Russula subnigricans (Blackening Russula)
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Russula subnigricans (Blackening Russula)






Table of Contents
- Introduction
- Identification Guide
- Taxonomy & Classification
- Edibility & Safety
- Look-Alikes & Confusions
- Habitat & Ecology
- Foraging Guide
- Cultivation
- Culinary Uses
- Preservation & Storage
- Medicinal Properties
- Seasonal Fruiting
- Spore Print & Microscopy
- Varieties & Forms
- History & Ethnomycology
- Beginner's Guide
- FAQ
🍄 Introduction
Russula subnigricans is a dark-capped Russula species found in East Asia that causes a unique and often fatal rhabdomyolysis syndrome through the action of cycloprop-2-ene carboxylic acid, a toxin that destroys skeletal and cardiac muscle tissue. Endemic to Japan, China, and Taiwan, the species has been responsible for multiple fatalities, particularly in Japan where the genus Russula is widely collected for food. The reddening then blackening flesh and the dark brown to blackish-brown cap superficially resemble several edible Russula species in the nigricans complex.
The cap is 5-12 cm in diameter, convex to broadly depressed with age, dark brown to blackish-brown, dry, smooth to finely tomentose. Gills are adnate to slightly decurrent, fairly distant, thick, cream to pale ochre, bruising reddish then slowly blackening. The stipe is 3-8 cm tall, 1.5-3 cm thick, solid, white to greyish, bruising reddish then darkening. The overall habitus is typical of the Russula nigricans group: dark-capped, sturdy, with distant thick gills that show sequential colour changes when damaged.
Quick Facts
| Common Names | Blackening Russula |
| Family | Russulaceae |
| Order | Russulales |
| Origin | East Asia |
| Edibility | Deadly Poisonous |
| Ecology | Mycorrhizal |
| Spore Print | White |
🔍 Identification Guide
Distinguishing R. subnigricans from edible or harmless members of the nigricans complex requires careful attention to the reddening reaction speed and microscopic characters. R. subnigricans shows a faster, more vivid initial reddening before blackening compared to R. nigricans, which reddens slowly and faintly. The gills of R. subnigricans are somewhat more crowded than those of R. nigricans. Definitive separation requires ITS sequencing in many cases, as the macroscopic differences are subtle and variable.
Morphological Features
| Feature | Description |
|---|---|
| Cap Shape | convex to flat, margin inrolled |
| Cap Diameter | 5-12 |
| Cap Color | dirty white to grayish-brown, blackening with age |
| Cap Surface | dry, dull |
| Gill/Pore Type | gills |
| Gill/Pore Color | white, widely spaced, reddening then blackening |
| Stipe Height | 3-8 |
| Stipe Diameter | 1-2.5 |
| Stipe Features | white to gray, firm, solid |
| Flesh Color | white, reddening slowly then blackening |
| Bruising | red then black when cut |
| Odor | mild |
| Taste | mild |
| Spore Print | white |
Field Identification Checklist
- Cap shape: convex to flat, margin inrolled
- Cap color: dirty white to grayish-brown, blackening with age
- Gill/pore type: gills
- Gill/pore color: white, widely spaced, reddening then blackening
- Spore print: white
- Odor: mild
- Bruising: red then black when cut
- Stipe: white to gray, firm, solid
Detailed Morphology
The flesh is thick, firm, white, turning red when cut, then slowly darkening to grey-black over 30-60 minutes. This reddening-then-blackening sequence resembles several other species in the nigricans complex but the speed and intensity of the initial reddening phase differs subtly. The spore print is white to pale cream. The taste is mild to slightly acrid, insufficient to deter consumption. Cycloprop-2-ene carboxylic acid concentration is highest in the gill tissue and cannot be detected by taste or smell.
🧬 Taxonomy & Classification
Described by Hongo in 1955 from Japanese collections, R. subnigricans belongs to Russula section Compactae (formerly Nigricantinae), characterised by dark caps, distant thick gills, and flesh that reddens and/or blackens. Molecular phylogenetics confirms its placement within section Compactae but clearly separates it from R. nigricans and other blackening species. The species appears to be restricted to East Asia, with no confirmed European or North American records despite the cosmopolitan distribution of the section.
⚕️ Edibility & Safety
Potentially lethal due to cycloprop-2-ene carboxylic acid, which causes severe rhabdomyolysis (skeletal muscle breakdown) beginning 12-24 hours after ingestion. Massive release of myoglobin from damaged muscle tissue leads to acute renal failure, hyperkalaemia, and cardiac arrhythmias. The creatine kinase levels can exceed 100,000 IU/L, indicating catastrophic muscle destruction. Mortality rate in reported Japanese cases is approximately 30%, with death typically resulting from cardiac arrest secondary to hyperkalaemia or multi-organ failure.
