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[Ancient Kisses, Space Moss, and the Origins of the Moon]-[What’s In A Kiss? 21 Million Years Of Evolution]

Short Wave · B1 · 2025-11-28

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📋 Summary

Exploring Evolutionary History, Space Survival, and Planetary Origins

In this episode of NPR's Shortwave, hosts Regina Barber and Emily Kwong, joined by Scott Detrow, explore three distinct scientific topics: the evolutionary roots of kissing, the resilience of moss in space, and the geochemical origins of the Moon.

The Evolutionary History of Kissing

Matilda Brindle from the University of Oxford investigated the evolutionary origins of "non-aggressive mouth-to-mouth contact that does not involve passing food," which scientists define as kissing. By conducting a phylogenetic analysis—treating kissing as a trait mapped onto a primate family tree—Brindle discovered that this behavior likely originated in the common ancestor of all large apes 21 million years ago.

Perhaps most intriguingly, the research suggests that Neanderthals also engaged in this behavior. This provides a more "romantic take" on the interactions between humans and Neanderthals, noting that since most humans of non-African descent carry a small amount of Neanderthal DNA, kissing may have been a significant aspect of their interbreeding relationships.

Moss: A Potential Pioneer for Space Exploration

As humanity looks toward long-term space travel, scientists are evaluating which plants can survive the harsh conditions of space, including extreme temperature fluctuations, vacuum, and high levels of radiation. Tomomichi Fujita of Hokkaido University led a study on bryophytes, specifically moss, which are known for their "incredible survival strategies."

Having colonized land 500 million years ago, mosses are well-adapted to harsh environments. In a space experiment, moss spores—protected by a coating called a "sporangium"—were sent into space for nine months. The results were "shockingly well," with over 80% of the spores germinating upon their return to Earth. Scientists estimate these spores could potentially survive in space conditions for up to 15 years, suggesting that moss could eventually play a role in oxygen production or soil transformation on other planets, though further research is needed to see if the plant can grow under extreme radiation.

The Planetary Whodunit: The Origin of the Moon

Finally, the team discussed the collision that formed the Moon. Current scientific consensus holds that a Mars-sized object named "Theia" smashed into a "proto-Earth," creating the debris that formed the Moon. A new study published in the journal Science utilized geochemical data from Apollo mission lunar samples to trace Theia’s origins.

By comparing these samples to Earth rocks, researchers determined that Theia likely formed in the "inner solar system," closer to the Sun. This finding is significant because it shifts theories regarding the origins of Earth's water. Previously, some scientists hypothesized that Theia—if it had formed in the outer solar system past Jupiter—could have delivered water to Earth. However, because the inner solar system is "drier," it is now believed that Theia was not the primary source of Earth's water, prompting further debate on whether water arrived via comets or other processes during the Earth's formation.

🎯Key Sentences

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I'm also a fan of apes making out.
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I'm glad we're closer to home this week.
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Get excited for all of that on this episode
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I don't even know where to start with that.
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That's an important aspect.
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📝Key Phrases

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track back through
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lock lips
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big deal
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romantic take
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come about
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📖 Transcript

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