Did poop enable the evolution of complex animals? - Ars Technica
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The Cambrian explosion may have been fueled by poop.
The first animals on Earth emerged about 600 million years ago, and 60 million years later, those simple early animals evolved into wildly different directions, branching out into a diverse menagerie of complicated new forms and conquering new ecological niches. Known as the Cambrian Explosion, this flurry of rapid evolution produced most of the animal phyla and ecosystems we see around us today.
And it may have taken off because some of those early animals evolved a bizarre new ability: pooping. According to a recent study, the first poo pellets helped spread nutrients to deeper parts of the ocean, fueling the evolution of bigger animals in more diverse ecosystems.
Powered (partly) by poop: The ocean’s biological pump
Karlsruhe Institute of Technology paleontologist Julien Kimming and Flinders University paleobiologist Russell Bicknell recently dug through the scientific literature for every fossilized digestive system and Cambrian-period coprolite (fossilized fecal matter) they could find, plotting how digestive tracts and feces evolved over time. They also examined the nutrient cycles that support life in today’s oceans and compared them with what—based on simulations and geological evidence—the oceans’ chemical makeup would have been 540 million years ago. All that data pointed to something we’ve overlooked: the raw nutrients that fed the ancestors of today’s animal phyla may have reached the ocean depths thanks to feces.
In today’s oceans, the water is chock-full of poop from everything from zooplankton to blue whales, and it’s a key part of a system called a biological pump, which moves nutrients like carbon, iron, nitrogen, and phosphorus around the ocean. Without that biological pump, the deeper reaches of the ocean would be much less habitable than they are now. And “less habitable” was pretty much the case before about 540 million years ago, toward the end of what’s called the Ediacaran Period. Kimming and Bicknell argue that when animals evolved the first digestive systems, they sent the first poop drifting down through the depths, which gave the early biological pump a sort of kickstart.
“The advent of fecal pellets,” wrote Kimming and Bicknell, “provided an additional source of organic carbon, as well as iron, nitrogen, and phosphorus, to deeper waters. … In this framework, fecal pellets significantly boosted support for marine animal life and possibly supported the diversification and increased Cambrian biomass.”
This coprolite still contains remnants of an unlucky trilobite, dating to somewhere between 520 and 506 million years ago in what’s now Australia.
Kimming and Bicknell 2026
This coprolite still contains remnants of an unlucky trilobite, dating to somewhere between 520 and 506 million years ago in what’s now Australia.
Kimming and Bicknell 2026
This 520-506-million-year-old coprolite from what’s now Greenland contains some shell fragments. All things shall pass.
John Peel
This 520-506-million-year-old coprolite from what’s now Greenland contains some shell fragments. All things shall pass.
John Peel
Macroscopic coprolite preserving shell fragments and organic matter from the Wulongqing Formation (Cambrian Series 2, Stage 4) Yunnan Province, South China. YPM IP 421925.
Kimming and Bicknell 2026
Macroscopic coprolite preserving shell fragments and organic matter from the Wulongqing Formation (Cambrian Series 2, Stage 4) Yunnan Province, South China. YPM IP 421925.
Kimming and Bicknell 2026
This 520-506-million-year-old coprolite from what’s now Greenland contains some shell fragments. All things shall pass.
John Peel
Macroscopic coprolite preserving shell fragments and organic matter from the Wulongqing Formation (Cambrian Series 2, Stage 4) Yunnan Province, South China. YPM IP 421925.
Kimming and Bicknell 2026
This 520-506-million-year-old coprolite from what’s now Nevada looks more like familiar, modern poop, with a distinctive pellet shape.
Kimming and Bicknell 2026
Macroscopic coprolite preserving unidentified organic matter from the Paseky Shale Member, Holšiny-Hořice Formation (Cambrian Series 2, Stage 4), Czech Republic. I261.
Petr Kraft
These coprolites are arrayed around the exit of a burrow at the Raven’s Throat River site, suggesting they may have been the work of the burrowing creature.
Kimming and Bicknell 2026
These microscopic pellets of poo are rich in phosphate. They were dropped by an...