
Earthworks spotted in the Amazon hint at huge ancient civilization
July 29, 202620 min · 3,513 words
Show notes
In this episode: 00:45 Ancient structures hidden beneath the Amazon’s canopy Research article: Pärssinen et al. 09:15 Research Highlights Nature: It’ll grow on you: live fungi formed into sustainable fashion Physical Review Fluids: Gourmandie et al. 11:48 Tiny fossils represent the earliest-known squid ancestor Research article: Song et al.
Highlighted moments
I estimated maybe 2,000, 3,000 in total, but it's 10 times more than I expected before the LiDAR campaign.
“Our understanding of the pristine tropical forests, it is no more valid, because so much has happened there and the humans have affected the biodiversity and also the soil composition and so on.”
“what we have now discovered is that they actually evolved that shell that they could use for floating almost as soon as they branched off from the other mollusks, which is quite exciting.”
Transcript
Introduction to Lexus
0:00Hello, hello, this is Brooke DeVard, host of the Naked Beauty Podcast, and I want to talk to you about Lexus. At Lexus, master craftsmen called Takumi are involved not just in physical craftsmanship, but in all of those sensory details. These masters evaluate things like how a door closes, the click of a switch, the acoustic feedback of controls. Instead of just instruments, Takumi craftsmen rely on human perception and intuition to create what sounds and feels right. Out of all of the tools that Lexus uses, the most powerful one is understanding
0:33what will make us feel something. Because a car that doesn't make you feel something is a car that stops short of amazing. Experience amazing at your Lexus dealer. Your team just added its 67th AI tool and also your 67th security blind spot. The good news? The Vanta agent works like a GRC engineer in the background, finding every app your team uses, scoring the risk, and drafting fixes for you. Vanta is the platform used by over 16,000 fast-moving companies like Ramp, Cursor, and Harvey, who are shaping the future with AI and staying ahead of AI risk. Get started at
1:08Vanta.com.
Amazon Hidden Structures
1:09Welcome back to The Nature Podcast. This week, the structures hidden beneath the Amazon's trees. And the earliest fossil squid ancestor.
1:46I'm Nick Pertridge-Hell. And I'm Benjamin Thompson.
1:57For our first story this week, we're heading over to the southwest corner of the Amazon to hear about the discovery of a lot of ancient human activity that's long been hidden from view. Specifically, we're heading to an area in what is now the Brazilian states of Acre and Amazonas, close to where the borders of Brazil, Peru, and Bolivia meet. Between around 700 BC to 900 AD, this area was home to people who researchers are now calling the Acre. We gave the name Acre for this civilization because
2:34at first, we don't know what they call themselves. But this name comes from the Acre River, which passed Rio Branko, the capital of Acre state.
Acre Civilization
2:45This is Marti Parsinen from the University of Helsinki in Finland, who's been studying this region and the Acre civilization for many years. The Acre were prolific builders, and previous work has uncovered over a thousand earthworks, large structures comprising of mounds and troughs of dirt that can be several metres tall or deep. These often form roads and geoglyphs, giant geometric shapes, often many hectares in size. Some of these ancient earthworks are estimated to
3:19date back perhaps 2,000 years before the European conquest of the 1500s. And they're not just next to rivers and waterways. They're spread out. Now, exactly what these structures were used for is unknown, but evidence points to them being important administrative and socio-cultural centres. This week, Marti and his colleagues have uncovered many more previously hidden structures, and they've used this information to estimate how many there might be in the area. And it's a big number. We were very surprised ourselves. When we made different kind of calculation,
3:56we always conclude that we should have in total more or less from 24,000 to 30,000, so that it is a huge amount of earthworks. Many of the previously identified earthworks were found using aerial photography or satellite imagery, mostly in deforested areas. But that could only take the search so far. Because still more than half of the Agri and most of the Amazonas is under the forest. And that's why
4:28we couldn't continue the work by this way. And then we started to negotiate the possibility to get airplane and lidar system. Lidar systems fire rapid pulses of laser light at a target, and measure how long they take to bounce back, enabling the system to build up a 3D map of the object being looked at. In the forest, some of the lasers find gaps in the canopy and reach the ground before bouncing back, allowing a topographic picture beneath the forest to be built up.
