Anita Scoones

@anitascoones.bsky.social

Isoform-resolved haematology with #singlecell & #longreads🧬 | PostDoc @whatchamacaulay.bsky.social 👩🏼‍🔬 | Based at @earlhaminst.bsky.social UK 🌎| 🇧🇷🇬🇧 | she/her

In my recent blog @earlhaminst.bsky.social I reflected on delivering the first hands-on single-cell training courses in #LATAM 🧬🌎🇧🇷 Highlighting insights from our recent review in @cellpress.bsky.social on the #singlecell research landscape across #LatinAmerica ! 🔗 ➡️ www.cell.com/cell/abstrac...

Connecting communities to empower single-cell genomics in Latin America

Latin America (LatAm) holds extraordinary potential for single-cell and spatial genomics research. The region's unique genetic diversity, environments, and endemic diseases present unique opportunitie...

earlham.ac.uk

Earlham Institute@earlhaminst.bsky.social · 8mo ago

Now, as the course participants and trainers publish a review in Cell (buff.ly/Z6pstSA) of the opportunities and challenges facing single-cell genomics in LatAm countries, Anita has shared her reflections on what it meant to return to her home country as a UK-based scientist.

Looking forward to presenting at #GenomeScience this week! ✨- I'll be discussing our work benchmarking #singlecell #longread approaches, freshly on biorxiv as of this morning! 🧬📄

Earlham Institute@earlhaminst.bsky.social · last yr.

Looking forward to #GenomeScience in Newcastle next week! 🖥️ 🧬 Catch up with the Earlham Institute team who will be presenting talks and posters on topics including: 🦠 #Metagenome-assembled genomes from complex #microbiomes 🌾 Wheat pan genomics 🧬 Benchmarking Long-Read scRNA-Seq Approaches

Social graphic promoting Earlham Institute attending Genome Science event in Newcastle. Profile photos of 9 people from EI displayed in a grid with their names down the side.

📝 New preprint on bioRxiv! We compared #longread #singlecell #RNAseq methods (ONT & PacBio) using same-source cDNA to see how they perform in practice. Might be useful for others exploring these approaches 👀 www.biorxiv.org/cgi/content/...

A comparison of long-read single-cell transcriptomic approaches

Long-read sequencing enables the incorporation of isoform-level expression into single-cell transcriptomic studies, offering detail beyond those accessible with short-read methods. Although insightful, these approaches have typically been costly and yielded limited data for each individual cell. Recent advances in library preparation approaches and sequencing throughput have brought long-read single-cell studies closer to the mainstream. Here, we present a comparative analysis of commercial approaches for single-cell long-read sequencing. We have performed parallel analyses of the same cDNA material, generated using the 10X genomics platform, on Illumina short-read, and PacBio and Oxford Nanopore long-read platforms. We also demonstrate the impact of CRISPR-based depletion of libraries, to remove highly expressed transcripts, prior to long-read sequencing in these experiments. By analysing single-source cDNA libraries in parallel, we enable a direct comparison of each platform, evaluating standard metrics alongside concordance in clustering and cell type identification. While each approach generates usable gene and isoform expression data, we identify limitations common across platforms, primarily linked to cDNA synthesis inefficiencies and read filtering strategies. Our work demonstrates the increasing utility of single-cell long-read sequencing for isoform-resolved analyses, such as direct immunoglobulin chain reconstruction without additional amplification, and the detection of alternative splicing patterns across immune cell subtypes in CD45, a key gene for immune cell activation and differentiation. Our benchmarking of current platform options provides a foundation for researchers looking to adopt single-cell long-read sequencing into their transcriptomic studies, providing a framework for its integration into diverse biological questions. ### Competing Interest Statement A.P.C. is an inventor on patents filed by Oxford University Innovations for single-cell technologies and is a co-founders of Entelo Bio. All other authors declare no conflict of interest. Cancer Research UK, https://ror.org/054225q67, A26815 Biotechnology and Biological Sciences Research Council, https://ror.org/00cwqg982, BB/CCG1720/1, BB/CCG2220/1, BBS/E/T/000PR9816, BBX011070/1, BB/V016156/1, BB/T008717/1 UK Research and Innovation, EP/X035913/1, 10098097 Biotechnology and Biological Sciences Research Council, BB/M011216/1, BBS/E/ER/23NB0006 Medical Research Council, MR/V010182/1

biorxiv.org

nice to see this one up on bioRxiv - we took at look at various approaches for #longread #singlecell #RNAseq, very much from the perspective of the prospective user - firstly to see for ourselves how they behaved! www.biorxiv.org/content/10.1...

