Finally have a preprint to share, welcome feedback! Work from coauthors @YuguoXiao@zbdong@Dr_AnnisR@erinlpatt@edbertolini @madelainebart Jinyan Guo, Sidney Mangrum, Seth Bybee, George Chuck, Andrea Eveland, and Mike Scanlon. https://t.co/ahiB6rfz6e
Are you interested in how our crops grow? Do you want to learn cutting edge scientific techniques in an exciting and inclusive environment? Come do a PhD with me @InstMolPlantSci! The Plant Shape Lab is recruiting for a funded @EastBioDTP PhD studentship.
https://t.co/7xjoUsN1L1
On October 20, USDA announced the retirement of Dr. Sarah Hake. We would like to wish Sarah a happy retirement and congratulate her on a distinguished scientific career. Thank you for your many contributions to science and your immeasurable impact on the maize community.
Ectopic Expression of the Transcriptional Regulator silky3 Causes Pleiotropic Meristem and Sex Determination Defects in Maize Inflorescences #FlowerDevelopment#Meristem#Maize#PlantBiology#PlantSci https://t.co/KTzuwJdJLS
Plant science research weekly https://t.co/Y8JburgWWP. Look at a flower, keep your friends under control, plastid signaling, autopolyploid QTLs, liverwort meristems, karrikin signaling via ET. NAC TF and stress, OSCA1.3 in stomatal immunity, & mechanical contraints affect seeds.
What can a #maize mutant teach us about #plant resistance to extreme heat and #drought? Find out in a new study by Plant Gene Expression Center researchers, who discovered a gene which controls protoxylem, the cells which hydrate plants: https://t.co/L5fl3X7ZAy #climatechange
Today we are sharing a research protocol for SHERLOCK-based COVID-19 #coronavirus detection, and hope it will help others who are working to combat the outbreak. We will continue to update this as we make further progress: https://t.co/Fg1PhJl2RP
First the chromatin opens, then the DNA methylation is lost.
The chromatin opens because transcription factors (TFs) target those loci.
TFs tell DNA methylation and nucleosomes what to do at cis-regulatory loci. Not the other way around.
Your textbook needs a rewrite.
New research published today from @PlantsOverPants and Sarah Hake demonstrates a new method to understand and compare how corn and sorghum produce the complex set of flowers and branches that make up their reproductive organs. Read the article here: https://t.co/EDoxFGFi8J
"Here, we present an analytical framework for interpreting high-dimensional landscapes of cell states (manifolds) constructed from transcriptional phenotypes".
Exploring genetic interaction manifolds constructed from rich single-cell phenotypes https://t.co/kilaJl2xWS