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efloresan.bsky.social

@efloresan.bsky.social
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Australian Society of Plant Scientists (ASPS) @asps-oz.bsky.social · 09/09/2026
Ausgust Phytogen is now out 🌱 We highlight Prof Barry Pogson (JG Wood Invited Lecture Awardee), the evolving role of meta-analysis for journals and contribution from student rep Gabriella Jessica ➕️ other Aussie plant science updates. Read it here www.asps.org.au/phytogen/aug...
asps.org.au
Phytogen August 2026 — Australian Society of Plant Scientists
In this issue, we explore the breadth of plant science research and the connections between fundamental biology, applied research and real-world challenges. We highlight the growing role of meta-analy...
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Reposted by @efloresan.bsky.social
Facundo Romani @fromani.bsky.social · 20/07/2026
Excited to share this story in its final form, now published in ACS Synthetic Biology. #PlantBiology #Synbio pubs.acs.org/doi/10.1021/...
pubs.acs.org
Engineering Auronidin Production in Marchantia polymorpha Enables a New Class of Plant-Derived Textile Pigments
Plant-derived pigments offer sustainable alternatives to synthetic colorants, yet their practical deployment in textiles is limited by restricted chemical diversity and low abundance. Liverworts represent a source of diverse chemical compounds, and the model liverworts Marchantia polymorpha are emerging as chassis for bioengineering and synthetic biology. Here, we report the biotechnological application of auronidins, a rare class of flavonoid pigments, as textile dyes. Using M. polymorpha, we engineered enhanced auronidin production through controlled expression of the R2R3-MYB transcription factor MpMYB14. We systematically benchmarked constitutive and inducible gene expression systems, including heat-shock, glucocorticoid receptor, and β-estradiol (XVE) circuits, identifying inducible strategies that decouple biomass accumulation from secondary metabolite production while achieving high pigment yields. Extracted auronidins were used to dye cotton yarn directly, demonstrating the feasibility of auronidins for textile dyeing. Our results establish M. polymorpha as a versatile plant chassis for programmable secondary metabolite production and introduce auronidins as a promising natural pigment platform for sustainable textile biotechnology.
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Reposted by @efloresan.bsky.social
Australian Society of Plant Scientists (ASPS) @asps-oz.bsky.social · 02/07/2026
June Phytogen is now out! This month we celebrate plant science across scales—from molecular approaches for crop protection to tree responses under extreme heat, flowering biology in horticultural crops, fellowship success stories & student achievements. Read it 👉 www.asps.org.au/phytogen/jun...
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Reposted by @efloresan.bsky.social
Facundo Romani @fromani.bsky.social · 23/04/2026
The last paper of my PhD work in Argentina. We dig deeper into the Marchantia MpC1HDZ transcription factor. Many experiments, but my favourite: in addition to its role in oil body cell differentiation, it is also important for another cell type! #PlantScience academic.oup.com/plphys/advan...
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Reposted by @efloresan.bsky.social
Dolf Weijers @dolfweijers.bsky.social · 03/05/2026
We are very happy and proud to present a study led by @jorgehg.bsky.social (now PI in Madrid – keep an eye on him!) in our team @bic-wur.bsky.social. In this work, we discover how auxin-regulated ARF transcription factors learned to activate transcription. A 🧵…(1/17) www.biorxiv.org/content/10.6...
biorxiv.org
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Reposted by @efloresan.bsky.social
Plant & Cell Physiology @plantcellphysiol.bsky.social · 12/05/2026
A comprehensive database for #Marchantia research Tanizawa et al. present the new improved MarpolBase #database - a central resource for M. polymorpha #genomics with near-telomere-to-telomere reference male Tak-1 and female Tak-2 genomes (ver. 7.1) 🆓 doi.org/10.1093/pcp/... #PlantScience
marchantia.info
[Important notice] To maintain nomenclature consistent and systematic, we strongly recommend that gene names/symbols should be registered before publications and presentations.
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