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Alexander Wittenberg

@awngs.bsky.social
230 followers 126 following 21 posts

New horizons. All omics. AgBio field NGS specialist. Crop Innovation 🌱 🍌🌾🍉🌻🍓vegetables, field crops, berries & ornamentals. #NGS #DNA #RNA #Protein

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Reposted by Alexander Wittenberg
Adam Phillippy @aphillippy.bsky.social · 06/08/2026
For the past 30 years, “whole-genome sequencing” has been a misnomer. Today the T2T Consortium publishes a dozen papers heralding a future of truly complete genomes for humans and nearly any vertebrate 👨‍🔬🐒🐦🐀🦒🐎🫏🐹🐟 (sorry, no salamanders): www.cell.com/consortium/t... 🧵[1/15]
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Reposted by Alexander Wittenberg
Memorial Sloan Kettering Cancer Center @mskcancercenter.bsky.social · 28/07/2025
New in @natbiotech.nature.com: a team led by scientists at MSK and ‪University of Toronto have developed a new platform to facilitate the study of RNA-biding proteins (RBPs) across hundreds of species of plants, insects, and animals.
nature.com
A resource of RNA-binding protein motifs across eukaryotes reveals evolutionary dynamics and gene-regulatory function - Nature Biotechnology
RNA-binding motifs in eukaryotic proteins are presented in a comprehensive resource.
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Reposted by Alexander Wittenberg
bioRxivpreprint @biorxivpreprint.bsky.social · 21/07/2026
Scalable single-cell isoform profiling with sequencing-by-expansion www.biorxiv.org/content/10.64898/20…
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Alexander Wittenberg @awngs.bsky.social · 17/07/2026
In collaboration with Roche, @KeyGene.com evaluated the Roche AXELIOS 1 platform for samples relevant for AgBio research. The AXELIOS platform has the speed, scale and accuracy to accelerate crop innovation. www.keygene.com/keygene-eval... #Genomics, #NGS, #CropInnovation, #AXELIOS1
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Reposted by Alexander Wittenberg
Oxford Nanopore @nanoporetech.com · 05/02/2026
New hifiasm-ONT assembly method delivers high-quality, cost-efficient near T2T assemblies using standard Oxford Nanopore Simplex reads, broadening access to comprehensive genome assemblies across research and clinical applications. bit.ly/4awzU15
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Alexander Wittenberg @awngs.bsky.social · 05/02/2026
Announcing the #banana pangenome generated by @keygene.com using @nanoporetech.com long PromethION read platform. www.linkedin.com/posts/alexan...
linkedin.com
#pangenome #breeding #haplotypes | Alexander H.J. Wittenberg
Great achievement ! This is going to accelerate our understanding and breeding efforts. Thanks also Oxford Nanopore Technologies since without long reads this would not have been possible. 🍌 🍌 🍌 #pang...
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Reposted by Alexander Wittenberg
Alexander Wittenberg @awngs.bsky.social · 06/01/2026
Looking forward to attending #PAG33 in San Diego (if flights allow…) to present @nanoporetech.com industry workshop. Some background in the link below. www.keygene.com/single-nucle...
keygene.com
Single nuclei RNA sequencing for high resolution insights
KeyGene developed a single-cell transcriptomics technology based on the Chromium X by 10 X Genomics to analyze the gene expression profiles
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Reposted by Alexander Wittenberg
Alexander Wittenberg @awngs.bsky.social · 12/06/2025
Must read! Great technology for fast high resolution recombination breakpoint mapping as well as for phasing complex crop genomes. www.linkedin.com/posts/keygen...
linkedin.com
Joint research by KeyGene and Ultima Genomics shows that single-pollen-nuclei sequencing provides better profiling of meiotic recombination. | KeyGene
Joint research by KeyGene and Ultima Genomics shows that single-pollen-nuclei sequencing provides better profiling of meiotic recombination. It can help plant breeders to improve their breeding by bet...
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Alexander Wittenberg @awngs.bsky.social · 06/01/2026
Looking forward to attending #PAG33 in San Diego (if flights allow…) to present @nanoporetech.com industry workshop. Some background in the link below. www.keygene.com/single-nucle...
keygene.com
Single nuclei RNA sequencing for high resolution insights
KeyGene developed a single-cell transcriptomics technology based on the Chromium X by 10 X Genomics to analyze the gene expression profiles
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Reposted by Alexander Wittenberg
Oxford Nanopore @nanoporetech.com · 17/12/2025
Join Alexander Wittenberg at #PAG to uncover how he is utilising Oxford Nanopore technology to develop high-quality reference genomes and uncover genetic and phenotypic variants, which will help develop methods to improve crops. bit.ly/48tzBDa
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 16/10/2025
We're proud to share that we have incorporated a state-f-the-art 'spatial transcriptomics' platform in our research facilities: the Merscope by @vizgen.bsky.social. To be used in e.g. innovative research on the interaction between plants & fungi for crop improvement. www.keygene.com/keygene-to-d...