A comparison of long-read single-cell transcriptomic approaches

Long-read sequencing enables the incorporation of isoform-level expression into single-cell transcriptomic studies, offering detail beyond those accessible with short-read methods. Although insightful, these approaches have typically been costly and yielded limited data for each individual cell. Recent advances in library preparation approaches and sequencing throughput have brought long-read single-cell studies closer to the mainstream. Here, we present a comparative analysis of commercial approaches for single-cell long-read sequencing. We have performed parallel analyses of the same cDNA material, generated using the 10X genomics platform, on Illumina short-read, and PacBio and Oxford Nanopore long-read platforms. We also demonstrate the impact of CRISPR-based depletion of libraries, to remove highly expressed transcripts, prior to long-read sequencing in these experiments. By analysing single-source cDNA libraries in parallel, we enable a direct comparison of each platform, evaluating standard metrics alongside concordance in clustering and cell type identification. While each approach generates usable gene and isoform expression data, we identify limitations common across platforms, primarily linked to cDNA synthesis inefficiencies and read filtering strategies. Our work demonstrates the increasing utility of single-cell long-read sequencing for isoform-resolved analyses, such as direct immunoglobulin chain reconstruction without additional amplification, and the detection of alternative splicing patterns across immune cell subtypes in CD45, a key gene for immune cell activation and differentiation. Our benchmarking of current platform options provides a foundation for researchers looking to adopt single-cell long-read sequencing into their transcriptomic studies, providing a framework for its integration into diverse biological questions. ### Competing Interest Statement A.P.C. is an inventor on patents filed by Oxford University Innovations for single-cell technologies and is a co-founders of Entelo Bio. All other authors declare no conflict of interest. Cancer Research UK, https://ror.org/054225q67, A26815 Biotechnology and Biological Sciences Research Council, https://ror.org/00cwqg982, BB/CCG1720/1, BB/CCG2220/1, BBS/E/T/000PR9816, BBX011070/1, BB/V016156/1, BB/T008717/1 UK Research and Innovation, EP/X035913/1, 10098097 Biotechnology and Biological Sciences Research Council, BB/M011216/1, BBS/E/ER/23NB0006 Medical Research Council, MR/V010182/1

biorxiv.org

✨🧬 Featured in the Single Cell & Spatial Buyer’s Guide 2025 by Front Line Genomics @flgenomics.bsky.social! I shared thoughts on applying long-read sequencing to single-cell — isoform diversity, benchmarking challenges, and where we still need to do better. Read (pp. 36–40): hubs.la/Q03qCBTm0 🧵👇

Report: Single Cell & Spatial Buyer's Guide 2025

This report is a free-to-download resource to help keep track of the advances in the single cell and spatial field.

hubs.la

Great to see this new guide out from @flgenomics.bsky.social which includes an interview with Anita Scoones, Postdoctoral Researcher at EI, on the challenges of #longread #singlecell sequencing. @anitascoones.bsky.social @whatchamacaulay.bsky.social

Front Line Genomics@flgenomics.bsky.social · last yr.

Want to learn about the latest #spatial technologies and push the resolution of your experiments even further? Compare platforms and hear from experts in our new Single Cell and Spatial Buyer’s Guide. Plus, it’s FREE to download. Get your copy now: hubs.la/Q03qmmQ60 #singlecell

The Norwich Single-Cell & Spatial Symposium is nearly here! 👏🏻Two packed days of talks across plant, microbial & human systems—covering #singlecell, #spatial & real-world case studies 🧬🦠! In person at the Earlham Institute. Registration closes soon- don’t miss it!🔗 www.earlham.ac.uk/events/norwi...

Norwich Single-Cell and Spatial Symposium

Now in its eighth year, and extended to a two-day event, the Norwich Single-Cell and Spatial Symposium at Earlham Institute covers single-cell and spatial genomics technologies and their application i...

earlham.ac.uk

Hi BlueSky 👋🦋 Following suit with a professional migration! Bit about me: I’m a postdoc working on isoform-resolved #singlecell transcriptomics using long-read sequencing. Currently somewhere between protocol optimisation and data chaos😅. Expect science, training bits & memes - of course ☺️