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B+ mushroom spores complete UK guide

B+ Spores: Complete UK Microscopy Guide 2026

⚡ Quick Answer
B+ is a variant of Psilocybe cubensis, widely circulated among mycologists since the 1990s and considered one of the most reliable reference strains for research. The spore print is dark purple-brown. Under the microscope, single spores look brown to purple-brown (the exact shade depends on lighting and mounting liquid), with a smooth wall and a clearly visible germ pore. Published descriptions of Psilocybe cubensis give about 11.5–17 µm long and 6–11.5 µm wide (Singer & Smith, 1958; Batista et al., 2025), and that range applies to B+ like every other strain. Its large caps and thick stems produce exceptionally dense spore deposits. This guide covers the genetics behind B+, how to prepare a proper slide, how it compares to other strains, and how to store your syringe correctly so it stays viable.
If you've spent any time browsing UK mycology forums, you've seen B+ mentioned constantly, usually in the same breath as Golden Teacher. Both are considered gold-standard beginner strains, but B+ has its own distinct characteristics worth understanding on their own terms.
Psilocybe cubensis — B+ strain · UK legal for microscopy research
This guide walks through what B+ spores actually look like up close, what genetically sets the strain apart, and how to get consistent, reliable results under the microscope.
1990sWhen B+ entered wide mycology circulation
11.5–17 µmSpore length, species range (Singer & Smith, 1958; Batista et al., 2025)
400xMinimum magnification to see spores clearly
Very HighTypical spore deposit density

1. Where Did B+ Come From?

B+ is a cultivar of the species Psilocybe cubensis — the same species as Golden Teacher, Penis Envy, and every other named cubensis strain. Think of it the way you'd think of apple varieties: a Braeburn and a Gala are the same species of apple, just different cultivars with their own characteristics.B+ has been in wide circulation since at least the 1990s, and its exact origin is one of the more debated points among collectors. Its documented history and consistency have made it one of the most cross-referenced cubensis strains available, alongside Golden Teacher.

Where Does the Name Come From?

Unlike Golden Teacher, whose name has an informal folk-etymology, "B+" is simply a label — likely originating from an early cultivator's naming shorthand. No confirmed backstory exists, but the name has stuck for over three decades because of the strain's reliability.

The Science Behind the Classification

Psilocybe cubensis was first described in 1906 by Franklin Sumner Earle from specimens found in Cuba, later reclassified into the genus Psilocybe by Rolf Singer in 1948. B+ shares this same species classification with all other cubensis strains — the strain name distinguishes the cultivar, not a separate species.
ℹ️ Key Taxonomy Fact — B+, Golden Teacher, Penis Envy, Blue Meanies, and all other named cubensis strains are the same species, Psilocybe cubensis. Strain names are informal cultivar labels, not separate scientific classifications. All cubensis strains share the same species-level spore characteristics under the microscope.

2. What B+ Spores Look Like Under the Microscope

B+ spores share the core cubensis features (brown to purple-brown colour, visible germ pore, oval shape), but the strain is particularly known for the sheer volume of spores it produces.
Size
11.5–17 × 6–11.5 µm
Species range from published descriptions (Singer & Smith, 1958; Batista et al., 2025); the same for every strain. Clearly visible at 400x. Best measured at 1000x oil immersion.
Shape
Ellipsoid
Ellipsoid in side view, and some look slightly six-sided face-on (Batista et al., 2025).
Colour
Dark Purple-Brown
Standard brown to purple-brown pigmentation, easy to see under standard brightfield illumination at 400x.
Wall
Smooth, Thick-Walled
No warts or surface features. Standard thickness, clearly visible at 1000x oil immersion.
Germ Pore
Broad
A visible thin-walled window at the tip of the spore, clear and well-defined at high magnification.
Deposit
Very Dense
B+ produces some of the heaviest spore deposits of any common cubensis strain — a trait of the mushroom's spore print, not of the syringe.

