The forest canopy, long dismissed as a lifeless realm above the trees, is now understood to be a vibrant, complex ecosystem housing half of Earth’s terrestrial life. Ecologist Nalini Nadkarny, inspired by her childhood in trees, pioneered canopy research in the Olympic rainforests, uncovering rich layers of moss, lichens, soil, and even invertebrates like earthworms and aquatic copapods living hundreds of feet above ground. Her work, along with that of Karina Mapune, revealed that canopy soils are nutrient-rich, especially during spring when forest floor resources are scarce. This led to a groundbreaking discovery: massive trees grow roots upward from their branches into these canopy soils, accessing vital nutrients like nitrogen and phosphorus. This vertical network of roots acts like a hidden lifeline, allowing trees to survive droughts and competition below. The canopy is not just a passive space—it functions as a living, self-sustaining system with its own miniature forests, where new trees sprout from soil pockets and life forms cascade in layers. This revelation transforms our understanding of forests from a simple vertical structure into a dynamic, interconnected web of life, where every tree is part of a network that stretches from roots to canopy. The episode, rooted in both personal experience and scientific discovery, celebrates the hidden complexity of nature and challenges long-held assumptions about what life can exist in the sky.
Hey, I'm Lathif Nasser, this is Radio Lab. One of our all time most popular episodes was from Tree to Shining Tree, which was about these vast networks hidden in the forest floor. She began thinking about the forest that exists underneath the floor. That's Robert Crawlwich. She was one of our hosts at the time. If you haven't heard the episode, you really should. We profiled this scientist, Suzanne Semard, who discovered, to even her own great surprise, this deeply complex interwoven mass of tree roots and mushroom threads, connecting trees together, helping them communicate, even share resources. There's a literal underground economy in every forest you've ever been to. Turns out one tree was connected to 47 other trees all around it. It was like a huge network. The trees that were the biggest and the oldest were the most highly connected. It's just this incredible communications network that, you know, people had no idea about in the past because we didn't know how to look. So that was back in 2016. Couple years after that, the producer of that episode, Annie McEwen, brought to us another story that shocked us all over again because we realized that whole forest floor thing, that was just half of this story. So in celebration of spring and all the things growing around us right now, we wanted to replay that episode about the other half of the story of what's going on in forests. And to do so, of course, that perfect pairing of producer Annie McEwen and Emeritus Radio Lab host Robert Crawlwich. Okay. We're ready. We're ready. We're ready. We're ready to long last ready to begin. Okay. Okay. I wanted to call you because I recently learned about this new layer to the story. Okay. So in tree to shining tree, we looked down under the ground. Right. Where do you think we should look now? Well, I guess I'd be inclined. If there was more news, I'd do more down. I think. Well, how about, okay, however, instead of looking down, we peer into a type of down that is in the up. Oh, okay. And to take us there, all right, forest royalty, I've read that you are known as the queen of the canopy. Is that true? Is that correct? Where did that come from? I have no idea where that came from. I've also been called the mother of the forest canopy. Oh, my goodness. And now that I'm 67 years old, I think it's going to be sort of the dowager queen or the grant mother of the forest canopy. What about the end? This is ecologist Nalini Nadkerny, who like a lot of kids spent a large part of her childhood up in trees. You know, you grab a branch, you put your leg over it, and suddenly you're up in the tree tops. And for me, it was like kind of my place. I had this sort of chaotic, large family. You know, I'd come home from school with chores and homework, but the tree tops of these eight maple trees that lined my parents' driveway were kind of my refuge. She'd spend whole afternoons up there just sitting and wondering and look at the leaves and I go like, why is this branch have much yellow or leaves? And that branch, which has, that's a good question. And it's like, well, what is going on? What is this branch? Independence? Or, you know, I'd watch squirrels jumping from one tree to another and just think, God, you know, where do they go? And what if I attached a spool of thread to the back of one of them and I could trace where they go? So, but it was a place for my imagination to sort of run wild. Nalini grew up and followed that imagination to study ecology in grad school. This was back in like the early 1980s and I was just starting out and I came to my graduate committee and I said, I know what I want to do with the rest of my career. I want to study the forest canopy and they said, well, that's kind of like Tarzan and Jane's stuff, you know, with so many questions to ask and answer on the forest floor. Why do you have to go into the canopy? At the time, canapies were just basically not studied. They were hard to get up into and there didn't seem to be a lot of point. The scientific thinking was there's just not a lot going on up there. But there was something about the canopy that I kind of just had this intuition that it's not enough to just