Microscopic picture of a leaf, showing bright red dots in the cells in which a certain gene is active. In this picture, the studied gene is mainly active in the stomata: cells in the outer layer of the leaf that are responsible for the regulation of gas exchange between the plant and the environment.
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Alexander Wittenberg @awngs.bsky.social · 15/10/2025
www.keygene.com/keygene-to-d...
keygene.com
KeyGene to deploy Vizgen’s Merscope for spatial transcriptomics
KeyGene first organization in the Netherlands to purchase Merscope from Vizgen for spatial transcriptomics.
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Reposted by Alexander Wittenberg
Javier Santoyo @jsantoyo.bsky.social · 06/10/2025
Long-read nucleosome mapping of single chromatin fibers using DNA methylation and Nanopore sequencing. #LongRead #Nanopore #Sequencing #Chromatin #DNAmethylation @biophysj.bsky.social 🧪 🧬 www.sciencedirect.com/science/arti...
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Reposted by Alexander Wittenberg
Human Pangenome Reference Consortium @humanpangenome.bsky.social · 08/08/2025
A new method using the Shasta assembler and GFAse tool improves the phasing of Oxford Nanopore Technologies (ONT) sequence data, enabling chromosome-scale phasing with higher accuracy and reduced complexity. Uncover the science behind it: pmc.ncbi.nlm.nih.gov/articles/PMC...
pmc.ncbi.nlm.nih.gov
Phased nanopore assembly with Shasta and modular graph phasing with GFAse
Reference-free genome phasing is vital for understanding allele inheritance and the impact of single-molecule DNA variation on phenotypes. To achieve thorough phasing across homozygous or repetitive r...
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 07/07/2025
In 2026, CROP Innovation & Business (CropIB) will be held in Wageningen, the Netherlands, March 29 - 31. Subscribe to the CropIB newsletter (see link below) to stay informed about the program and other details! www.cropib.com/newsletter Partners: @ceplas.bsky.social @wurplant.bsky.social & VIB
Photo of the Omnia building at Wageningen Campus
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Reposted by Alexander Wittenberg
Trends in Biochemical Sciences @cp-trendsbiochem.bsky.social · 18/06/2025
Online now - the Review "Advancing #nanopore technology toward protein identification and sequencing" from Verena Rukes and @chancao.bsky.social. #proteomics #proteinsequencing #proteinanalysis #fingerprinting #singlemolecule authors.elsevier.com/sd/article/S...
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Reposted by Alexander Wittenberg
Ben Langmead @benlangmead.bsky.social · 17/06/2025
Now published! Note that since Vikram's original post (quoted here), he's made it easy to dynamically update a set of multi-MUMs (e.g. when more genomes are added to a pangenome) and to find multi-MUMs for huge collections like HPRCv2 genomebiology.biomedcentral.com/articles/10....
genomebiology.biomedcentral.com
Mumemto: efficient maximal matching across pangenomes - Genome Biology
Aligning genomes into common coordinates is central to pangenome construction, though computationally expensive. Multi-sequence maximal unique matches (multi-MUMs) help to frame and solve the multiple...
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Reposted by Alexander Wittenberg
Heng Li @lh3lh3.bsky.social · 17/06/2025
Preprint on "Improving spliced alignment by modeling splice sites with deep learning". It describes minisplice for modeling splice signals. Minimap2 and miniprot now optionally use the predicted scores to improve spliced alignment. arxiv.org/abs/2506.12986
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 12/06/2025
Joint research by @keygene.com & Ultima Genomics shows that single-pollen-nuclei sequencing can help plant breeders to improve their breeding by better understanding the recombination of the mother and father DNA during meiosis without raising and analysing an F2. www.keygene.com/newsitem/sin...
keygene.com
Single pollen nuclei sequencing: profiling of meiotic recombination
KeyGene’s advanced protocols & smart bioinformatics + Ultima Genomics sequencing platform: better understanding DNA recombination in meiosis.
