Did poop enable the evolution of complex animals?

Ars Technica News

Summary

A new study suggests that the advent of fecal pellets during the Cambrian period supplied essential nutrients to deeper ocean waters, potentially supporting the diversification and increased biomass of complex animal life.

<p class="western" align="left">The Cambrian explosion may have been fueled by poop.</p> <p class="western" align="left">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.</p> <p class="western" align="left">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.</p><p><a href="https://arstechnica.com/science/2026/08/feces-fueled-a-flurry-of-evolution-during-the-cambrian-study-suggests/">Read full article</a></p> <p><a href="https://arstechnica.com/science/2026/08/feces-fueled-a-flurry-of-evolution-during-the-cambrian-study-suggests/#comments">Comments</a></p>
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# Did poop enable the evolution of complex animals? Source: [https://arstechnica.com/science/2026/08/feces-fueled-a-flurry-of-evolution-during-the-cambrian-study-suggests/](https://arstechnica.com/science/2026/08/feces-fueled-a-flurry-of-evolution-during-the-cambrian-study-suggests/) “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 ## How defecation changed the world The first animals on Earth were mostly simple creatures that lived in the sunlit upper layers of the ocean or on the shallowest parts of the seafloor\. Depending on which set of scientists you ask, those early animals were[similar to either sponges or jellyfish](https://www.nature.com/articles/d41586-026-00238-z)\. Organs hadn’t been invented yet, so “eating” just meant waiting for tiny particles of food, like bits of plankton or bacteria, to float into the only opening in the animal’s body\. Its cells would then engulf the food particle and break it down into its constituent molecules\. What these early animals released back into the ocean were mostly just chemical byproducts of their cells’ metabolism, not nutrients most other animals could use\. So the deeper reaches of the ocean were largely unoccupied, because they didn’t offer enough nutrients to keep animals alive\. Digestive tracts and poop changed everything\. By around 580 million years ago, some animals had started to evolve simple organs\. Suddenly, these animals could swallow macroscopic chunks of food and digest them in their very simple—but still revolutionary\!—guts, outside their cells, which probably really scandalized the sponges\. That meant animals could eat more at a time, to support more complicated bodies, but it also meant they needed to dump the parts they couldn’t digest or absorb\. Hence the advent of poop\. So far, paleontologists have unearthed Cambrian coprolites from about 35 sites around the world, spanning a period from around 540 to 494 million years ago\. “They range from microscopic to several centimeters in size and include forms such as elongated, cylindrical, ellipsoid, circular, and ‘exploded’ fecal ‘carpets,’” wrote Kimming and Bicknell, rather evocatively\. Some of the larger coprolites contain bits of shell or exoskeleton, revealing a bit about the diets of whatever produced them\. The sheer diversity of the size and shape of all that fossilized feces suggests that the animals that produced it must also have been diverse \(although scientists haven’t yet managed to match very many Cambrian fossil animals to the corresponding coprolites\)\.

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