Chris Dundas

@cmdundas.bsky.social

Plant & Microbial Synthetic Biologist | Music Lover & Coffee Drinker | Assistant Professor University of Georgia Department of Plant Biology & Institute of Bioinformatics | https://www.dundaslab.com

Excited to share our lab’s first publication at UGA! PhD student Taden Welsh's new perspective highlights how plant + bacterial synthetic biology could enhance iron mobilization for food crop fortification.🌱🦠🧬 pubs.acs.org/doi/10.1021/...

Genetically Reprogramming Crops and Rhizobacteria for Nutritional Iron Biofortification

Iron is a critical micronutrient for both plants and humans, yet its declining availability across agricultural systems threatens global food security and health. Biofortification of food crops has emerged as a promising strategy to combat iron deficiency and anemia, leveraging both crop breeding and microbiome-based approaches to enhance iron mobilization and uptake. Advances in plant and bacterial synthetic biology could enable the precise programming of iron homeostasis and acquisition mechanisms, offering tailored solutions across diverse species and environments. Here, we outline key biomolecules, genes, and biosynthetic and transport pathways that represent underexplored synthetic biology targets for improving crop iron acquisition. We highlight opportunities to tune expression strength, tissue specificity, and cross-host pathway transfer to enhance chelation- and reduction-mediated solubilization of soil iron and augment plant uptake. Finally, we emphasize the broader importance of developing plant–microbe–metal actuators as modular components in genetic circuit design and discuss how their deployment across diverse plant and microbial chassis could accelerate agricultural biofortification and improve global nutrition.

pubs.acs.org

Plant synthetic biology faculty opening – come be my colleague! 🌱🧬 @universityofga.bsky.social Department of Plant Biology is hiring a tenure-track Assistant Professor in Plant Synthetic Biology for Strategic Resources Research. Join UGA's growing plant synbio community!

jmb, phd@jmbrkphd.bsky.social · 10mo ago

We're hiring! Please spread the word. We have an opening for an Assistant Professor in Plant Synthetic Biology for Strategic Resources Research. See ad for details – and apply to join us here in Athens, GA! 🪴 #PlantBiology #SyntheticBiology #PlantScience #AcademicJobs #UGA

Faculty job ad for a position in Plant Synthetic Biology for Strategic Resources Research in the Department of Plant Biology at the University of Georgia.

Today in Nature we report a systematic strategy to activate & identify gene sets in plants. We identify 8 new genes from the yew tree's Taxol biosynthetic pathway, enabling us to engineer tobacco with 17- & 20-gene pathways to Taxol precursors baccatin III & deBz-deoxy-Taxol #SingleCell #secmet 🧬🧪🌾

Discovery of FoTO1 and Taxol genes enables biosynthesis of baccatin III - Nature

An approach that combines single-nucleus RNA sequencing and multiplexed perturbation identifies genes that enable the biosynthesis of direct precursors of the anti-cancer drug Taxol, whose curren...

nature.com

Today’s the final day to submit your abstracts for the SIMB Annual Meeting in San Francisco! Don’t miss your chance to showcase your microbiome research.

Chris Dundas@cmdundas.bsky.social · last yr.

Present your microbiome research at the SIMB Annual Meeting in San Francisco! Abstracts due May 13: sim.confex.com/sim/2025/cfp... Angela Chen (MSU ChEMS) and I are convening the Genetically Modified Microbes in Complex Environmental & Human Microbiomes session—submit your work!

It seems there are no free-living organisms known to rely exclusively on one other organism for their survival Until perhaps now Check out our latest publication in @natmicrobiol.nature.com to see how we designed an exclusive microbial reliance using GCE rdcu.be/ekepI 1/2

Engineered orthogonal and obligate bacterial commensalism mediated by a non-standard amino acid

Nature Microbiology - A genetically engineered microbial symbiosis based on synthetic auxotrophy is created, with potential implications as a biocontainment strategy.

rdcu.be

Finally! Im so excited to present to culmination of many years of work from the fantastic Defeng Shen and some great collaborators. For details, I have made a digested thread below, but if you are more interested feel free to reach out (and read the paper of course). www.science.org/doi/10.1126/...

Apoplastic barriers are essential for nodule formation and nitrogen fixation in Lotus japonicus

Establishment of the apoplastic root barrier known as the Casparian strip occurs early in root development. In legumes, this area overlaps with nitrogen-fixing nodule formation, which raises the possi...

science.org

Thanks for the opportunity to speak @taeseokmoon.bsky.social ! Was fun to speak about my lab’s work, much of it from my postdoc in @josedinneny.bsky.social ‘s lab!

Tae Seok Moon@taeseokmoon.bsky.social · last yr.

#SynBYSS seminar with Dr. Axel Visel @axelvisel.bsky.social at the Berkeley Lab (LBNL) & also a Deputy of Science at Joint Genome Institute @jgi.doe.gov and Prof. Christopher Dundas @cmdundas.bsky.social at University of Georgia The talk video link below: www.youtube.com/watch?v=tRSN...

🙏 NSF for supporting @uf-ifas.bsky.social / UF Horticultural Sciences' trailblazing workshop 'How SynBio can *realistically* impact crop improvement & agriculture'! We brought🌱 SynBio ECRs together w/ top ag biotech & crop breeding experts to identify disconnects btwn their worlds & how to fix them⬇️

Bild

Proud to share our latest published work on moisture responsive root development-a process we call hydropatterning! We find that this process has been under differential selection during maize breeding and the gaseous hormone ethylene prevents branching in air. www.science.org/doi/epdf/10....

Moisture-responsive root-branching pathways identified in diverse maize breeding germplasm

Plants grow complex root systems to extract unevenly distributed resources from soils. Spatial differences in soil moisture are perceived by root tips, leading to the patterning of new root branches t...

science.org