Alex Auderset
@alexauderset.bsky.social
500 followers 50 following 8 posts
Anniversary Fellow at University of Southampton | Paleoclimatologist | Foram-bound d15N & d13C | Biomarkers | Cenozoic climate | Foram ecology | GO VEGAN!
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Reposted by Alex Auderset
jfarmersalmanac.bsky.social
Very excited to be a part of this epic journey with @oceanandclimate.bsky.social. Check out our #NSFfunded paper published in @science.org today & his thread below. After that, come back here for more... (1/n)
alexauderset.bsky.social
Nevertheless, this new approach to studying symbiosis offers a novel pathway to reconstruct paleo-symbiosis in extinct foraminifera—an essential piece of information for interpreting numerous geochemical proxies.
alexauderset.bsky.social
However, we also show that this relationship can be more complex in regions with strong environmental gradients, where additional factors influence nitrogen isotopes.
alexauderset.bsky.social
In this study we show that foraminifera-bound nitrogen isotopes (FB-δ15N) distinguish between symbiont-bearing and symbiont-barren foraminifera. FB-δ15N shows a clear signal of dinoflagellate symbiosis and may even identify other symbionts like chrysophytes or pelagophytes.
alexauderset.bsky.social
Nitrogen isotopes are a promising tool to reconstruct symbiosis in planktic foraminifera!
Check out our latest paper:
bg.copernicus.org/articles/22/...
alexauderset.bsky.social
In this study we show that foraminifera-bound nitrogen isotopes (FB-δ15N) distinguish between symbiont-bearing and symbiont-barren foraminifera. FB-δ15N shows a clear signal of dinoflagellate symbiosis and may even identify other symbionts like chrysophytes or pelagophytes.
Reposted by Alex Auderset
climategordon.bsky.social
Packed room at EGU for @alexauderset.bsky.social talk on ocean deoxygenation in past warm climates!
alexauderset.bsky.social
If you plan to go to Goldschmidt this year, please consider submitting an abstract to our Session 13g!
Keynote speaker: Sze Ling Ho (National Taiwan University)
Deadline approaching fast: 29th of March

conf.goldschmidt.info/goldschmidt/...
alexauderset.bsky.social
Just published in Science! Our new study shows an oxygen increase in the tropical subsurface ocean during the PETM, reconstructed by foraminifera-bound nitrogen isotopes (FB-d15N) and a foraminiferal body size model (FS-pO2).

Check out the paper:
www.science.org/doi/epdf/10....
Oxygen rise in the tropical upper ocean during the Paleocene-Eocene Thermal Maximum
Oxygenation of the low-latitude tropical North Pacific Ocean increased during the Paleocene-Eocene Thermal Maximum despite high global temperatures.
www.science.org