5:01In fact, plane-based lidar systems have been used in the Amazon before, to detect structures hidden beneath the trees. This is what Marti and his colleagues did, conducting surveys in Agri and Amazonas states, totaling about four and a half thousand square kilometers. They found a bunch of previously unseen earthworks. We found in total about 430 earthworks. And 400 of these were new ones. Most of them were these
5:32geocleaves with geometric shapes and with litsies. And we also found many roads. And while the team found a lot of earthworks covered by trees, they also found a lot in clearings that had been missed in satellite imagery, perhaps because they were too covered up with grass. And the team put a range on when these newly identified structures might have been made. We have collected more than 160 radiocarbon samples. And it seems that the first geocleaves
6:04were built about 600 BC. And they stopped it to construct them about 850 AD. Not all of the structures the team found could be attributed to the Agri, and were likely built later. But the team combined the data they'd gained with previously collected information to make some inferences about the Agri civilization. By extrapolating out from what had been found, the team estimate the total size of the Agri civilization to be over 180,000 square kilometers,
6:37over three times the size of Marti's previous estimates. And by looking at areas where earthworks were present in high or low density, they put a number on how many earthworks were potentially present in this expanded area. We estimated between 24,000 and 30,000 earthworks in total. And we made a different kind of calculation by using different evidences, but we conclude the same results. And this changed also our own
7:09idea. Because I estimated maybe 2,000, 3,000 in total, but it's 10 times more than I expected before the LiDAR campaign. To put this into context, these sorts of numbers have been put forward as potentially the total amount of earthworks seen in the whole of the Amazon basin. The area that Marti and his colleagues have been looking at is only about 3% of that. This means that potentially the whole Amazonia may have tens of millions. But of course, we don't know.
7:42But at least this obligated us to study it more. The team estimate that at the Agri civilization's peak, which they put at around 100 to 300 AD, the population in the area could have been between 1.25 and 3 million people, based on their calculations of how many folk would have been needed to build and maintain the earthworks. But of course, many of these results are, in part, extrapolations. And there will be questions about whether the small area the team surveyed using LiDAR is representative of the larger region.
8:18Marti acknowledges this, but is confident in the team's calculations. However, he concedes there is one way to get an accurate picture of what's going on. Of course, in future, hopefully, we have more possibilities to make new LiDAR campaigns to have more actual information. But the thing is that it is very expensive. The area is big, huge. And even now I think that our flights in archaeological research, it was about 10 times larger than
8:54earlier ones. What the team discover, and whether it confirms or alters their estimates, will have to wait for a future podcast. But this work, and other studies looking at other cultures in and around the Amazon, shows that the idea that this region was a sparsely populated wilderness in pre-colonial times is well out of date. Evidence points instead to the Amazon having areas of urbanisation and large populations, populated by communities and cultures who shape the land. Echoes of which
9:25can be found today in things like the location of Brazil nut trees, which evidence suggests were domesticated and cultivated for food. Our understanding of the pristine tropical forests, it is no more valid, because so much has happened there and the humans have affected the biodiversity and also the soil composition and so on. We have started, I think now, a new era to understand more about the reality of Amazonia. And we need a lot of
10:02new study to understand much better what was the impact of these past societies and civilisations there. That was Marti Parsinen from the University of Helsinki. For more on that story, check out the show notes for some links.
Fossil Squid Ancestor
10:19Coming up, a fossil that may reveal how the ancestor of squids and octopuses evolved. Right now, though, it's time for the research highlights with Xiaomi Bundel.
