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Jonathan Pritchard

@jkpritch.bsky.social
8K followers 1.1K following 354 posts

My lab at Stanford studies human population genetics and complex traits.

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Reposted by Jonathan Pritchard
Nikhil Milind @nikhilmilind.dev · 21h
This is a great chance to chat with Jonathan during #ASHG26!
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Jonathan Pritchard @jkpritch.bsky.social · 21h
If you're interested, please email me and my assistant Lily (our emails are on my lab's contact page); please include at least a sentence about yourself, and your cv, to introduce yourself. Let us know if you have major scheduling constraints.
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Jonathan Pritchard @jkpritch.bsky.social · 21h
Another possible topic is that I am looking to hire: -- a senior scientist and --1-2 postdocs Looking for a strong publication record in at least one of: functional genomics/single cell work/computational methods/statgen/popgen.
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Jonathan Pritchard @jkpritch.bsky.social · 21h
I'll be very happy to chat about career advice, anything about human genetics, open questions in science, or anything else that's on your mind! We'll schedule ~15 min blocks.
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Jonathan Pritchard @jkpritch.bsky.social · 21h
I want to try something again at #ASHG26: I'll block off some time on Weds/Th/Friday afternoons to meet with trainees who would be interested to chat on any topic. I have done this the last 2 years and it was great to meet a whole bunch of new people, from many countries, at all career stages!
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Sasha Gusev @sashagusevposts.bsky.social · 04/10/2026
An ASHG planner that doesn't suck (Claude): sashagusev.github.io/ashg-2026-pl...
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Jonathan Pritchard @jkpritch.bsky.social · 04/10/2026
Congratulations!! That's super impressive!!
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Reposted by Jonathan Pritchard
Vijay G. Sankaran @bloodgenes.bsky.social · 30/09/2026
🩸🧬 Delighted to share our new @nature.com paper! Genetic studies of >28,000 people reveal a BACH2-NRF2 pathway for activating fetal hemoglobin, suggesting new tx avenues for sickle cell disease & β-thalassemia. Led by the amazing Chun-Jie Guo & co! www.nature.com/articles/s41...
nature.com
Human genetics implicates a BACH2–NRF2 axis in fetal haemoglobin activation - Nature
BACH2 restrains activation of the fetal-haemoglobin-encoding γ-globin genes, while loss of BACH2 enhances NRF2 chromatin occupancy and promotes the formation of activation foci at the γ-globin genes.
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Molly Przeworski @mollyprz.bsky.social · 16/09/2026
Work by Matin Saeidi and @will-milligan.bsky.social modeling mutator allele dynamics in humans, and asking what types of mutators we should expect to find by surveying offspring in trios.
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Piper Below @piperbelow.bsky.social · 23/09/2026
Very excited to see these three important papers published. This News and Views provides a short summary, for those interest in this new transcriptomic resource for the prefrontal cortex! www.nature.com/articles/d41...
nature.com
Vast cellular gene-expression atlas could transform how scientists understand brain ageing and disease
Single-nucleus RNA sequencing captures molecular changes in the prefrontal cortex across the lifespan and in health and disease.
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Richard Sever @richardsever.bsky.social · 21/09/2026
"any answer to 'is AI good for science' that neatly fits into a single yes or no is unserious...here is an invitation to join the real discussion" Thoughtful piece by @blekhman.bsky.social on a subject that provokes knee-jerk responses for and against. blekhman.substack.com/p/the-ai-dis...
blekhman.substack.com
The AI Discourse in Academia is Toxic. It Doesn’t have to be.
You are allowed to have a nuanced opinion about AI
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Harmit Singh Malik @harmitmalik.bsky.social · 21/09/2026
Thanks to the generosity of the Bezos Family Foundation, @basicsci.fredhutch.org is excited to announce a new search to recruit a Bezos Family Distinguished Scholar : apply.interfolio.com/193655
apply.interfolio.com
Apply - Interfolio {{$ctrl.$state.data.pageTitle}} - Apply - Interfolio
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Yun Deng @yundeng.bsky.social · 14/09/2026
I am excited to share that I will be joining the Baker Institute for Animal Health and College of Veterinary Medicine at Cornell University as an Assistant Professor next spring! I am grateful to my mentors and colleagues who have supported me throughout this journey.