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Alexander Wittenberg @awngs.bsky.social · 12/06/2025
Must read! Great technology for fast high resolution recombination breakpoint mapping as well as for phasing complex crop genomes. www.linkedin.com/posts/keygen...
linkedin.com
Joint research by KeyGene and Ultima Genomics shows that single-pollen-nuclei sequencing provides better profiling of meiotic recombination. | KeyGene
Joint research by KeyGene and Ultima Genomics shows that single-pollen-nuclei sequencing provides better profiling of meiotic recombination. It can help plant breeders to improve their breeding by bet...
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 05/06/2025
@keygene.com, Twist Bioscience, and Beckman Coulter Life Sciences developed an ultra-high throughput workflow for plant exome analysis: characterizing more than 9,000 samples per day, reducing costs of detecting functional SNP variation in breeding and research. www.keygene.com/newsitem/aut...
keygene.com
Automated high throughput workflow for plant exome analysis
KeyGene, Twist Bioscience and Beckman Coulter Life Sciences developed an ultra-high throughput workflow for plant exome analysis
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Reposted by Alexander Wittenberg
Oxford Nanopore @nanoporetech.com · 23/05/2025
Much of biology remains hidden, especially the proteome. Jeff Nivala explores progress toward Oxford Nanopore-based single-molecule protein sensing — offering a path to decode proteins like DNA and transform our understanding of cellular machinery. #NanoporeConf
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Reposted by Alexander Wittenberg
Oxford Nanopore @nanoporetech.com · 21/05/2025
Oxford Nanopore sequencing will be ubiquitous for multiomics….and the next step is proteomics. First panel-based proteomics assays, before driving towards full protein sensing in the future. #nanoporeconf
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Reposted by Alexander Wittenberg
Oxford Nanopore @nanoporetech.com · 21/05/2025
At London Calling, Rosemary Sinclair Dokos and Lakmal Jayasinghe shared how we’re doubling down on what matters: delivering a future-ready platform with proven performance across DNA, RNA, and now proteins. Click here to discover what’s new – and why it matters: nanoporetech.com/news/london-...
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Alexander Wittenberg @awngs.bsky.social · 22/05/2025
m.youtube.com/watch?v=OYql... #nanoporecomf
m.youtube.com
London Calling 2025 tech update
YouTube video by Oxford Nanopore Technologies
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Alexander Wittenberg @awngs.bsky.social · 22/05/2025
nanoporetech.com/blog/london-...
nanoporetech.com
Oxford Nanopore’s roadmap to proteomics
Oxford Nanopore unveils its pioneering roadmap to full protein sequencing, advancing real-time, direct proteomics for transformative healthcare and research applications.
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 29/04/2025
'Fresh' PhD graduates who lived outside the Netherlands for at least 24 months during 36 months before September 10: there's less than a month to apply as candidate for a joint Marie Curie grant application for a 'PostDoc in industry' at KeyGene! Deadline is May 19 ! www.keygene.com/newsitem/cal...
keygene.com
Call for postdoctoral candidates for a Marie Curie fellowship - KeyGene
Marie Curie Fellowship opportunity for fresh PhD's to accelerate career & be part of groundbreaking research for the future of agriculture
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Reposted by Alexander Wittenberg
KeyGene @keygene.com · 19/05/2025
The University of Milan published the genome of the downy mildew-resistant grapevine ‘Mgaloblishvili’. The research was boosted by the winning of a high-quality high-molecular-weight DNA extraction in KeyGene's DNA-Day contest of 2021. Check this post: www.keygene.com/newsitem/geo...
Fruits of the grapevine ‘Mgaloblishvili’
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Reposted by Alexander Wittenberg
AI x Bio Discovery @aixbiobot.bsky.social · 06/05/2025
Deep Learning-Based Classification of Peptide Analytes from Single-Channel Nanopore Translocation Events [new] Deep Learning Classifies Peptides from Nanopore Events via a Two-Stage Pipeline.
Deep Learning-Based Classification of Peptide Analytes from Single-Channel Nanopore Translocation EventsFigure 1Figure 2Figure 3
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Reposted by Alexander Wittenberg
Schneeberger Lab @labschneeberger.bsky.social · 16/04/2025
Interested in hearing more about the story behind our latest paper? Check out our blog post and the latest @naturepodcast.bsky.social episode! 📝 go.nature.com/3G73vT7 🎙️ www.nature.com/articles/d41...
go.nature.com
A Recipe for Complexity: Building the Potato Pan-Genome
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Reposted by Alexander Wittenberg
Heng Li @lh3lh3.bsky.social · 18/04/2025
Preprint on hifiasm Nanopore-only assembly. Led by Haoyu Cheng: www.biorxiv.org/content/10.1...
biorxiv.org
Efficient near telomere-to-telomere assembly of Nanopore Simplex reads
Telomere-to-telomere (T2T) assembly is the ultimate goal for de novo genome assembly. Existing algorithms capable of near T2T assembly all require Oxford Nanopore Technologies (ONT) ultra-long reads w...
