Joe McCormick

speaker
4,706 appearances 10 recordings 1 series first heard Sep 2026 last heard 2d ago

Joe McCormick’s voice in public audio — every appearance, attributed to the second.

Trend

recordings per month · last 12 months
10 · Sep OctJan 26AprJulnow

Recordings per month over the last 12 months — 10 in all, peaking in Sep 2026 with 10.

Appearances

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Biotic interchanges are rarely symmetrical, they're rarely totally even. voice-verified
Usually you have more life flowing in one direction across the new corridor than flowing in the other direction. voice-verified
Why would that be? voice-verified
Why the asymmetry? voice-verified
Some answers lie in characteristics of the organisms. voice-verified
Maybe some organisms are just more adaptable. voice-verified
They're better at dispersing into new environments. voice-verified
Maybe they're better at evolving more quickly and changing what they're adapted to. voice-verified
But some answers, on the other hand, might lie in characteristics of the land and environment on either side of the new corridor or within the corridor itself. voice-verified
What if something about the geography favors dispersal one way but not the other? voice-verified
And to be clear here, the authors do not argue that Wallace was wrong about the deep ocean trench in the Lombok Strait being a barrier to dispersal. voice-verified
It it is. voice-verified
It does stop a lot of exchange. voice-verified
And they note that the only mammals which seem to have successfully crossed that boundary naturally are bats and rodents. voice-verified
Big mammals seemingly do not cross. voice-verified
But of the animals that have crossed, one thing that is clear is which way the asymmetry goes. voice-verified
Over the last twenty million years, way more animals from Asia have successfully crossed the barrier and made their way into New Guinea and onto the Australian continent. voice-verified
Relatively little dispersal has gone the other direction from Australia and New Guinea to the west into Asia. voice-verified
Why would that be? voice-verified
Well, the authors argue, based on analysis of a huge data set and a sophisticated computer model, that the answer has to do with the climate of the islands within and on either side of Wallacea, especially how wet or dry those islands are and the precipitation tolerance of the animals that evolved on either side. voice-verified
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