stand on the ground and look up. And so with some modified mountain climbing equipment, she began to climb these giant old-growth trees in the Olympic rainforest of Western Washington, which is what's called a temperate rainforest. These are the places where in the morning the fog from the Pacific Ocean comes rolling in and the tree just gets in every morning back of just two months. So, Nellini climbs up into the canopy of this giant big leaf maple tree and I throw my leg over a branch and I'm sitting up there and I'm anchored with my rope and I'm looking around. I just see this enormous three-dimensional panoply of moving leaves and moving twigs. The branch she's sitting on as well as all the branches surrounding her are covered in the super thick layer of this amazing growth of mosses and lichens and ferns. I feel like the tree is wearing this very unruly green shade carpet. You get the sense of being in a place that looks very simple from the forest floor but is actually this kaleidoscope of life. Her job up there was to take samples of the moss that was growing on these branches. I had to cut off chunks of it. So using some clippers she'd be able to cut down into that moss on the branch she's sitting on. Just I peeled back those mats of mosses beneath instead of just bare branch. I saw that there was all this soil up there. This branch has a foot of soil piled up on it. A soil that formed over many many years of mosses and leaves dying and decomposing right there on the branch. It's so weird because you're sitting up there in the canopy like a hundred feet above the ground and then you're digging your fingers into the soil that could be the soil that's you know, in your backyard garden for the forgiveness sake. You can imagine getting your gardening gloves out and planting rows of tulips a hundred feet in the air. They're like invertebrates in it. There were earthworms in it. Treeworms? Yes. That is so weird. I know, I know. Even the stars of the old episode, the fun guy, were there. Really? So the mushrooms have climbed up the tree as well? Yes. They're sharing resources. They're helping the tiny plants up there communicate with one another. The same as on the forest floor. It's almost like she stumbled into a perfect miniature of the forest floor she had just climbed up away from. And straddling a branch way up high in the air, she's like, "Huh, well that's cool." This was in the 80s and since then there have been so many more, well that's cool because more and more scientists have been accessing this new world using cranes and ropes or building platforms. Or my favorite way up into a tree is this French guy, Francesellet, who pioneered the use of the dirgeable to access the canopy. There's incredible pictures of these. So it's a balloon trip? It's a balloon that floats over the tops of this green ocean, just kissing the tops of the trees and the scientists can just gently lean and trim this and that. Anyway, so one way or another, all of the world scientists began getting themselves up into trees and documenting what they saw there. And some of the coolest discoveries were found on the west coast in the old growth redwood forests. And oh my gosh, these giants were found to be holding these pockets of soil up to three feet deep. And growing in this soil were flowers, berry bushes, mosses, lichens, they found salamanders living hundreds of feet in the air who spend their entire lives never touching the ground. And when if you say a small deer or something like that, I mean, I mean, I don't have a small deer for you, but I do have something that I find totally bizarre, which is that up in redwoods, scientists have found these tiny aquatic creatures. An aquatic creature? It's aquatic. Yeah, it's like the shrimp leg. They found a fish. Pretty much. It's like the shrimp leg thing, a species of something called a copapod, copapods, which is actually this whole subclass of creatures. They're the most abundant animal in the ocean and a huge part of the diet of baline whales. This thing is like swimming around in these mossy mats and no one knows how it got there. Anyway, these tree canopies that up into the mid 80s, everyone thought were just pretty much empty. Not only are they not empty, they actually hold about 50% of all terrestrial life on the planet. Do you see 50% 50? 50, 50, 50. 50, 50. Yeah. Wow. That's a weird note. You're saying 50% of it is up in the air or somewhere? Yeah. Up in the air, up in trees. Whoa. Which, you know, sounds kind of unbelievable. But when you think of places like the Amazon, all those bugs, birds, plants, animals, it adds up. And most of this life has made a home in these canopy soils. What soil on the tree branches? And when a collegeist, Karina Mapune learned about these canopy soils, I fell in love. I was like, okay, there's like a forest, in a forest, on a forest. I need to research this. And she told me that thinking about these cannabis oils like these tiny. perfect replicas of the forest floor below wasn't quite right, because these canopy soils, they have something that the forest wants. "Huh, well what would that be?" Well, back when she was a grad student in the Washington Olympic Peninsula, Karina collected soil samples from the forest floor throughout the year, and she noticed that in the spring-growing season, there are as many nutrients available, specifically, there was a lack of phosphorus and nitrogen, two important things that every plant in the springtime wants to help them, you know, put forth new leaves, help them grow, and those are rare. Plants love that, yeah. And in contrast to the last episode, where