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Reposted by Alexander Wittenberg
Lukie Pieterse @potatonews.bsky.social · 01/04/2025
First of its kind skin-transplant potato variety obtained plant breeders’ rights The Netherlands' Board for Plant Varieties has approved a revolutionary potato variety developed by KeyGene using the 2S1 graft hybrid technique. This method merges traits from two existing varieties, Pimpernel's skin…
potatonewstoday.com
First of its kind skin-transplant potato variety obtained plant breeders’ rights
The Netherlands' Board for Plant Varieties has approved a revolutionary potato variety developed by KeyGene using the 2S1 graft hybrid technique. This method merges traits from two existing varieties, Pimpernel's skin and Bintje's cell layers, enhancing features like drought tolerance and yield. The successful commercialization of this proof-of-concept signals significant potential for improving various crops through sustainable breeding practices, according to KeyGene's leaders.
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Nieuwe Oogst @nieuweoogst.bsky.social · 31/03/2025
Het nieuwe aardappelras heeft de huid van het bestaande ras Pimpernel en de binnenkant van Bintje en is gekweekt met behulp van 2S1-techniek. Deze nieuwe technologie is door KeyGene. 🥔 #veredeling
nieuweoogst.nl
KeyGene kweekt roodschillig Bintje met nieuwe veredelingstechniek
Onderzoeksbedrijf KeyGene heeft een veredelingstechniek ontwikkeld waarmee het mogelijk is om huidtransplantatie toe te passen bij aardappelen.
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VIB Training & Conferences @vibtrainconf.bsky.social · 24/03/2025
Rene Hogers @keygene.com presented his work on establishing single-cell research for crop improvement at #RNGS25. ▶️Watch his video pitch to find out more.
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Alexander Wittenberg @awngs.bsky.social · 14/03/2025
www.linkedin.com/posts/keygen...
linkedin.com
KeyGene on LinkedIn: During the well-known VIB conference "Revolutionizing Next Generation…
During the well-known VIB conference "Revolutionizing Next Generation Sequencing", March 19-21, KeyGene's Rene Hogers, scientist and expert DNA Innovations…
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Reposted by Alexander Wittenberg
Jonathan Eisen @phylogenomics.bsky.social · 04/03/2025
Wow Just Wow youtu.be/G8ECt04qPos?...
youtu.be
Introducing Roche Sequencing by Expansion (SBX) Technology
YouTube video by Roche
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Keith Robison @omicsomics.bsky.social · 25/02/2025
First look at Roche boxes #agbt
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Martin Smith @martinalexsmith.bsky.social · 25/02/2025
Here is the #Roche #SBX sequencing by expansion (expandomer) manuscript to support all the #AGBTGM hype! www.biorxiv.org/content/10.1...
biorxiv.org
Sequencing by Expansion (SBX) — a novel, high-throughput single-molecule sequencing technology
Remarkable advances in high-throughput sequencing have enabled major biological discoveries and clinical applications, but achieving wider distribution and use depends critically on further improvements in scale and cost reduction. Nanopore sequencing has long held the promise for such progress, but has had limited market penetration. This is because efficient and accurate nanopore sequencing of nucleic acids has been challenged by fundamental signal-to-noise limitations resulting from the poor spatial resolution and molecular distinction of nucleobases. Here, we describe Sequencing by Expansion (SBX), a single-molecule sequencing technology that overcomes these limitations by using a biochemical conversion process to encode the sequence of a target nucleic acid molecule into an Xpandomer, a highly measurable surrogate polymer. Expanding over 50 times longer than the parent DNA templates, Xpandomers are engineered with high signal-to-noise reporter codes to enable facile, high-accuracy nanopore sequencing. We demonstrate the performance of SBX and present the specialized molecular structures, chemistries, enzymes and methods that enable it. The innovative molecular and systems engineering in SBX create a transformative technology to address the needs of existing and emerging sequencing applications. ### Competing Interest Statement Competing interests: Various authors are inventors on the following patents 7939259, 8349565, 8324360, 9920386, 9670526, 10851405, 11920184, 10457979, 10676782, 10301345, 10774105, 10745685, 11299725, 12037577, 12116570, 11530392, 11970731, 9771614, 8586301 and 10996213 held by Roche Sequencing Solutions, Inc. that cover SBX Technology. MK, RM, MN, AJ, MP, CC, KB, TL, JC, LM, ML, TR, CW, SB, AL, MK, RB, SM, BB, BK, ML, MW, AK, AA, MRP, SK, JL, MB are employees of Roche Sequencing Solutions, Inc. SBX, Xpandomer and XNTP are registered trademarks of Roche Sequencing Solutions, Inc.
