.bsky.social · 13/12/2024
The lab is super excited to welcome @mdessart.bsky.social as a new postdoc fellow! Stay tuned for the work to come on mosquito sensory ecology and chronobiology. Welcome, Martin!
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Clement Vinauger @thevinaugerlab.bsky.social · 13/11/2024
Great to see our former postdoc —now Assist. Prof. @ UC Riverside — Karthikeyan Chandrasegaran at the ESA meeting in Phoenix, AZ! His lab is recruiting at the graduate level. Reach out if you’re interested!
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Clement Vinauger @thevinaugerlab.bsky.social · 18/03/2024
New preprint in collaboration with Josh Benoit's group, @lahonderelab.bsky.social and Mariangela Bonizzoni. We compared the activity and sleep profiles of multiple strains of Aedes albopictus and found some differences influenced by their geographic origin. www.biorxiv.org/content/10.1...
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Chloé Lahondère @lahonderelab.bsky.social · 10/03/2024
Excited to share our newest paper on Aedes mosquito thermal biology now out in Global Change Biology! 🦟🌡️ Great collaboration with the Bonizzoni lab! onlinelibrary.wiley.com/doi/10.1111/...
onlinelibrary.wiley.com
Population‐specific responses to developmental temperature in the arboviral vector Aedes albopictus: Implications for climate change
Global Change Biology is an environmental change journal tackling issues such as sustainability, climate change and environmental protection.
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Chloé Lahondère @lahonderelab.bsky.social · 13/12/2023
Check out our newest paper on mosquito sugar feeding! This study led by PhD student Forde Upshur shows that mosquitoes, including invasive species such as Aedes aegypti and Ae. albopictus, feed on a very wide range of wild & ornamental plants, and can obtain carbs throughout the season rdcu.be/dtwJO
Mosquito feeding on a wild flower (Virginia, USA).
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Jeff Riffell @riffelllab.bsky.social · 08/02/2024
Our paper is now out in Science! Led by Jeremy Chan, we find that atmospheric pollutants negatively impact plant-pollinator interactions. A fantastic collaboration with Joel Thornton and others. www.science.org/content/arti...
science.org
At night, pollution keeps pollinating insects from smelling the flowers
Nitrogen radicals degrade key floral scents, threatening ecosystems and agriculture
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