English 箭头
Podcast Cover

[The Great Dying: Solving the Mystery of Ancient Mass Extinction]-[Why Some Species Survive Mass Extinctions]

Short Wave · B1 · 2025-11-05

Technologynpr
Or study on the web version

📋 Summary

The Great Dying: A Planetary Crisis

Approximately 250 million years ago, Earth experienced its most catastrophic biological event: the Permian-Triassic extinction, widely known as "the Great Dying." During this period, massive volcanic activity in what is now the Siberian Traps released vast quantities of greenhouse gases, triggering a global climate collapse. The result was a dramatic rise in temperatures and a severe depletion of oxygen in the oceans, leading to the largest loss of animal diversity in Earth's history. While the majority of species perished, a few managed to survive, setting the stage for a scientific mystery: why did certain organisms, specifically bivalves (clams), thrive while their distant cousins, the brachiopods, were nearly wiped out?

The Ecophysiological Investigation

Kemi Ashingiwa, a paleophysiology graduate student at Stanford University, is working to move beyond theoretical speculation by collecting "quantitative data" to understand the biological mechanisms behind these survival patterns. Historically, researchers have debated whether the survival of bivalves was due to better temperature regulation, superior oxygen consumption, or competitive advantages in food availability. Ashingiwa’s research specifically investigates the "synergistic effects" of these stressors—temperature, oxygen levels, and, crucially, the presence of sulfide.

The Role of Sulfide and Anoxia

Sulfide (H2S) is a toxic chemical produced by bacteria in anoxic (no oxygen) environments. As volcanic activity drove up temperatures, ocean oxygen levels plummeted, creating a perfect environment for sulfide-producing microbes. Ashingiwa’s experiments involved exposing both bivalves and brachiopods to these lethal conditions across varying temperatures. Her findings revealed a distinct physiological divide: while brachiopods are surprisingly resilient in low-oxygen, low-temperature settings, they falter significantly as temperatures rise and sulfide levels increase.

Conversely, bivalves possess what Ashingiwa describes as "advanced gills" that allow them to oxygenate more effectively under thermal stress. Her study confirmed that bivalves are "much, much better at dealing with sulfide" than brachiopods. This physiological edge explains why bivalves were able to dominate the post-extinction landscape, while brachiopods—once a common marine fixture—faded into relative obscurity.

Lessons for Contemporary Climate Change

The mystery of the End-Permian extinction is not merely an academic exercise; it serves as a warning for modern anthropogenic climate change. Ashingiwa emphasizes that the conditions that caused the Great Dying—spikes in temperature, deoxygenation, and the accumulation of toxic byproducts like sulfide—are mirrored in the environmental pressures of today.

Her research underscores the complexity of climate impacts: "It's not just temperature that matters... it's all of these things together, because their combined effects are so much worse." By understanding how ancient species navigated these stressors, scientists gain critical insights into how modern ecosystems might respond to current environmental degradation. Ashingiwa warns that everything in these ecosystems is "interlinked," and protecting biodiversity requires a deeper understanding of these multi-faceted, synergistic threats. As she notes, brachiopods have survived for eons, and it would be a "real tragedy" if human-driven climate change were the catalyst that finally caused their permanent extinction.

🎯Key Sentences

1
That is the question.
2
Which is why when you go to a seafood restaurant, there are mussels up the wazoo.
3
Can you lay out the possibilities
4
And that put pressure on animals.
5
And I think that's important to investigate and interesting to study.
Expand All

📝Key Phrases

1
go-to
2
on the scale of
3
wipe out
4
beat out
5
win out
Expand All

📖 Transcript

Hey, it's Ray from Car Talk.
Are you tired of all the depth and thoughtful care that goes into NPR shows?
Want some good old-fashioned goofing around and stumbling to figure out what's going on?
Well, I've been taking occasional car questions again.
You can hear them by signing up for NPR Plus, along with lots of other bonus content.
Just go to plus.npr.org. could you leave us a rating or a review?

ListenLeap Brings You Into Real Context Learning

🎨 Interesting Content
🌍 Real Materials
📱 Listen Anytime
Or study on the web version