10:33How would you fancy a funky yet environmentally friendly frock? This new fungal fabric might be just what you need. Scientists have turned fungal filaments into a self-cleaning, living textile that can be incorporated into packaging and sustainable fashion. Researchers in China grew the fungus cordyceps militaris into dense networks of filaments, then used a chemical treatment to make the material flexible. They can even add natural colour by incorporating pigment-producing yeast
11:06in hues including pale blue, red, orange and purple. And if you tear a hole in your trendy new togs, the researchers say it's possible to do repairs by adding nutrients and fresh fungal material that grows over the damage. A small sample was found to break down in soil in 41 days. But the same properties that make it biodegradable also make it susceptible to stretching, especially at high temperatures and humidity levels. Struck down the catwalk to science advances for more on that.
11:40Let's take a moment to listen to the relaxing sound of bubbles.
11:53Relaxing unless you're an acoustic physicist with a special interest in bubbles, that is. Researchers in France were disturbed from their relaxation by a question. What determines the volume of the sound each bubble makes as it forms underwater? Science could already explain the production of specific pitches, but the loudness was a mystery. So the researchers started blowing bubbles. They either used an underwater nozzle or released droplets onto a pool of water, creating a dimple that closed to then encase a bubble. Using a high-speed camera and an underwater microphone,
12:28they found that the smaller bubbles created by the dropping technique tended to produce a louder sound as they formed, compared to those produced by the nozzle. The sound was also louder when a bubble was actively shrinking rather than growing. The findings, the team says, could help researchers deduce information about bubbles from their sound alone, perhaps helpful for things like gas leaks. Float along to that research in physical review fluids.
13:03Paleontologists have discovered the oldest example of a cephalopod, or cephalopod. This is the group of soft-bodied marine animals that include squids, octopuses, and nautiluses. They're thought to have evolved during the Cambrian Explosion, a vast diversification of life that happened around 560 to 520 million years ago. But fossil evidence from that long ago has been hard to come by. There's been a few possibilities that paleontologists have presented, but nothing unequivocal.
13:36This new find may change that. In Nature this week, the authors describe a group of tiny fossils which have evidence of a structure known as a cyfuncal. This is a strand of tissue that passes through gas or fluid-filled chambers in cephalopods and helps them regulate their buoyancy, something that modern cephalopods have taken great advantage of being hypermobile predators under the sea and is therefore a key sign of these fossils being very early cephalopods. I spoke with Jakob Winter, one of
14:09the researchers behind the new work, who told me a bit more about cephalopod evolution. So cephalopods is something that we actually have a pretty good understanding of in terms of their evolutionary history because they produce a lot of beautiful fossils. Now most living cephalopods are things like octopus and squid. The thing is that octopus and squid is actually a relatively recent invention. They evolved in a way where the shell that used to be on the outside moved inside the body.
14:41We have one living group of cephalopods called nautilus that still have this external shell. And when we look inside the shell, we can see that there are these chambers that the animal can fill in with gas and that sort of allows them to regulate the buoyancy in the water column. And that's actually how the ancestors of squid and octopus also look like. So we can trace living octopus and squid back to a common ancestor with nautilus that had an external shell with these chambers. And then a very important feature is that inside that chambered shell there is a soft tissue
15:14structure that extends all the way from the last sort of chamber that is open at the end of this shell where the animal sits and then all the way in through to all the other chambers, which is the way in which the animal can sort of empty these chambers of water and fill them with gas. But if we go further back in time, we can trace back cephalopod ancestors to things that had sort of straight conical shells that still have these chambers and has got this sort of soft tissue tube called the scifungal, all the way back to the latest Cambrian around 490 to 495 million years ago.
15:50But before that 495 million years, there's been a bit of a gap, right? That's the thing. We have this gap where we know that cephalopods must have existed going back to about 525, 535 million years ago. We know that that's when cephalopods must have branched off from other mollusks. But we had no fossils that we convincingly could say was related to cephalopods in this sort of 20, 30 million year interval. And now we have a fossil that helped us plug that gap.
