Paul Stamets demonstrates how to create "mycelial rafts"—inoculated logs colonized by mycelium—that serve as mother patches for expanding mushroom cultures in backyard settings. By using a 5% inoculation rate (mycelium-colonized grain mixed with wood chips) and layering logs, cultivators establish resilient fungal networks that naturalize to local microbiomes, build immune function, and can be propagated to friends and family as living gifts.
What Is a Mycelial Raft?
A mycelial raft is a strategically arranged set of logs that have been colonized by mycelium to serve as an expandable growing platform. Stamets describes the concept as an interpolation from his decades of field observation—a method that bridges laboratory technique with outdoor naturalization. The "raft" is a physical structure: logs are laid down after mycelium has been transferred to the surrounding substrate, creating a nexus of dense fungal growth that can then be leveraged to colonize additional wood and expand satellite colonies.
The term "raft" captures the idea of buoyancy and mobility. Just as a raft floats and can carry cargo across water, a mycelial raft sits embedded in a "sea of mycelium," ready to be moved, expanded, or gifted. This is not a static growing bed but a launching point for further colonization.
Why Use Different Wood Sizes?
Stamets employs a deliberate strategy of mixing wood chips and logs based on their decomposition rates. Wood chips are "fast fuel"—they break down quickly, much like kindling in a wood stove. Logs, by contrast, decompose slowly, akin to larger logs in a fireplace. This difference in burn rate (or in mycological terms, decomposition rate) is fundamental to the method.
Mycelium grows through wood chips very rapidly because the substrate is fragmented and offers high surface area. However, since wood chips decompose quickly, they are consumed. Logs, being denser and larger, break down much more slowly, providing a stable, long-term anchor for mycelial expansion. By layering logs within a bed of mycelium-colonized wood chips, Stamets creates a two-tier system: the fast fuel of wood chips feeds the mycelium quickly, while the logs provide structural stability and a "leaping off point" for further growth.
How Do You Inoculate a Mycelial Raft?
The inoculation method Stamets describes follows a specific progression: mycelium is first grown on grain in a laboratory or indoor setting, then mixed into wood chips at a 5% rate (roughly one bucket of inoculated grain to twenty buckets of wood chips). This diluted mycelium-grain mixture is then spread around and under the logs, colonizing the bed from all sides.
The 5% rate is intentional. It is not a minimum threshold but an optimized ratio that allows the mycelium to expand methodically through the wood chips without overwhelming the substrate. The mycelium then grows into the logs themselves, attaching firmly and establishing itself throughout the entire structure. When you pull back layers of the colonized bed, you see thick, white mycelial networks running through and binding the wood.
This staged approach—grain inoculation → wood chip colonization → log attachment—mirrors how mycelium operates in nature: it first establishes on smaller, nutrient-rich materials, then extends into larger woody substrates.
What Does a Mature Mycelial Raft Look Like?
In Stamets's demonstration, a mature mycelial raft is visibly impressive. The mycelium forms thick, dense mats—"gorgeous" in his estimation—that are white and clearly vigorous. The fungal network is not merely surface-level but penetrates the logs, binding them together. When fully colonized, the raft has a cohesive, almost leather-like appearance, with the mycelium creating a physical structure that can be handled and moved without disintegration.
This visible density is crucial. It indicates that the mycelium has built sufficient biomass and established a stable relationship with the wood substrate. A raft that has achieved this level of colonization is ready to be expanded further or transferred.
How Does a Mycelial Raft Expand?
Once a raft is established, it becomes a "mother patch"—a source colony that can launch satellite colonies. Expansion occurs by transferring the colonized logs into fresh beds of wood chips. The logs, now densely colonized, serve as inoculation points. The mycelium radiates outward from the logs into the new substrate, repeating the colonization process but now starting from a much stronger inoculum source than the original 5% grain-based inoculation.
Because logs decompose slowly, they remain viable as inoculation sources for months or even years. This longevity makes the raft an efficient propagation tool. Instead of restarting from laboratory-grown grain each cycle, the cultivator uses the previous generation's fully colonized logs to drive the next.
Why Is Outdoor Acclimatization Important?
Stamets emphasizes that mycelium grown outdoors in this manner does something laboratory cultures cannot do as readily: it "acclimates and builds up its own immune system." When mycelium colonizes wood and soil outdoors, it encounters diverse microbial communities—bacteria, other fungi, protozoa, and microarthropods. Rather than being killed off, the mycelium establishes relationships with these microorganisms.
The mycelium generates "immunized" colonies—networks that have naturalized to the local microbiome. This means the fungal network is not sterile or isolated but integrated into the ecological web. It is more resilient to local conditions, pests, and disease because it has already evolved defenses through real-world exposure. Stamets refers to this as the mycelium setting off "resonant microflora to be helpful" and fulfilling "its life cycle."
This outdoor acclimatization is a form of evolutionary adaptation in real time. The mycelium does not just survive outdoors; it becomes native to that specific place.
What Role Does the Microbiome Play?
Stamets notes that the "great partnerships" between mycelium and the surrounding microbiome are "very elaborate, very complex, and we barely know anything about them." Yet he presents this not as a limitation but as an endorsement. The complexity itself is the point. When mycelium grows in actual soil and wood, it engages with countless microbial partners whose roles are still largely unknown.
These partnerships likely include nutrient exchange, protection from pathogens, communication through chemical signaling, and possibly metabolic cooperation. The mycelium does not function as a solitary organism but as a network embedded in a larger community. By allowing outdoor acclimatization, the cultivator is not fighting against the microbiome but leveraging it as part of the mushroom's natural developmental process.
How Do You Use a Mycelial Raft as a Gift?
Stamets frames the mycelial raft explicitly as a gift—"whatever greater gift than the gift of mycelium." A fully colonized log or raft can be transferred to a friend or family member, who can then plant it in their own yard and expand it further. This is not a one-time gift but a living inheritance.
Because the mycelium is already acclimatized and established, the recipient does not need laboratory equipment, grain spawn, or advanced mycological knowledge. They simply place the logs in a suitable location, add wood chips if desired, maintain moisture, and wait. The mycelium will fruit, produce mushrooms, and potentially establish itself as a resident colony in their yard for years to come.
This model of propagation is both practical and philosophical. It democratizes mushroom cultivation, moving it out of the laboratory and into the hands of ordinary people. It also embodies a gift economy—the original cultivator gives living mycelium that continues to produce value indefinitely for the recipient.
Where to Go From Here
If you are interested in implementing this method, Stamets recommends two books: Mycelium Running: How Mushrooms Can Help Save the World and Growing Gourmet & Medicinal Mushrooms, both by Stamets. These texts provide detailed protocols, species recommendations, and ecological context for backyard mycology.
The basic steps are: obtain mycelium-colonized grain from a reputable supplier, inoculate wood chips at approximately 5% by weight, layer logs within the colonized chips, monitor for full colonization, then transfer raft pieces to new substrate to expand. Choose species suited to your climate and goals—Stamets emphasizes saprophytic (decomposer) species that are less likely to cause harm and more likely to become established fixtures in your yard.
Most importantly, observe. Stamets opens his talk by noting that "nature has been a great teacher." Watching mycelium colonize wood, noting which areas colonize fastest, adjusting moisture and shade, and monitoring fruiting patterns are all forms of direct learning. The mycelial raft method is not a rigid protocol but a framework for developing an intimate, ongoing relationship with fungi in your own space.




