Adam Sharp

@adam-sharp.bsky.social

Arthropod Ecology and Conservation Scientist. IUCN SSC Atlantic Islands Invertebrate Specialist Group. Tropical forests and desert islands.

New paper out in Evolutionary Ecology by Michel Dongmo - habitat and plasticity of thermal tolerance in tropical Bicyclus butterflies - thrilled to see it out, a lot of interesting results packed into this one link.springer.com/article/10.1...

Habitat effects on local adaptation and plasticity of thermal tolerance across life stages in tropical Bicyclus butterflies - Evolutionary Ecology

Climate change impacts on ectotherms will be a consequence of an interplay between species-specific evolutionary effects, population-level local adaptation, and developmental or plastic effects in individuals. While variation in thermal tolerance resulting from species physiological differences and local adaptation are well researched, how variation in plasticity across habitats might impact vulnerability to climate change remains poorly understood. We studied microhabitat (understory vs. open) distributions and the plasticity in thermal tolerance of four Bicyclus butterfly species across forest and ecotone (savanna-forest transition zone) habitats in Cameroon. For each species, we performed common garden experiments at two stable temperature regimes (20 and 30 °C) and quantified larval and adult thermal tolerance. We found clear differences in distributions across species such that two species were more associated with open microhabitats (B. dorothea and B. vulgaris) while two others were more understory associated (B. sanaos and B. sandace), with variation across seasons and habitats (forest vs. ecotone). Three species exhibited higher plasticity in critical thermal maximum (CTmax) in the ecotone relative to the forest indicating the importance of the interaction between habitat and developmental temperatures in influencing thermal tolerance. Microhabitat distributions were also consistent with trends in thermal tolerance; the most understory-associated species had both the lowest average CTmax and lowest plasticity in CTmax in the ecotone. Our findings suggest that microclimate and thermal adaptation shape plastic responses to thermal tolerance, and these factors will likely result in heterogenous responses to climatic change for tropical insects.

link.springer.com

El Niño events are getting more extreme, and arthropods in tropical forests 🐝 🪲 🕷️ 🪳are feeling it. In a new study, researchers found long-term declines in diversity and ecological services. eos.org/articles/el-...

El Niño May Be Driving Insect Decline in the Tropics - Eos

Stronger and more frequent El Niño events are contributing to a decline in arthropod diversity and population, as well as to a reduction in the ecological services the animals provide.

eos.org

New article, open access! 📣🦗 When is habitat specialism not really habitat specialism? One weird island-endemic cricket species seems to be confined to young lava flows by invasive species, not ecological preference. This analysis informed two new protected areas 💪 doi.org/10.1111/icad...

Invasive insect colonisation shapes the population distribution of an island‐endemic scaly cricket

I assessed whether non-native insect colonisation altered the population distribution of one case study island-endemic insect: Discophallus ascension of volcanic Ascension Island in the South Atlant...

doi.org

New article out today in Nature - intensified El Niño events under climate change appear to be chipping away at tropical forest arthropod diversity. This is already leading to substantial losses in arthropod function in primary forests across the tropics. rdcu.be/ezAxP

Stronger El Niños reduce tropical forest arthropod diversity and function

Nature - Time-series data from tropical forests tracking weather and declines in arthropod diversity and function show that fluctuations in species were largely dependent on their El Niño...

rdcu.be

The Daintree Rainforest Observatory in Queensland Australia is without a doubt one of the coolest research sites I’ve visited. The team there have been using the full-sized research crane to position our insect traps in the tree canopy! A peculiar/amazing sight in the middle of the rainforest 🌴🌳🏗️🌴🌳

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Tiny habitats are important for island-endemic arthropod conservation! Especially caves, isolated pools, sea stacks and high-elevation patches of native vegetation. These "micro-refugia" from threats may be feasible targets for first steps in local management. Open access :) doi.org/10.1017/S003...

Tiny habitats of tiny species: the importance of micro-refugia for threatened island-endemic arthropods | Oryx | Cambridge Core

Tiny habitats of tiny species: the importance of micro-refugia for threatened island-endemic arthropods

doi.org

Some of my favourite caterpillar morphospecies descriptions from the dataset of this excellent #insect declines analysis in PNAS: backflip barfer red biting shitter grampa gothster Minifuzzywuzzy bulging turd Taxonomists take note please. doi.org/10.1073/pnas...

A window to the world of global insect declines: Moth biodiversity trends are complex and heterogeneous | PNAS

Moths are the most taxonomically and ecologically diverse insect taxon for which there exist considerable time-series abundance data. There is an a...

doi.org

Here's an #entomology Christmas tree to start December with! 'Tis the season to Ö̴̢̯̲́B̸̰̠̈̌Ȩ̴̞̳̑Y̴̳͐͗ ̴͙̭́T̷̟͖̺͌͠Ḩ̷̩̝͛Ȩ̶̠̉̓͝ ̸̲͇̝͆̓F̴̟̜͋U̷̘̐̃̈́N̸͉̟̈́Ǧ̸̡̖̀U̵̥̾Ś̴̜̳̅͐ 🧟🎄 (A weevil succumbed to Cordyceps "zombie" fungus in Honduras, 2013)

Cordyceps fungus growing out of weevil in Cusuco National Park, Honduras