@AlonsoStepanovai
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Plant Synthetic Biology. Translation Regulation. Plant Hormones. Genome Editing. Recombineering. DIY Biology
NC State University
Joined July 2018
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Alonso-Stepanova Lab retweeted
🌿🪴NEW PREPRINT ALERT🪴🌿
@AlonsoStepanova
1/5 🌱How do plants coordinate hormone signals to decide when and how much to grow? 🧵👇
biorxiv.org/content/10.64898…
Excited to share Mario’s latest manuscript, now up on bioRxiv!
Using new single-locus multi-hormone reporters, Mario and the team dissected the spatially resolved Auxin-Cytokinin-Ethylene crosstalk hierarchy driving root growth inhibition in Arabidopsis. biorxiv.org/content/10.64898…
We found distinct spatial roles for different hormones: Ethylene boosts auxin biosynthesis (TAA1) & imports it (AUX1) into outer root cells to block cell elongation. Cytokinin keeps ethylene-boosted auxin in the inner vasculature & lateral root cap to shrink the meristem (RAM).
The Alonso-Stepanova lab at NCSU is hiring a postdoc to build a programmable, reversible transcriptional switch (SCRIBE) to control gene expression in plants 🌱
🔬 Project: nsf.gov/awardsearch/show-awa…
💼 Apply: jobs.ncsu.edu/postings/23284…
Please RT & share!
@AlonsoStepanova
It has been a great start to the summer in the Alonso-Stepanova lab. First, Jose was elected to the National Academy of Sciences, and just yesterday, Anna was appointed as a William Neal Reynolds Distinguished Professor. Two great honors for our lab.
Alonso-Stepanova Lab retweeted
A Postdoctoral Associate position is available in the Roeder Laboratory at Cornell University in Ithaca, NY with a focus on researching Polyploidy. Apply by March 1. Please spread the word. apps.hr.cornell.edu/recruiti…
Congrats to Anna Yaschenko on the 6th paper from her dissertation work that is out today. It's a review on plant synthetic promoters that stems from the intro chapter of her PhD thesis. One more to go! frontiersin.org/journals/pla…
Alonso-Stepanova Lab retweeted
It was great to collaborate with you @AlonsoStepanova, as always 🤩 Congrats, Jade, for an amazing job!
🌱🧬🩷
📚𝐅𝐨𝐮𝐧𝐝𝐚𝐭𝐢𝐨𝐧 𝐑𝐞𝐯𝐢𝐞𝐰: Translational control in plants: from basic mechanisms to environmental and developmental responses 🧬🌱
✍️ Jade Lyons, @k_merchante, @AlonsoStepanova
Discover the power of translation in shaping plant responses👉 doi.org/10.1111/tpj.70647
Out now in @ThePlantJournal: A deep dive into translation in plants by Jade & Karen! 🧬🌱
What started as Jade’s prelim evolved into a fantastic review on plant translation, thanks to a great collaboration with Karen. Congrats on this excellent review!
onlinelibrary.wiley.com/doi/…
We attempted to "clean up" the model of the auxin biosynthesis pathway in Arabidopsis using genetic, pharmacological, and metabolomic approaches. We show that the CYP71A, NIT, AMI, and IAMH gene families are all dispensable for auxin production via IAOx.
academic.oup.com/plcell/arti…
It was a busy summer at the Alonso-Stepanova Lab with four manuscripts now published.
Pathy, Mario, and Anna's EBSn ethylene reporter paper is now available in the Plant Biotechnology Journal.
onlinelibrary.wiley.com/doi/…
Chengsong's DASH cloning system for high-cargo gene stacking has also been published in the Plant Biotechnology Journal.
onlinelibrary.wiley.com/doi/…
And last but not least, Chengsong and Katie's wonderful collaboration with Chase Beisel's group on a new genome editing tool based on targeted DNA ADP-ribosylation, is now published in Nature Biotechnology.
nature.com/articles/s41587-0…
The Alonso-Stepanova lab at NC State is hiring a postdoc!
Join us to study plant regeneration in Arabidopsis using cutting-edge molecular genetics and synthetic biology.
We're looking for a driven and ambitious recent PhD graduate.
Apply here: jobs.ncsu.edu/postings/22206…
In the latest Mario's preprint, we show that the CYP71A, NIT, AMI, and IAMH gene families do not play a role in the IAOx-mediated auxin biosynthesis
biorxiv.org/content/10.1101/…
Our genetic and metabolic analysis shows that knocking out the CYP71A, NIT, and AMI gene families doesn't lead to auxin-deficient phenotypes or suppress the high-auxin defects of the sur2 mutant. This questions the physiological role of these genes in auxin production.