Let's Break Each Feature Down

Shape — Ellipsoid: B+ spores are ellipsoid in side view, and some look slightly six-sided face-on (Batista et al., 2025). No published study has compared shape between strains, so shape isn't a reliable way to tell them apart.Size: the species range is about 11.5–17 µm long and 6–11.5 µm wide (Singer & Smith, 1958; Batista et al., 2025), the same for B+ as for every other strain. At 400x you'll see the general shape and colour clearly; 1000x oil immersion reveals the finer wall and germ pore detail.Deposit density: This is where B+ genuinely stands out. Its large, flat caps release spores freely, giving heavy spore prints — though every syringe has the same concentration, whatever the strain.
✅ What to Look for First — At 400x, you'll spot clusters of dark oval spores almost immediately. Focus first on getting a clean, well-lit field of view, then move to 1000x oil immersion to examine wall thickness and the germ pore.

3. Why Is B+ So Widely Used for Research?

B+'s popularity isn't accidental — there are concrete, practical reasons researchers reach for it as often as Golden Teacher.
🌊

Very High Spore Yield

B+'s large, flat-opening caps release spores in abundance — a trait of the mushroom's spore print, not of the syringe.
📐

Consistent, Uniform Shape

Like any P. cubensis sample, spores within a B+ sample look similar to each other, which helps when you're learning to judge whether variation you see is real or a preparation artefact.
🔍

Clear Structural Features

Pigmentation, germ pore, and wall structure are all easily observable at standard magnifications without special staining — a big help for building confidence early on.
📚

Easy to Compare

B+ has been around for decades, so there are plenty of hobbyist photos and notes to compare your slides with. Treat these as community sources, not published science.
🔗

Strong Comparison Baseline

Once you know B+'s morphology, it becomes a useful reference point for P. cubensis spores in general.
🛡️

Forgiving for Beginners

Because there's so much material in a typical B+ syringe, minor prep mistakes — a bit too much liquid, a stray air bubble — rarely ruin an otherwise usable slide.

4. How B+ Compares to Other UK Strains

All Psilocybe cubensis strains share species-level spore characteristics. Strains are said to differ in things like spore print weight, but those differences aren't from published studies. Here's how B+ stacks up against four other popular UK microscopy strains.
StrainDeposit DensityDifficultyBest For
B+Very HighBeginnerComparison with Golden Teacher
Golden TeacherVery HighBeginnerReference strain, first slides
MazatapecHighBeginnerHistorical taxonomy research
Blue MeaniesModerateIntermediateComparative studies
Penis EnvyLow — rareAdvancedGenetic mutation study
There are no published spore measurements for individual strains. Published descriptions of Psilocybe cubensis give about 11.5–17 µm long and 6–11.5 µm wide (Singer & Smith, 1958; Batista et al., 2025), and that range applies to every strain. Deposit density describes how heavy each mushroom's spore print is reported to be, not how many spores are in a syringe.

B+ vs Golden Teacher — What's the Difference?

These are the two most commonly compared beginner strains, and they're genuinely close. Their quoted sizes overlap closely. There's no practical difference in the syringe: both have the same concentration, because it's set by how many spore prints go into the jar, not by the strain. Many researchers keep both on hand and use them as a comparison pair.

B+ vs Penis Envy — Opposite Ends of the Spectrum

Where B+ is defined by abundance and consistency, Penis Envy is defined by scarcity. A genetic mutation keeps PE's cap partially closed at maturity, drastically limiting spore release — the opposite of B+'s wide-opening, high-yield caps. If you're building research skills, B+ is where to start; Penis Envy is worth adding once your technique is solid.

5. How to Prepare a B+ Slide

Like every TrippingStore syringe, B+ is a double-density suspension, so it's easy to get a usable slide on the first try.

