Why fossilized feces from ancestors of modern animals help us understand Earth’s early ecosystems

CBC | Top Stories News · collected 2026-08-14 · by Mitchell Fox
Read the original at CBC | Top Stories News ↗

Summary

A study published in the journal Trends in Evolution & Ecology examines the role of fossilized feces from ancestors of modern animals in understanding Earth's early ecosystems. The research analyzed 37 deposits around the world containing over 700 coprolites, or fecal fossils, dating back 540 million years to the Cambrian period. According to the study, feces likely contributed to making deep water ecosystems more habitable and nutrients more available during this time. The findings suggest that the study of coprolites can provide valuable insights into modern ocean ecosystems and how they originated.
Written by the local model on 2026-08-14, using this article's own text rather than the other coverage of the same event (that is the story summary below).

Signals How these are calculated →

Claims extracted
44
claim-shaped sentences
Uncertain
14%
6 of 44 hedged
Leaning
not scored
needs a local LLM pass
Publisher trust
95.4
red-flag proxy, not a credibility rating
Outlets on this story
1
Science
Narrative spread
1
articles carrying this framing
Analyzed 2026-08-14 · how these are computed

AI analysis (generated at analysis time, not now)

Story summary

540 million years ago, a massive increase in biodiversity led to the emergence of predecessors to modern animals, including worms, invertebrates, and mollusk-like organisms. At this time, known as the Cambrian period, the study of fossilized feces, or coprolites, reveals that fecal matter was abundant in deep water ecosystems. Researchers at the Karlsruhe Natural History Museum in Germany, led by Julien Kimmig, found that these ancient feces likely played a crucial role in making deep water ecosystems more habitable and increasing nutrient availability. This discovery is significant for understanding modern ocean ecosystems and nutrient cycles. The study suggests that the abundance of feces during the Cambrian period was not just a curiosity, but an important factor in shaping the evolution of life on Earth.

Written for “Ancient Fossilized Animal Waste” on 2026-08-31, grounded in this article and the 0 other(s) covering the same event.
Why this leaning score
This article does not take a side on a contested political question, so it has no leaning score. That is an answer rather than a gap: a match report or a rescue can be warmly or critically written without being left or right, and scoring it anyway is how approval of a subject gets recorded as a political position.
No political leaning scored for article 728 · logged 2026-08-27

Story

📰 Ancient Fossilized Animal Waste
Science · 1 article(s) covering the same event. This is the one the site leads with.

How this is being covered How these are calculated →

Article leaning vs. publisher reliability
Source leaning vs. consistency

Compared with similar articles

Nothing to compare against. No article is close enough to this one for the pipeline to have linked or judged the pair.

Publisher

CBC | Top Stories News · 194 article(s) · 0 correction(s) detected
SignalValueWeight
Correction rate 0.000 0.4
Uncertainty density 0.092 0.25
Assertive mismatch rate 0.000 0.35
No corrections detected for this publisher. That may mean careful reporting, or simply that nothing has been checked.

Who wrote this

Mitchell Fox
4 article(s) here · 1 carrying a prediction
🔮 Researchers climbed three hours to the cave they expected to be a Himalayan brown bear den, instead finding nomadic shepherds using it as a shelter.
🔮 In May, London, Ont.'s, environmental committee recommended requiring retailers that sell invasive plants and animals to provide information to customers at the point of sale.
🔮 Role of feces in deep oceans 540 million years ago might tell us more about modern nutrient cycles Long before dinosaurs roamed the Earth, an eruption of biodiversity saw the emergence of the predecessors to modern animals — and an increase in poo.
🔮 Ships stranded in Gulf could pose global invasive-species threat, study says
Also by Mitchell Fox
Nothing else under this byline is closely related to this article, so these are simply their most recent.