⚠️ Look-Alikes & Confusions
Russula nigricans is the primary confusion species: it has a similar dark cap, distant gills, and reddening-then-blackening flesh, but is considered edible (though poor quality) and is much more common. R. densifolia has more crowded gills and a faster blackening without the prolonged red phase. R. adusta turns grey then black without passing through a red phase. R. albonigra blackens directly without reddening. All species in the nigricans complex share the sturdy, dark-capped habitus but differ critically in toxicity.
Known Look-Alikes
| Species | Edibility | Key Difference |
|---|---|---|
| Russula densifolia | Unknown | Check all identifying features carefully |
| Russula nigricans | Edible Cooked | Cap: Dirty white to grey-brown, blackening with age; Spore print: White; Odor: Mild, fruity; Habitat: Deciduous and coniferous forests |
🌲 Habitat & Ecology
Ectomycorrhizal with broadleaf trees, particularly Fagus crenata (Japanese beech), Quercus acutissima, and Castanopsis species in warm-temperate to montane forests of Japan, eastern China, and Taiwan. Fruiting occurs from July through October, with peak fruiting in August and September during the humid late-summer season. The species is most frequently encountered in southern and central Honshu, Shikoku, and Kyushu. It favours well-drained forest soils with deep humus under closed canopy.
| Habitat | mixed broadleaf forest |
| Substrate | soil |
| Ecology | Mycorrhizal |
| Host Trees | Quercus spp., Castanopsis spp. |
| Altitude | 200-1500 m |
| Climate Zones | subtropical, temperate |
| Distribution | China, Japan, Korea, East Asia |
Ecological Role
Russula subnigricans forms ectomycorrhizal associations with East Asian broadleaf trees, contributing to forest nutrient dynamics in warm-temperate and montane ecosystems. The species occupies a similar ecological niche to R. nigricans in European forests. Fruiting bodies are consumed by invertebrates and possibly some vertebrates with apparent impunity. The dense, firm flesh decomposes slowly, providing prolonged nutrient release to the forest floor.
🗺 Distribution Map
Known distribution of Blackening Russula: China, Japan, Korea, East Asia. This species is mycorrhizal (mycorrhizal).
🧺 Foraging Guide
In Japan, Taiwan, and eastern China, the Russula nigricans complex should be avoided entirely by foragers who cannot distinguish R. subnigricans from edible nigricans-group species. The macroscopic differences are too subtle for reliable field separation by non-specialists. Japanese mycological societies have issued specific warnings about this species, recommending that dark-capped Russula species with reddening flesh not be consumed unless positively identified by an expert. The mild taste provides no warning of the lethal rhabdomyolysis potential.
🌱 Cultivation
As an obligate ectomycorrhizal species, R. subnigricans cannot produce fruiting bodies in axenic culture. Mycelium has been isolated onto modified Pachlewski agar for molecular taxonomy research. Mycorrhizal synthesis with Quercus seedlings has been demonstrated experimentally. The toxic cycloprop-2-ene carboxylic acid has been synthesised chemically for toxicological research, reducing the need for collection of wild specimens.
🍳 Culinary Uses
Absolutely not edible. The toxin is not destroyed by cooking, and the delayed onset of symptoms means that poisoning is not apparent until severe muscle damage has already occurred. Traditional Russula preparation methods (salting, pickling, frying) are ineffective against cycloprop-2-ene carboxylic acid. In Japan, edible Russula species are popular in soups and mixed mushroom dishes, creating ongoing confusion risk with R. subnigricans during the summer-autumn fruiting season.
📦 Preservation & Storage
Dried specimens retain diagnostic morphological characters and the dark cap pigmentation. The reddening-blackening reaction is not observable in dried material, so fresh colour change photographs must accompany voucher specimens. Dry at 50°C and store in sealed containers. For toxicological analysis, fresh specimens should be frozen immediately at minus 80°C. DNA extraction from dried material is straightforward for molecular identification.
🩹 Medicinal Properties
No medicinal applications exist. Cycloprop-2-ene carboxylic acid is a novel myotoxin with a unique mechanism of action involving disruption of mitochondrial function in skeletal and cardiac muscle cells. The compound has attracted research interest in muscle physiology and mitochondrial toxicology. Understanding its mechanism may contribute to broader knowledge of drug-induced rhabdomyolysis. No therapeutic derivatives have been developed from this or related cyclopropene compounds.
🍂 Seasonal Fruiting
Fruiting occurs from July through October in Japan, with peak abundance in August and September coinciding with the warm, humid conditions of late summer and early autumn. The species fruits slightly earlier than many other Russula species in the same habitats. Typhoon-associated rainfall can trigger prolific fruitings. Individual basidiomata persist for 1-2 weeks, with the cap darkening progressively throughout development.
🔬 Spore Print & Microscopy
Spores are broadly ellipsoid to subglobose, 7-9 x 6-7.5 um, ornamented with isolated warts and short ridges up to 1 um high that do not form a reticulum, amyloid. Basidia are clavate, four-spored, 35-50 x 10-14 um. Cystidia are scattered, fusiform, with granular contents, 50-80 x 8-14 um, reacting with sulfovanillin (SV+). The cap cuticle is a mixture of dermatocystidia, pileocystidia, and repent hyphae typical of Russula section Compactae.