What You'll Need

  • Compound microscope — 400x minimum, 1000x oil immersion preferred
  • Glass slides (25×75mm)
  • Coverslips (#1.5, 0.17mm thick)
  • Immersion oil (Type B) for 1000x work
  • Lens tissue and isopropyl alcohol for cleaning
  • Your B+ spore syringe
  • Notebook for recording observations
1
Clean your slide — Wipe a glass slide with lens tissue dampened with isopropyl alcohol and let it dry completely. Dust and fingerprints create distracting artefacts that can look like contamination.
2
Agitate the syringe — Roll it between your palms, then give the syringe a good shake.
3
Add one small drop — Uncap the needle and press out roughly 0.05ml onto the centre of the slide. Less is more — too much liquid causes the coverslip to float and the spores to drift.
4
Apply the coverslip at an angle — Hold at a 45-degree angle, letting one edge touch the liquid first, then lower it flat. This pushes air out to the sides and reduces bubbles.
5
Start at 100x — Get an overview of the whole slide at low magnification. You'll typically spot usable clusters almost immediately.
6
Move to 400x for observation — This is the main working magnification for shape, colour, and overall sample assessment. Practise measuring spores here with a calibrated eyepiece micrometer.
7
Use oil immersion at 1000x for fine detail — Add a small drop of Type B immersion oil directly on the coverslip and lower the 100x oil objective. This reveals wall thickness and the germ pore clearly.
8
Record your observations — Note dimensions, shape, colour, and any distinguishing features. Measure at least 15–20 spores for a reliable average, and photograph where possible.
⚠️ One Thing to Remember — Always cap the needle immediately after use. Every time the syringe is opened to air, there's a risk of contamination entering, which can ruin future slide preparations.

6. How to Store Your B+ Spore Syringe

Standard storage rules apply here. Stored correctly, a B+ syringe should stay usable for 12–18 months, the same as any strain.
FactorWhat to DoWhy
TemperatureStore at 2–8°C (standard fridge)Slows microbial activity without damaging spores
FreezingNever freezeIce crystals permanently damage spore structure
LightKeep in complete darknessUV and ambient light degrade viability over time
WhereStore in a clean place in the fridgeKeeps the syringe cold and clean
ContainerSealed bag or opaque container in fridgeProtects against light and fridge odours
Shelf life12–18 months under ideal conditionsWall structure and clumping degrade beyond this point
✅ Before Each Use — Take the syringe out of the fridge 24 hours before use to reach room temperature, then give it a good shake before use.
Ready to Get Started?
Tripping Store's B+ spore syringes are prepared under sterile conditions in the UK, with verified genetics and a double-density suspension — giving you plenty of material for reliable, repeatable slide preparation.

Frequently Asked Questions

QWhy is B+ so popular for microscopy?
Three main reasons. It produces an exceptionally dense spore deposit, and like every TrippingStore syringe, B+ is a double-density suspension. Like any P. cubensis sample, its spores look similar to each other, which helps beginners focus on technique rather than second-guessing whether variation is real. And its key identification features — colour, germ pore, wall structure — are all clearly visible at standard magnifications without special equipment.
QHow big are B+ spores?
About 11.5–17 µm long and 6–11.5 µm wide, the published range for Psilocybe cubensis (Singer & Smith, 1958; Batista et al., 2025); there are no separate published measurements for B+. They're clearly visible at 400x, with fine detail visible at 1000x oil immersion.
QIs B+ legal to buy in the UK?
Yes — for microscopy research purposes. Psilocybe cubensis spores don't contain psilocybin or psilocin, so they're legal to buy, own, and study for microscopy and taxonomic research in the UK. Cultivating fruiting mushrooms from spores is not legal. See our full 2026 UK Legal Guide.
QWhat magnification do I need to see B+ spores?
You can see B+ spores clearly at 400x magnification. For finer detail — wall thickness and the germ pore — you'll want 1000x oil immersion with Type B immersion oil on the coverslip.
QHow does B+ compare to Golden Teacher for beginners?
Both are excellent, very similar beginner strains, and their spores look alike under the microscope. Their syringes have the same concentration, because it's set by how many spore prints go into the jar, not by the strain. Many keep both on hand as a comparison pair.
QHow long does a B+ spore syringe last?
Stored in a clean place in the fridge — 2–8°C, in complete darkness — a B+ spore syringe should remain viable for 12–18 months. Never freeze it, as ice crystals permanently damage spore walls.
QIs B+ a good first strain for beginners?
Yes — it's one of the two most commonly recommended starter strains alongside Golden Teacher. Like every TrippingStore syringe, it's a double-density suspension, so new researchers get usable, confidence-building results quickly.
QCan you tell B+ apart from other cubensis strains under a microscope?
Not definitively at the strain level. All Psilocybe cubensis strains share the same species-level spore features. Any differences in size or shape between strains aren't from published studies, so they aren't a reliable guide. Only documented provenance, knowing which syringe you used and where it came from, tells you the strain.
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