In the world of #biotech #Multiomics #NGS, this is one of the most consequential moves in the China/US decoupling since the import ban was put in place. Difficult to say what it will mean for Illumina's revenue in the next few quarters, too early to say? Follow albertvilella.substack.com for more.

RE: https://bsky.app/profile/did:plc:l5aan5lkmuqstilgyczaho3v/post/3m4xsmg2als2t


Rhymes with Haystack | Albert ...

Computational Biology Lead
Bioptimus

Bioptimus is building the first universal AI foundation model for biology to fuel breakthrough discoveries and accelerate innovation in biomedicine.

See the full job description on jobRxiv: https://jobrxiv.org/job/bioptimus-27778-computational-biology-lead/

#bioinformatics #computationalbiology #foundationmodels #multiomics #ScienceJobs #hiring #research
https://jobrxiv.org/job/bioptimus-27778-computational-biology-lead/?fsp_sid=5086

Computational Biology Lead

Post a job in 3min, or find thousands of job offers like this one at jobRxiv!

jobRxiv
Rhymes with Haystack | Albert | Substack

Biotech, Next Generation Sequencing, Single cell and Spatial Biology, Next Generation Proteomics, Synthetic Biology, Small Molecules and Biologics pharma, and related topics. Click to read Rhymes with Haystack, a Substack publication with thousands of subscribers.

@cathiewood @ARKInvest continues to load up on @10xgenomics.bsky.social and other #NGSX #Multiomics stocks both in $ARKG and $ARKK
@arkinvest continues buying @10xgenomics.bsky.social both on their $ARKK Innovation fund and their main #Biotech #multiomics $ARKG Fund.
@m1quelag.bsky.social , creator bsky.app/profile/spli... , thanks for subscribing to my Substack and help spreading the word. #biotech #NGS #Multiomics

bsky.app/profile/splici...
Latest on Alternative Splicing (@splicingnews.bsky.social)

Retweets of alternative splicing tweets. Account managed by @m1quelag.bsky.social

Bluesky Social

We're hiring!

#Bioinformatics #Postdoc on #marine transmissible cancers:

YOU NEED passion about #cancer #evolution, #microbiome &marine #bivalves, a #PhD in a relevant field, a solid computational background, and be able to analyse #multiomics data sets.

WE OFFER a 2-yr Postdoc in an international & vibrant #research environment, state-of-the-art facilities & opportunities for professional development.

https://career.mpi-bremen.de/jobposting/a5697cec59a833bded496aa2af72837c6877acc60

#marineresearch #sciencejobs #researchjobs #WomeninSTEM #joboffer

PostDoc Tenor Track

Adaptive sampling #WGS is moving genomics from lab bench to bedside. In our latest work, we deliver variant, structural & methylation insights on @nanopore's PromethION platform with molecular signals emerging in minutes, not days. Watch this space 👀
#clinicalai #genomicsforhealth #nanopore #multiomics

https://www.medrxiv.org/content/10.1101/2025.10.02.25336569v1

Great talk by Sarah O'Connor at the 5th Virtual @ChemBioTalks #ChemBioTalks.
She talked about the amazing diversity of natural products that plants make and the application of single-cell #multiomics technologies to deceipher their biosynthesis. https://www.nature.com/articles/s41589-023-01327-0
Single-cell multi-omics in the medicinal plant Catharanthus roseus - Nature Chemical Biology

The medicinal plant Catharanthus roseus is a source of leading anticancer drugs. The monoterpene indole alkaloid (MIA) biosynthetic pathway in C. roseus has now been analyzed using a complementary, multi-omics, single-cell approach. This identified clusters of genes involved in MIA biosynthesis and cell-type-specific partitioning in the MIA biosynthetic pathway.

Nature
Great talk by @oconnorlab.bsky.social at the 5th Virtual @chembiotalks.bsky.social #ChemBioTalks. She talked about the amazing diversity of natural products that plants make and the application of single-cell #multiomics technologies to deceipher their biosynthesis. www.nature.com/articles/s41...

Single-cell multi-omics in the...
Single-cell multi-omics in the medicinal plant Catharanthus roseus - Nature Chemical Biology

The medicinal plant Catharanthus roseus is a source of leading anticancer drugs. The monoterpene indole alkaloid (MIA) biosynthetic pathway in C. roseus has now been analyzed using a complementary, multi-omics, single-cell approach. This identified clusters of genes involved in MIA biosynthesis and cell-type-specific partitioning in the MIA biosynthetic pathway.

Nature