🌀 Varieties & Forms
Morphological variation includes cap colour ranging from dark chocolate-brown to nearly black, and gill spacing from moderately distant to distant. Japanese and Chinese populations have not been formally separated despite minor morphological and molecular differences. Taiwanese collections tend to have slightly smaller basidiomata. No formal varieties or forms have been described, and the species concept remains relatively narrow based on combined molecular and morphological data.
📜 History & Ethnomycology
Hongo described the species in 1955, noting its similarity to R. nigricans and other blackening Russula species. The first recognised fatality from R. subnigricans was reported in Kyoto Prefecture in 1954, though retrospective analysis suggests earlier deaths may have been misattributed. The identification of cycloprop-2-ene carboxylic acid as the causative toxin was achieved by Matsuura and colleagues at Kyoto University in the late 2000s, solving a decades-long mystery. The species has since been recognised as one of the most dangerous Russula species worldwide.
🎓 Beginner's Guide
Do not attempt to eat any dark-capped Russula species with flesh that reddens when cut, particularly in Japan, China, or Taiwan. The nigricans group of Russula contains both edible and lethal species that are extremely difficult to distinguish without expert knowledge and microscopy. The lethal R. subnigricans cannot be reliably separated from the edible R. nigricans by field characters alone. Beginners should treat the entire blackening Russula group as off-limits for the table.
Photography Tips
Document the reddening-then-blackening flesh reaction sequence with time-stamped photographs at 5, 15, and 30 minutes after cutting. This colour change sequence is the primary macroscopic character for the nigricans complex and differs subtly between species. Photograph the gill spacing and gill thickness from below, as these are important comparative features. In situ shots under the beech or oak canopy convey the habitat context typical of collections.
Common Mistakes
No folk test (silver spoon, garlic, parboiling) reliably detects mushroom toxins
Amatoxins, orellanine, and many other mushroom toxins are completely heat-stable
With suspected amatoxin poisoning, seek emergency care immediately; do not wait for symptoms to worsen
Troubleshooting
Rhabdomyolysis from R. subnigricans requires immediate aggressive intravenous fluid resuscitation to maintain renal perfusion and prevent myoglobin-induced tubular necrosis. Monitor creatine kinase, serum potassium, and renal function every 4-6 hours. Hyperkalaemia above 6.0 mmol/L requires urgent treatment with calcium gluconate, insulin-dextrose, and potentially emergency dialysis to prevent fatal cardiac arrhythmia. Alkalinise urine to pH above 6.5 with sodium bicarbonate to reduce myoglobin precipitation in renal tubules. Fasciotomy may be necessary if compartment syndrome develops.
❓ Frequently Asked Questions
Is Blackening Russula poisonous?
Yes, Russula subnigricans is highly toxic and potentially fatal. It should never be consumed under any circumstances. If ingestion is suspected, seek emergency medical attention immediately.
What mushrooms look similar to Blackening Russula?
Known look-alikes include Russula densifolia, Russula nigricans. Careful identification using multiple features (cap, gills/pores, stipe, spore print, habitat) is essential to avoid confusion.
Where does Blackening Russula grow?
Russula subnigricans is found China, Japan, Korea, East Asia. It typically grows in mixed broadleaf forest during summer-autumn.
Can Blackening Russula be cultivated?
No, Russula subnigricans is a mycorrhizal species that requires a symbiotic relationship with living tree roots. It cannot be grown on artificial substrates and must be foraged from the wild.
What color is the spore print of Blackening Russula?
The spore print of Russula subnigricans is white. Taking a spore print is an important step in mushroom identification.
When is the best time to find Blackening Russula?
Russula subnigricans typically fruits during summer-autumn. Fruiting is often triggered by rainfall followed by appropriate temperatures for the species.
📋 Summary — Russula subnigricans (Blackening Russula)
Russula subnigricans is a dark-capped Russula species found in East Asia that causes a unique and often fatal rhabdomyolysis syndrome through the action of cycloprop-2-ene carboxylic acid, a toxin that destroys skeletal and cardiac muscle tissue. Endemic to Japan, China, and Taiwan, the species has been responsible for multiple fatalities, particularly in Japan where the genus Russula is widely collected for food. The reddening then blackening flesh and the dark brown to blackish-brown cap superficially resemble several edible Russula species in the nigricans complex.
Related Species
Russula nigricans is larger with more distant gills and a slower, less vivid reddening reaction before blackening. Russula densifolia has more crowded gills and a faster progression to black without prolonged reddening. Russula adusta greys then blackens without any reddening phase. Russula acrifolia has crowded gills, acrid taste, and limited reddening. All East Asian blackening Russula must be considered suspect until definitively identified, preferably with molecular confirmation.