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Jeff Spence @jeffspence.github.io · 14/09/2026
@roshnipatel.bsky.social and I wrote about using biobanks to learn about evolution, and how those findings shape interpretations of association studies. We focused on estimating evolutionary constraint and relating relating selection on variants to selection on traits and include open questions.
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Doc Edge @docedge.bsky.social · 12/09/2026
Please repost: My department (quantitative and computational biology at the University of Southern California) is hiring a teaching-track faculty member. The new hire will focus on teaching statistics courses to biology students. Apply by Dec 1 usccareers.usc.edu/job/los-ange...
usccareers.usc.edu
Full-Time, Teaching-Track Faculty Position in Quantitative and Computational Biology at USC
Learn more about applying for Full-Time, Teaching-Track Faculty Position in Quantitative and Computational Biology at USC
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Graham Coop @gcbias.bsky.social · 10/09/2026
I’m looking to hire an NIH funded postdoc to join our lab here at Davis (please RT). Ongoing areas of interest include: 1) polygenic signals of selection from time series, ARGs, GWAS, etc 2) The interpretation of GWAS, polygenic scores, & sources of confounding
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Jonathan Pritchard @jkpritch.bsky.social · 08/09/2026
haha, thanks, glad you liked it!
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Reposted by Jonathan Pritchard
Tom Near @tjnear.bsky.social · 29/08/2026
1/11 🐟 2nd new preprint today from @chasedbrownstein.bsky.social We investigated how losing the swim bladder, the organ that most fishes use to control their buoyancy, has shaped the diversity of ray-finned fishes over 90 million years of Earth history. The results surprised us. 🧵
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Jonathan Pritchard @jkpritch.bsky.social · 29/08/2026
estimated log fold change of differential expression divided by SE of same.
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Jonathan Pritchard @jkpritch.bsky.social · 29/08/2026
Genome-scale perturb-seq in human T cells. Our fantastic postdocs @ronghuizhu.bsky.social and @emmamarydann.bsky.social have done great work here to show the power and opportunities of perturb-seq in primary cells. This is part of a wonderful long-term collaboration with @marsonlab.bsky.social
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Emma Dann @emmamarydann.bsky.social · 28/08/2026
Our work on systematic perturb-seq of primary human T cells is now out in Cell 🎉 www.cell.com/cell/fulltex... It's been a privilege to work with @ronghuizhu.bsky.social between @jkpritch.bsky.social @marsonlab.bsky.social labs, with a dream-team of co-authors ❤️ Highlights in preprint thread👇
cell.com
Genome-scale perturb-seq in primary human CD4+ T cells maps context-specific regulators of T cell programs and human immune traits
A dynamic atlas of gene regulation was generated by perturbing every expressed gene across 22 million primary human CD4+ T cells under resting conditions and following re-stimulation. The resulting ma...
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Jesse Engreitz @jengreitz.bsky.social · 18/09/2025
Excited for a major milestone in our efforts to map enhancers and interpret variants in the human genome: The E2G Portal! e2g.stanford.edu This collates our predictions of enhancer-gene regulatory interactions across >1,600 cell types and tissues. Uses cases 👇 1/
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Jonathan Pritchard @jkpritch.bsky.social · 25/08/2026
thank you! So glad you enjoyed it!
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Julia M. Rohrer @dingdingpeng.the100.ci · 24/08/2026
Just read this very cool blog post by @jkpritch.bsky.social about recessive genes. Very interesting topic and I really appreciate the accessible explanation of a paper that I'd never dare to pick up myself. jkpritchard.substack.com/p/are-any-ge...
jkpritchard.substack.com
Are any genes truly recessive?
Journal club: Judd et al 2026 -- a surprising result about natural selection in recessive genes
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Jonathan Pritchard @jkpritch.bsky.social · 24/08/2026
Very impressive indeed!!
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Jonathan Pritchard @jkpritch.bsky.social · 23/08/2026
That's really fantastic! Congratulations! What has/can he run in good conditions?
