📢 Excited to share our work out now in @Nature! 📢
We present the phased pan-genome of the European tetraploid potato, based on 10 historical cultivars representing 85% of European potato diversity.
Learn more below!
🔗 https://t.co/JNuZEMWKxQ
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🚨 My first PhD preprint is out on bioRxiv!
We show how tiny mutations—point mutations and kb-level indels—can shape the massive structure of Arabidopsis centromeres.
📄 Read it here: https://t.co/YshezMW5cQ
🧵 A short thread ��
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🚨 My first PhD preprint is out on bioRxiv!
We show how tiny mutations—point mutations and kb-level indels—can shape the massive structure of Arabidopsis centromeres.
📄 Read it here: https://t.co/YshezMW5cQ
🧵 A short thread 👇
📢 Excited to share our work out now in @Nature! 📢
We present the phased pan-genome of the European tetraploid potato, based on 10 historical cultivars representing 85% of European potato diversity.
Learn more below!
🔗 https://t.co/JNuZEMWKxQ
1/7
Interested in hearing more about the story behind our latest paper?
Check out our blog post and the latest @NaturePodcast episode!
📝 https://t.co/48mcPqKBPk
🎙️ https://t.co/tStmjAQ1jf
🔍By capturing mature sperm nuclei, we fine-mapped trans-eQTL hotspots and detected meiotic recombination events. Our study with 5 A. thaliana F1 hybrids reveals that most eQTLs are cell-type specific. Notably, PSV1 regulates sperm nuclei-specific genes 🌿🔬#Genomics#Arabidopsis
🧬Excited to share our latest pre-print! We've developed a rapid eQTL analysis approach using single-cell/nucleus RNA sequencing of Arabidopsis pollen nuclei. This method uncovers cis- & trans-eQTLs, including a master regulator of sperm cell development! 🌱📊 #PlantScience#eQTL
🧵🌳 Our new manuscript is out! We explored how somatic mutations in trees spread and propagate through different layers of the plant, improving our understanding of the genetic underpinnings of plant growth and diversity. #PlantScience#Genomics
https://t.co/TbU1JFXSaz
Somatic mutations introduce new phenotypes that are often used in modern plant breeding. Our work now provides insights into somatic mosaicism at the cellular level. We show that in trees, most mutations are specific to cell layers of the meristem.
https://t.co/peOLiUjvnk
Many thanks to our incredible instructors and this engaged group of attendees who made the Bioinformatic analysis of Transposable Elements course an absolute blast! 🌟👏
#Bioinformatics#TransposableElements#Genomics
Fantastic work led by @IngridOlivaresa! Extremely happy of taking part on this project. Preprint on diversity radiation in American tropical Palms. Super cool system.
New preprint where we show one of the first examples of hyper-cryptic radiation in tropical plants: https://t.co/igDzF05Fqy. @SerTusso@kkshimizu1@UZH_en@UZH_Science. Many thanks to @GraphicsSci for the graphics!
New preprint where we show one of the first examples of hyper-cryptic radiation in tropical plants: https://t.co/igDzF05Fqy. @SerTusso@kkshimizu1@UZH_en@UZH_Science. Many thanks to @GraphicsSci for the graphics!
Selective sweeps or small allele-frequency changes?
I am very happy to finally share our preprint on a mathematical model for the evolution of quantitative traits. #PolygenicAdaptation
https://t.co/Y8ih803MJJ