Topics

Germany Karlsruhe Trends in Evolution & Ecology the Cambrian Radiation the Karlsruhe Natural History Museum

Subjects

Kimmig PERSON · 3× Germany GPE · 1× Julien Kimmig PERSON · 1× Karlsruhe GPE · 1× Karma Nanglu PERSON · 1× Russell Bicknell PERSON · 1× Trends in Evolution & Ecology ORG · 1× University of California Riverside’s ORG · 1× the Karlsruhe Natural History Museum ORG · 1×

Narrative

“Barely anyone that looks at a marine ecosystem thinks there's so much poo floating around that keeps the modern marine ecosystem alive … and that is actually a huge thing,” said Julien Kimmig, a co-author of the paper and head of the paleontology division at the Karlsruhe Natural History Museum in Karlsruhe, Germany.
framing: assertive · carried by 1 article(s) · first seen 2026-08-14
🔮 Role of feces in deep oceans 540 million years ago might tell us more about modern nutrient cycles Long before dinosaurs roamed the Earth, an eruption of biodiversity saw the emergence of the predecessors to modern animals — and an increase in poo.

Claims (44 extracted, 6 hedged)

Why fossilized feces from ancestors of modern animals help us understand Earth’s early ecosystems asserted
us → help → ecosystems
Role of feces in deep oceans 540 million years ago might tell us more about modern nutrient cycles Long before dinosaurs roamed the Earth, an eruption of biodiversity saw the emergence of the predecessors to modern animals — and an increase in poo. uncertain
eruption → tell → poo
While not the most popular brand of paleontology, a study published last week is shining a light on how the study of coprolites — or poo fossils — helps us understand Earth’s early ecosystems, along with nutrient cycles and animal relationships today. asserted
us → publish → cycles
The paper, published in the journal Trends in Evolution & Ecology, drew on analysis of fecal fossils from the Cambrian period, beginning about 540 million years ago. asserted
paper → publish → period
Looking at feces records from early worms, invertebrates and mollusk-like organisms, researchers found fecal matter likely contributed to making deep water ecosystems more habitable and nutrients more available during that time — about 300 million years before dinosaurs. asserted
nutrients → look → dinosaurs
For researchers, the study’s finding that feces appeared in abundance during the Cambrian period is significant for understanding where today’s ocean ecosystems originated. asserted
ecosystems → appear → period
“Barely anyone that looks at a marine ecosystem thinks there's so much poo floating around that keeps the modern marine ecosystem alive … and that is actually a huge thing,” said Julien Kimmig, a co-author of the paper and head of the paleontology division at the Karlsruhe Natural History Museum in Karlsruhe, Germany. asserted
Kimmig → look → Karlsruhe
“You should always have an eye open on what actually drives modern and past ecosystems and potentially evolution.” asserted
what → have → ecosystems
For some paleontologists, the research points to how coprolites — fecal matter preserved and mineralized in rock — advance knowledge of not only which animals lived in the distant past but also how their ecosystems worked. asserted
ecosystems → point → past
Clues for modern ecosystems Kimmig and co-author Russell Bicknell analyzed records of several hundred coprolites from 37 deposits around the globe, including some fossils they collected themselves over the years and others within museum collections. asserted
they → analyze → collections
The feces came from a variety of burrowing worms, arthropods, brachiopods and hyoliths (similar to cone-shaped mussels). asserted
feces → come → mussels
The earliest fossils were microscopic, but by 15 million years into the Cambrian period, they were close to the size of a rabbit dropping, Kimmig said. asserted
Kimmig → drop → rabbit
Later, they became visible to the naked eye and contained pieces of shell or worm. asserted
they → become → shell
Beyond clues about evolution and which animals ate each other, Kimmig said studying coprolites helps understand Earth’s ecology and why the Cambrian Radiation — a rapid appearance of modern animal groups in the fossil record also known as the Cambrian Explosion — brought so much change to ecosystems. asserted
Radiation → eat → ecosystems
He said ecology might be where paleontology is most relevant to modern society — how past ecosystems adjusted to changes in temperature, oxygen or nutrient levels and biological adaptations might be relevant to what’s to come. uncertain
what → say → temperature