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Jonathan Pritchard @jkpritch.bsky.social · 22/08/2026
Very interesting Q! Not very scientific, but I looked up 4 papers that were published in the last 3 years in popgen/statgen. Each was on biorxiv for 1-2 years prior. The two Nature papers went up 5-8-fold from biorxiv; the Nature Genetics paper was similar; the Plos CompBio paper went down 50%.
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Jonathan Pritchard @jkpritch.bsky.social · 17/08/2026
Thank you for your persistence. What an appalling tale.
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vincentholst.bsky.social @vincentholst.bsky.social · 14/08/2026
As promised, we now share some details why it took 32 months to get this Matters Arising published, and, since many asked, share some comments on the reply to our critique. All details can be found in this small FAQ vincentholst.github.io/the_curious_.... Below is a summary 🧵
vincentholst.github.io
The Curious Case of the Declining Disruption’s Disappearance
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Yun Deng @yundeng.bsky.social · 15/08/2026
The first manuscript from my postdoc is out (doi.org/10.64898/202...)! We introduce 𝐭𝐢𝐦𝐞-𝐬𝐭𝐫𝐚𝐭𝐢𝐟𝐢𝐞𝐝 𝐬𝐭𝐚𝐭𝐢𝐬𝐭𝐢𝐜𝐬 for studying population structure change over time, with the temporal resolution of Ancestral Recombination Graphs (ARGs). Joint with @jkpritch.bsky.social and @jeffspence.github.io. 1/n
google.com
Coalescent-Based Time-Stratified Statistics Reveal Population Structure Dynamics using the Ancestral Recombination Graph
Many questions in population genetics are concerned with reconstructing evolutionary history through time, such as inferring how population structure has changed throughout the past. Yet, many existing approaches have only an implicit temporal component, using quantities such as allele frequency or haplotype length as rough proxies for age. Recent advances in the inference of Ancestral Recombination Graphs (ARGs) have made it possible to estimate the entire sequence of local genealogies along the genome. These genealogies explicitly encode how samples are related to each other at different time points in the past, enabling the inference of how population structure has changed over time. To this end, recent work has used ARGs to define time-stratified versions of widely-used population genetics summary statistics in an attempt to capture the population structure present within a particular time window. Here, we show that naive approaches result in statistics that cannot be interpreted solely in terms of the population structure present within the time window they are targeting. To address this problem, we introduce a framework of coalescent-based time-stratified statistics, which use coalescence probabilities to partition classical summary statistics into interval-specific contributions. Using coalescent simulations, we demonstrate that these statistics accurately isolate population structure at different temporal depths and avoid spurious signals. Our results highlight the necessity of integrating coalescent theory into ARG-based temporal analyses and provide a principled and practical foundation for studying the dynamics of population structure through time. ### Competing Interest Statement The authors have declared no competing interest. National Human Genome Research Institute, https://ror.org/00baak391, R01HG014005
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vincentholst.bsky.social @vincentholst.bsky.social · 13/08/2026
In 2023, @nature.com published 'Papers and patents are becoming less disruptive over time', receiving world-wide media attention. Our Matters Arising, published after a 32 month delay (more on that soon), shows that the reported decline can largely be attributed to dataset artefacts. 🧵
The average CD_5 index per year for Web of Science. The original Park et al. decline (top curve) becomes essentially flat (bottom curve) when removing papers with CD_5=1. Those papers largely correspond to dataset artefacts.
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Jonathan Pritchard @jkpritch.bsky.social · 13/08/2026
I'm very sorry to hear that.
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Graham Coop @gcbias.bsky.social · 12/08/2026
Excited for @gabrielesgarlata.bsky.social’s new preprint on the Genome-Wide Effect of Drift and Selection over a Single Generation 1/n www.biorxiv.org/content/10.6...
biorxiv.org
The Genome-Wide Effect of Drift and Selection over a Single Generation
The relative importance of genetic drift versus selection to evolutionary change has long been debated. This debate has mainly focused over long-time-scales (e.g. hundreds of thousands of generations)...