we talked about trees cooperating with each other, all these trees, all these trees that were of totally different species were sharing their food underground. Like, if you put-- Karina told me that in that same sharing forest, when resources are scarce, there's a ton of competition on the forest floor. Trees have root-scraped it together, there's micro-risal networks, you know, that are spanning across, there's this big battle to, you know, uptake nutrients. But Karina had also taken samples of the canopy soils, and she saw that during these times of scarcity below, these canopy soils had so much more nitrogen and phosphorus available for plant uptake compared to their forest floor counterparts. Meaning that this soil for a plant was crem de la crem. It's just amazing. Downstairs, they're shortage. Upstairs, there's abundance. When it's crumbs down below, up in the sky held aloft above the plebeian masses, is like a Thanksgiving dinner. And when Karina learned this, she thought, I don't know, what do these canopy soils mean? Because they're not just hanging out there. They're not just there for it a reason, right? She's right, they're not. These sky gardens, they get even better. Better at what? Hmm? Better at what? Well, let's just say they're not alone up there. What's-- what's-- what's about to happen? Well, I'm going to tell you. All righty. Right after this short break. [MUSIC] Lulu, what the-- Radio lab back to Annie and Robert, where we were just about to learn the true superpower of those gardens in the sky. Right. So, to understand this wizardry, we need to go back to Nellini, find with me, and this amazing discovery that she made. Okay. So I remember sitting on this tree. She's back up in a tree in the Washington Rainforest, digging around in this canopy soil, and I began seeing these root systems that were running up and down the branches of these trees. They didn't look like they belonged to moss or ferns or any other plant you could see up there. And there were fine roots all the way up to some of them were the diameter of my wrist. I mean, these were gigantic roots. I thought, well, that's weird. What are these roots doing here? So I began just tracing the roots that I was finding. Like, you took hold of one root in your hand instead of, like, wet backwards, like a string. Exactly. Like, it's like following a string. Exactly. She gently excavates this root, scooting along the branch as she uncovers it. I was tied in so I could sort of swing around and move from one branch to another. I had my water bottle with me, so then whenever it was began difficult to sort of unstick the root, like, I could just throw a little water on it. Keep going, keep following it. It was like, I don't know, it was like being a detective. Well, what did you think it was going to leap to? I had no idea. I thought, well, maybe there's some sort of vascular plant that I'm not aware of that's here, but I don't think so. So then she follows the root all the way back to its beginning. And oh my gosh! Its origin was a dead end in the tree itself. What? The big tree, the one millennia sitting in, is growing roots from its branch and snaking underneath these mats of soil, of canopy soil. Let me think about this somehow. It realizes that it could find soil high up somewhere like me. And so it just takes its roots and its roots travel up and go, whoop to the left. They say, let's root not only where we normally root down there, but let's root up here. Yes. Whoa. So things that you thought were below can move above, way above, high above you. Yes. It was a real revelation. And Karina thinks that it's during a drought or during spring growing season, when resources in the first floor are scarce, that these big trees. That's why they can top into their canopy soils. It's like they're like, hey, there's a bunch of really great stuff here to suck on. So why don't you put out a root out here? And that's exactly what these trees do. I kind of always compare it to like a secret cabinet that has all the good snacks in it. It's like if you were teaching a preschool, it's like, well, all of the school children are fighting over the snacks and fighting over these resources. You just go into your, you know, canopy soil closet and you got your good snacks up there. Because we're looking for those special minerals like the phosphorus and stuff. And that's where we can find it. Right. And it's finding it in its hat. And you're finding it in its hat. That's a nice Louis way of putting it. Yeah. Yeah. That's a lovely way of putting it. The expression I'm going to eat my hat has now got a whole new meaning. Oh, yes, Robert. I love that. One thing that both Karina and Millini told me is that this is a new field. There is just so many things to be found high above the forest for. Like, for instance, Karina told me sometimes there are actual trees growing up there. And I've seen like a five-foot spruce growing out of a nook of canopy soil. Wow. And you'll see a lot of like baby maples growing up in the old maples. So it's like, you know, like a little nursery. Please, I mean, there's a tree growing on the tree. That's right. On the branch. In the soil on the branch. And who knows? Maybe as more people study the canopy, we'll find little trees on those trees. And maybe there will be little trees on those trees on those trees. Yeah, it's fractal. Like little are plants off together. And then the damage, the moss, which is little plants on top of little plants. So there's like, there's little layers and layers and layers of life. And the more you go up, the more the layers you will find. That's very