“It is important to not only understand what animals lived through time, but also in which environments they lived and … what led to these different ecological habitats through time,” he said. asserted
he → understand → time
“We can take the modern and look at the past … but we can also take the past and actually look at the modern and the future and try at least to model or predict what the future might look like. uncertain
future → take → what
The case for Cambrian coprolites For paleontologists who study the Cambrian period, the study of feces adds another dimension to understanding one of the Earth’s most fascinating events. asserted
study → study → events
Before the Cambrian, the Ediacaran period saw the emergence of fossils large enough to see, said Karma Nanglu, an assistant professor in University of California Riverside’s department of Earth and planetary sciences. asserted
Nanglu → see → sciences
The animals within them, however, were “so strange and so different than what we see in modern oceans … that we have a hard time assigning them to any modern group of animal life.” asserted
we → see → life
Squirrel poop dating back to last ice age is full of mammoth, horse DNA New fossil species discovered on Cape Breton Island may be one of the earliest plant-eating animals The Cambrian Radiation — about 520 to 540 million years ago — produced fossil records of relatives to modern animals. uncertain
Radiation → date → animals
With indications of relatives of shrimp, marine mollusks and more, Nanglu said, the Cambrian saw “the establishment of diversity as we know it.” asserted
we → say → it
“If you're interested basically in where the oceans of today came from, the origins have to be traced back to the Cambrian,” he said. asserted
he → come → Cambrian
“I would argue that there are not many more time periods more important to understand than the Cambrian.” asserted
I → argue → Cambrian
The study showed the Cambrian Radiation also saw a significant expansion in feces compared with the Ediacaran. asserted
Radiation → show → Ediacaran
Interest in the Cambrian Radiation, Nanglu said, often focuses on predator-prey relationships or “evolutionary arms races.” asserted
Nanglu → say → relationships
Looking at waste, nutrient and energy cycles and knock-down effects on biological diversity, however, means looking beyond animals to ecosystems and even beyond that to geological periods. asserted
Looking → look → periods
That can help understand modern and future ecosystems. asserted
That → help → ecosystems
“If we were to look at forward projections in terms of what might change in the ocean, we have basically a single record of life in the universe,” he said. uncertain
he → look → universe
“By looking back, we can look at environments that are analogous to ones that we're not living in now, but we may experience in the future.” uncertain
we → look → future
For some paleontologists, poo has become central to their research. asserted
poo → become → research
When she learned about fossilized feces as a graduate student, Karen Chin thought it “was the craziest thing.” asserted
it → learn → student
She has also co-written three kids books about coprolites, including Dino Dung: The Scoop on Fossil Feces, with Thom Holmes. asserted
She → co → Holmes
She said coprolites are rare, variable and don’t always provide clear clues of what organism produced them. asserted
organism → say → them
“I think because they are so challenging to study and frankly, they don't have the charismatic cachet of dinosaur bones or fossil wood … they are far less studied than they should be,” she said. asserted
she → think → bones
Chin’s research focuses on the Mesozoic period, about 252 to 66 million years ago, when dinosaurs roamed the Earth. asserted
dinosaurs → focus → Earth
She said fossils of animal and plant bodies can uncover their biology but coprolites add another dimension: interaction. asserted
coprolites → say → dimension
They can indicate “who ate who” and provide clues about carbon cycles in which organisms fed on, decomposed or utilised feces. asserted
organisms → indicate → feces
Ancient mammals had mostly dark brown coats during the dinosaur era, new study reveals Oldest fossil footprints from reptile found in Australia She said it is exciting to learn unexpected things from fecal fossils — for example, she has seen evidence some herbivores fed on rotting wood and others ate crustaceans. asserted
others → have → crustaceans
“There's a lot we don't know about the ancient world,” she said. asserted
she → be → world
…and 4 more, not listed.
💬 Give feedback
🕘 History 🎫 Support