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Jonathan Pritchard @jkpritch.bsky.social · 12/08/2026
I'm curious about the reasons why some people/labs choose NOT to preprint their papers, either for specific papers or in general. Do you have a sense of this, either for yourself or for colleagues and collaborators? [I have some guesses, but curious to hear from others]
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Jonathan Pritchard @jkpritch.bsky.social · 11/08/2026
Thank you! Glad you're finding it useful!
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Jonathan Pritchard @jkpritch.bsky.social · 10/08/2026
So I put this up yesterday about the 800. The interesting thing is that the data show you can go out too slow, but (oddly) there's no evidence that you can go out too fast. (I mean, I'm sure you can, but it doesn't show up here) jkpritchard.substack.com/p/how-to-bre...
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Jonathan Pritchard @jkpritch.bsky.social · 10/08/2026
Thanks Jeff -- I'll punt this question to @mollyprz.bsky.social .
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Jonathan Pritchard @jkpritch.bsky.social · 10/08/2026
Thank you Cedric!
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Cedric Boeckx @cedricboeckx.bsky.social · 10/08/2026
Taking this opportunity to recommend once more @jkpritch.bsky.social’s excellent (and open-access!) textbook, which offers a very accessible introduction to the field of human genetics. 🧪🧬 web.stanford.edu/group/pritch...
web.stanford.edu
An Owner's Guide to the Human Genome
An Owner's Guide to the Human Genome
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Duncan Sproul @sproullab.bsky.social · 10/08/2026
Heartedly agree with this! Hugely useful to know numbers like these for biology in general not just genetics. Think my most used numbers are: ~6.6pg in a human cell ~145bp DNA wrapped round a nucleosome
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Jonathan Pritchard @jkpritch.bsky.social · 10/08/2026
That's great to hear!
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Aylwyn Scally @aylwyn-scally.bsky.social · 09/08/2026
Highly recommend this, and it's a key element in most physics training. I'd add another trick that many biologists could benefit from, a small thing that makes a big difference: always use units. If you're unsure about the units of your number, chances are you don't properly understand it.
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
Must-know numbers in human genetics -- As many of you know, I'm writing a free online textbook in human genetics. In this blog post I cover a key skill for genome scientists from that book: how to use mental math to figure out key genome properties. jkpritchard.substack.com/p/on-fermi-p...
jkpritchard.substack.com
On Fermi Problems in Human Genetics
and some very useful numbers about human genomes to get you started!
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
Great question! I actually have a draft of a piece on pacing for the 800. My prior expectation was that people go out too fast, but I cannot find evidence that fast starts hurt them much. For the longer track races the world records are set at very even pace.
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
interesting. What do you have in mind?
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
Stay tuned for more (including in biology)
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
The second post does a deep dive into the greatest finishes of all time [with some surprises!] jkpritchard.substack.com/p/the-greate...
jkpritchard.substack.com
Greatest 1500m races? Part 2: Rating the greatest championship kicks
Following my last post on the Pareto curve, I explore pace and finishing speeds for the global titles of the last 50 years. What was the greatest championship performance?
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
You can see this here for speed over the first 1100m of a race vs the last 400m:
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Jonathan Pritchard @jkpritch.bsky.social · 09/08/2026
So, I've started a substack. I'll be writing about biology, but my first posts are about applying statistical methods to one of my hobbies: track fandom. In the first posts I describe the Pareto trade-off between a fast overall speed and finishing speed: jkpritchard.substack.com/p/greatest-1...
jkpritchard.substack.com
Greatest 1500m races? Fast times vs fast finishes, and the Pareto Frontier.
A statistical analysis of how overall race speed relates to finishing speed.
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Franck Polleux @franckp.bsky.social · 05/08/2026
I am exciting to highlight our new study published today in @cp-neuron.bsky.social. This work represents over 6 years of effort by an incredibly talented postdoc, Carlos Diaz-Salazar, in collaboration with @krzischlab.bsky.social, @bhadurilab.bsky.social at UCLA and Mercedes Paredes lab at UCSF 👇 🧵
cell.com
Human-specific SRGAP2 paralogs synchronize neotenic microglial maturation and synaptic development
Using a combination of microglia-specific conditional mouse knockout and knockin approaches and xenotransplantation of human iPSC-derived microglia, Diaz-Salazar et al. demonstrate that the human-spec...
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