cool. [birds chirping] Thank you, Annie McEwen, for reporting and producing that gorgeous episode. And leaving us with that image of not turtles all the way down, but trees all the way up. This episode was reported and produced by Annie McEwen. Special thanks to Kiyomi Taguchi, Michelle Ma and Nina Ernest. A huge thank you to Michael Werner and Joe Hanson and the team at KBS Overview. They tipped us off about Kareena's research. They were the ones who got us excited about Canterbury's soil in the first place. You can actually see all that gorgeous shag carpeting in the forest. In their beautiful video, vivid color. The video features Kareena and other people who have dedicated their lives to saving what's left of the old growth forests. You can check that out on our website or on the airs. So thank you to them. And special thanks, of course, to the many ringed tree trunk that is Robert Crowich, coming back on the show to talk trees with us. Thank you for doing that, Robert. We love you. That guy's all bark. No bite. You know what I mean? That's why I like him. That's all for us. Catch you next week. Hi, I'm Gabby. I'm from the Bay Area, California, and here are the staff credits. Radio Lab is hosted by Lulu Miller and Lentif Nasser. Soaron Wheeler is our executive editor. Sarah Sandback is our executive director. Our managing editor is Pat Walters. Dylan Keif is our director of sound design. Our staff includes Jeremy Bloom, W. Harry Fortuna, David Gabel, Maria Paz Gutierrez, Sindu Naina Sambandan, Matt Kielte, Mona Margauker, Annie McEwan, Alex Niesen, Sarah Kari, Natalia Ramirez, Rebecca Rand, Anissa Vica, Aryan Wack, Molly Webster, and Jessica Young, with help from Gabby Santas. Our fact checkers are Diane Kelly, Emily Krieger, Natalie Middleton, Angelie Mercado, and Sophie Semi. [Music] Hi, I'm Aubrey, calling from Salt Lake City, Utah. Leadership Support for Radio Lab Science Programming is provided by the Simon's Foundation and the John Templeton Foundation. Foundational Support for Radio Lab was provided by the Alfred P. Sloan Foundation.
Podcast Summary
Key Points:
The forest canopy, once thought to be barren, is home to a thriving ecosystem that hosts about 50% of all terrestrial life on Earth.
Scientists like Nalini Nadkarny and Karina Mapune discovered that canopy soils contain abundant nutrients like nitrogen and phosphorus, especially during spring growing seasons when forest floor resources are scarce.
Ancient trees in old-growth forests grow roots upward into canopy soils, creating a network that allows them to access vital nutrients, effectively turning the canopy into a "secret cabinet" of resources and enabling a vertical, interconnected forest ecosystem.
Summary:
The forest canopy, long dismissed as a lifeless realm above the trees, is now understood to be a vibrant, complex ecosystem housing half of Earth’s terrestrial life. Ecologist Nalini Nadkarny, inspired by her childhood in trees, pioneered canopy research in the Olympic rainforests, uncovering rich layers of moss, lichens, soil, and even invertebrates like earthworms and aquatic copapods living hundreds of feet above ground. Her work, along with that of Karina Mapune, revealed that canopy soils are nutrient-rich, especially during spring when forest floor resources are scarce.
This led to a groundbreaking discovery: massive trees grow roots upward from their branches into these canopy soils, accessing vital nutrients like nitrogen and phosphorus. This vertical network of roots acts like a hidden lifeline, allowing trees to survive droughts and competition below. The canopy is not just a passive space—it functions as a living, self-sustaining system with its own miniature forests, where new trees sprout from soil pockets and life forms cascade in layers.
This revelation transforms our understanding of forests from a simple vertical structure into a dynamic, interconnected web of life, where every tree is part of a network that stretches from roots to canopy. The episode, rooted in both personal experience and scientific discovery, celebrates the hidden complexity of nature and challenges long-held assumptions about what life can exist in the sky.
FAQs
The forest canopy is the upper layer of a forest, consisting of tree tops and branches. It's home to about 50% of all terrestrial life on Earth and hosts unique ecosystems including soil, mosses, lichens, and animals that live entirely in the trees.
Scientists use climbing equipment, cranes, ropes, or even hot air balloons to access the canopy. These tools allow researchers to collect soil samples, observe plant life, and study the complex ecosystems thriving in the tree tops.
Canopy soils are thick layers of decomposed leaves and moss, often containing up to three feet of soil. These soils are rich in nutrients like nitrogen and phosphorus, especially during spring growing seasons when ground-level resources are scarce.
Yes, some large trees grow roots from their branches into the canopy soil. These roots help the trees access nutrients and water, especially during droughts or when resources are limited on the forest floor.
Canopy soils have a higher concentration of nitrogen and phosphorus, especially during spring. This nutrient abundance allows plants to thrive when forest floor resources are scarce, making it a vital refuge for plant life.
Scientists have found salamanders, aquatic creatures like copepods, and even small trees growing in canopy soils. These discoveries show that the canopy is not just a passive layer but a vibrant, living ecosystem with its own complex food web.
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