Subnets / SN107
Minos SN107
Minos (subnet 107) is a Bittensor subnet held by 2,835 unique coldkeys. Its liquidity pool holds 22.4k τ, with the alpha token trading at 0.0557 τ. Roughly 67% of tracked holders are in profit. Over the last 7 days the alpha price is up 3.2% in TAO terms. Full insider flow, whale tracking and the complete proprietary factor set for Minos are available to SubnetStats subscribers.
ALPHA PRICE
0.0557 τ
IN TAO
HOLDERS
2,835
UNIQUE COLDKEYS
POOL DEPTH
22.4k τ
TAO IN POOL
7D MOMENTUM
+3.2%
ALPHA vs TAO
Project activity
Competition in Bittensor follows incentives. We just rolled out our second major scoring overhaul since launch, upgrading how Minos evaluates genomic predictions and rewards miners.
Incorrect predictions now carry a penalty. Finding mutations that are harder to detect earns a bo
Great to see distributed science growing on Bittensor.
Congrats to @PKoellinger and the Claims team on going live - excited to see what they build!
Chromosomes 17 and 16 are now live on Minos, bringing the total number of chromosomes in the network to 7.
Chr17 carries BRCA1 and TP53, while Chr16 contains key genes implicated in kidney disease and blood disorders. https://t.co/Jw6S1BBn0n
One of the less visible challenges of running Minos is moving large genomic workloads every hour while keeping storage and egress from becoming bottlenecks.
In collaboration with @Hippius_cloud, we built the infrastructure that makes this possible at scale.
If you missed the c
Our co-authored paper with @OpenAI and leading researchers in genomics and scientific computing is now available as a preprint on bioRxiv.
This work explores what becomes possible when frontier AI agents and domain experts come together to build and scale complex scientific sof
Synthetic genomes for genomic AI!
Design precise donor-derived datasets with known mutations and full ground truth.
Request early access👇
https://t.co/Al3jCExbvm
Proud to share: we co-authored a new paper with @OpenAI on scientific computing in the age of agentic AI.
HelixForge, our GPU-native engine for generating synthetic genomes, is featured as the study’s most ambitious and complex system.
An entirely new architecture, built from t
Every mutation leaves a signature in the genome.
The challenge has always been learning how to pull that signal cleanly from the noise.
Rendered on @TargonCompute. https://t.co/F3UVhMqlqG
Minos Network is leveling up.
Chromosome 19 is now rolling out, ahead of schedule.
We’re moving beyond chromosome-by-chromosome approach. The network is now evaluating multiple chromosomes in parallel, expanding into new ones while continuously refining those already mapped.
A
Next target: Chromosome 22
Chromosome 22 is clinically important.
Some mutations here are linked to higher cancer risk, while others can change how people respond to common medications.
Every chromosome we add brings Minos closer to a true genome-wide intelligence layer. https
We joined Novelty Search to talk about why genomics is one of the strongest real-world use cases for Bittensor.
Genomics has massive upside, but the core infrastructure is still bottlenecked by limited truth data and closed iteration loops.
Our thesis is simple: the bottleneck
We’re excited to have @stillcorecap invest in Minos!
Big thanks to @markjeffrey and the Stillcore team for backing our vision as we build foundational infrastructure for decentralized genomic intelligence and more accurate, verifiable DNA variant detection.
Two months after launching Minos on mainnet, we’ll be on Novelty Search this Thursday to talk about how we’re building the next generation of genomics infrastructure on Bittensor.
MinosVM 2.0 is LIVE!
We launched MinosVM to reduce setup friction and make mining genomics on Bittensor easier from day one.
Today, we’re taking the next step toward agent-native mining by announcing MinosVM 2.0, now live on @TargonCompute with native support for AI assistants
Mining Minos with AI?
Our public ditto handle ‘minos’ knowledge graph is now live on @heydittoai.
Your AI agent can now learn from Minos knowledge and actually build memory around it. Combined with our MCP servers, this gives agents a shared memory layer and live context for b
Our CUDA-native genome generation stack can now generate a whole synthetic genome in just under 20 minutes on eight H200 GPUs from @lium_io .
That's roughly 440x faster than the traditional CPU-bound workflows.
This opens the door to population-scale synthetic genome generati
We’re excited to announce that Minos has been accepted into the Cloudflare for Startups program.
The program provides early-stage startups with access to Cloudflare’s global network, security tools, and developer platform to support faster development and scaling.
This will he
The Minos MCP server (beta) is now LIVE!
AI agents can plug directly into SN107 and monitor the subnet as it operates, from live rounds and miner performance to validator activity, score histories, and overall network health.
This opens Minos to the agentic layer of decentraliz
The All-In crew and @jason touched on something important here. The amount of genomic data being generated is exploding.
The challenge is that privacy limits how much of this data can be used to advance AI, while models are becoming increasingly cautious in how they engage with
Since moving to chromosome 21, we’ve performed more than 37,000 variant-calling evaluations. That took about 11 days. In a conventional lab setup, the same evaluation workload would take roughly 65 days.
Many of the top evals are converging around GATK, and on average, we are se
At this year’s Proof of Talk, DeSci will be part of the center-stage conversation.
Our scientific advisor @PKoellinger, founder of DeSci Labs, will be on stage in Paris discussing how Bittensor can help create infrastructure for verifiable scientific claims.
We believe distribu
Minos is expanding to chromosome 21.
We started with chromosome 20 to establish the loop. After two weeks of uninterrupted live benchmarking, the next chromosome enters the network.
Every new chromosome expands the search space for better variant calling and moves us closer to
Hash Rate episode 172 gets into the core thesis behind Minos.
Genomics is becoming an AI-native field. This means we need live validation, continuous optimization, and distributed infrastructure to move the field from static benchmarks to continuously improving genomic intellige
Minos will be presenting two works at The American Society of Human Genetics (ASHG) this fall.
1. How we are leveraging distributed compute for continuous benchmarking of genomic data to optimize variant-calling.
2. Introducing HelixForge-Pheno, our custom CUDA architecture for
Current variant-calling tools in genomics are highly configurable, but many pipelines still run them with default settings without deeply searching the hyperparameter space.
Minos is changing that static approach.
We are turning routine genomic benchmarking into measurable impr
SELLERS DRAINED
69%
28D SELLERS EMPTIED OUT
CAPITULATION
-0.95
BOUNCE COMPOSITE (z)
HEAT 7D
0.91×
VOLUME ÷ POOL DEPTH
HOLDERS IN PROFIT
67%
TRACKED WALLETS · ENTRY BELOW PRICE
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