16:20And so our audience won't be able to see the picture of your fossil. So could you maybe paint me a word picture of what it looks like? So the way the fossils look like is that you have these little conical shells. They're about four and a half millimeters long, and they're preserved in different ways where we can see either the sort of external shell morphology. Some of them have been slightly abraded, so we can see inside. And then we can see that there are little layers that are sort of regularly deposited inside the shell that give it sort of a chambered appearance. Then we have some other
16:53fossils where the shell is not preserved, but instead we have preservation of the chamber that the animal lived inside, and then a soft tissue structure that extended down through the chambers, which is what we call the cyfungal. So by having these different modes of preservation that is overlapping between the fossils, we can sort of piece it all together to understand how this animal looked like. And so you mentioned that the earliest known before this cephalopod fossils were about 490 million years old. How old is this one?
17:24So it's a little bit poorly constrained, but they are from a time period that is constrained to be about 515 to 521 million years old. So it's sort of somewhere in that ballpark that these fossils are. So that means that they are about sort of 20 to 25 million years older than the oldest known cephalopods that we had before that. How certain are you that this is in fact a cephalopod? Because I know there's been some other candidates that people weren't so sure about. So how sure are you that this one is truly a cephalopod?
17:58Well, I think the best way of putting it is that it's the best answer. It has got a surprising number of features that enable us to argue that it's not something else. There are other things, other groups of organisms that have sort of shells and that have potentially sort of deposits or layers inside their shell, but they look very different. So the combination of features that we see make it very compellingly a cephalopod other than other things. But of course, with evolution, there are
18:30obviously the chance that some things they just end up evolving to look quite similar to each other. But the sort of burden of proof at the moment would definitely argue that these things are cephalopods rather than something else. What do you think this fossil tells us about cephalopod evolution? Now, one of the things is that the way that things look like when they first branch off isn't necessarily going to look perfectly like what they look like today. So one of the things that I probably envisioned was that the earliest cephalopods may have looked not much like a cephalopod. They may
19:05have looked something like a limpid, which is sort of what all these different mollusks they'd looked like early on. They were just sort of little slug-like things with a little sort of shell on their back. And then later in time, they evolved this shell with chambers inside so they could start floating in the water column. But so what we have now discovered is that they actually evolved that shell that they could use for floating almost as soon as they branched off from the other mollusks, which is quite exciting. And do you think that gave them any sort of advantage?
19:35Well, the thing is that other mollusks, they are sort of tied to be living on the seafloor, either sort of moving around with their foot, sort of like a slug or a snail they do. And then we have other groups like bivalves, which have evolved to sort of being closed within the shell and either they sort of borrow around in the mud or they sort of recline on the seabed. But cephalopods, by evolving a shell with chambers inside that they could fill with gas, that allowed them to lift themselves off the seafloor and float around in the water column.
20:07And that allowed them to explore other food sources. And at least later on, that meant that they became carnivorous predators. Indeed, they're very successful at that. And do you think there are any sort of broader implications from what you've found beyond the sort of cephalopod evolution? Well, I think it might be a little bit premature to appreciate what the broader implications are of this in terms of what it means for the sort of ecosystem and evolution, because we can't really say much about what these cephalopods they were capable of doing, other than floating around in the water column. Had they already become carnivorous predators,
20:42which would be really, really important for how they affected the whole ecosystem? Or had they just evolved to float around in the water column to feed on small plankton or whatever? These shells are obviously really, really small. That could be a bias, given how these things have been preserved. So they could potentially have been bigger. Or maybe they genuinely were that small. And that meant that they wouldn't have been that important in terms of the role that they played in the ecosystem. I think what is most important is that it helped us to understand and fill this gap that there were in terms of when cephalopods evolved and how they evolved.
21:16That was Jakob Winter from the University of Bristol here in the UK.
Conclusion and Recommendations
21:19For more on early cephalopods, check out the show notes for some links. And that's all for this time. If you'd like to stay in touch with us, you can. We're on email, podcast at nature.com, or you can find us on social media, at naturepodcast. I'm Benjamin Thompson. And I'm Nick Petrich Howe. Thanks for listening. We'll be right back. We'll be right back. We'll be right back. Your team just added its 67th AI tool and also your 67th security blind spot.
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