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Alexander Wittenberg @awngs.bsky.social · 21/02/2025
Happy to have contributed to this work in 🍇; The genome of Vitis vinifera cv. Mgaloblishvili :https://academic.oup.com/hr/advance-article/doi/10.1093/hr/uhaf055/8026355?utm_source=advanceaccess&utm_campaign=hr&utm_medium=email
academic.oup.com
The genome of Vitis vinifera cv. Mgaloblishvili reveals resistance and susceptibility factors to downy mildew in the Rpv29 and Rpv31 loci
Abstract. Mgaloblishvili, a grapevine variety from Georgia (Southern Caucasus), exhibits a unique resistance mechanism against downy mildew. Mgaloblishvili
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Albert Vilella, PhD. @albertvilella.bsky.social · 18/02/2025
m.genome.cshlp.org/content/earl... Matt Loose in Nottingham publishes a method for Adaptive Sampling with Oxford @nanoporetech.com sequencing.
m.genome.cshlp.org
Genome Res | Mobile
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SMPS4 @smps4.bsky.social · 23/01/2025
Andrew Heron, CEO of Portal Biotech and one of our sponsors, presented on 'Single-molecule identification and comprehensive PTM profiling of full-length proteins with nanopores.' We’re grateful for Portal Biotech's support! #SMPS4
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KeyGene @keygene.com · 28/01/2025
We are proud to again sponsor the EPS (Experimental Plant Sciences) Annual Meeting, which brings together more than 450 scientists (PhD students, supervisors and Principal Investigators) studying plants.
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EPS Graduate School @epsgraduateschool.bsky.social · 28/01/2025
The Dutch Annual Meeting of Experimental Plant Sciences take splace on the 14th and 15th of April 2025. Join and meet junior and senior plant scientists in Egmond aan Zee. annualmeeting.graduateschool-eps.info
annualmeeting.graduateschool-eps.info
Annual Meeting Experimental Plant Sciences 2025 – 14 and 15 April 2025
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Adrien Leger @adrienleger.bsky.social · 28/11/2024
We have been busing working on models to detect all 2'Ome-RNA modified nucleotides on top of PseudoU, m6A, m5C and Inosine using @nanoporetech.com direct RNA sequencing. This is still very preliminary but here are a few examples of what it looks like on Human #rRNA prepared with standard lib prep 🤩
Selected areas of Human rRNAs showing modification calls in IGV. Samples sequenced by ONT direct RNA sequencing with experimental Remora models calling m6A, m5C, PseudoU, and all 4 2'Ome modifications.
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Javier del Campo @fonamental.bsky.social · 15/11/2024
High accuracy meets high throughput for near full-length 16S ribosomal RNA amplicon sequencing on the #Nanopore platform #microbiome
academic.oup.com
High accuracy meets high throughput for near full-length 16S ribosomal RNA amplicon sequencing on the Nanopore platform
Abstract. Small subunit (SSU) ribosomal RNA (rRNA) gene amplicon sequencing is a foundational method in microbial ecology. Currently, short-read platforms
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Oxford Nanopore @nanoporetech.com · 22/11/2024
Excited to join the #Nanopore Community on BlueSky. Follow us for the latest updates and discussions about Oxford Nanopore and Nanopore Community. #WYMM
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Genome Research @genomeresearch.bsky.social · 20/11/2024
SPECIAL ISSUE! This month Genome Research publishes a diverse collection of research and review articles in a special issue highlighting advances in long-read sequencing applications in biology and medicine. Full issue links here: tinyurl.com/Genome-Res-3....
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Alexander Wittenberg @awngs.bsky.social · 12/11/2024
Gapless assembly of complete human and plant chromosomes using only nanopore sequencing now online; m.genome.cshlp.org/content/earl... @keygene.com One platform for T2T genomes.
m.genome.cshlp.org
Genome Res | Mobile
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KeyGene @keygene.com · 23/05/2024
Looking forward to meeting fellows from seed business & research during the ISF 2024 World Seed Congress in Rotterdam, the Netherlands, May 27-29. Here's an artist's impression of our booth, number 3.5, close to the Trading Tables hall. #technoloy #innovation #crop #breeding #seeds #ISF
Artist impression of the KeyGene booth during ISF 2024 World Seed Congress in Rotterdam
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